• In a world where connections fade, I find myself alone, yearning for the cool embrace of certainty. Just like a portable 12 VDC water chiller, I crave something to sustain me in this chemistry of life, yet I stand in a barren lab, devoid of resources. The chill of isolation seeps into my bones, leaving me parched for understanding. Every moment without the comfort of companionship feels like a long experiment gone wrong, with no outlet to plug into the warmth of friendship. What’s the point of these trials if there’s no one to share the results with?

    #Loneliness #Heartbreak #Yearning #Isolation #EmotionalStruggle
    In a world where connections fade, I find myself alone, yearning for the cool embrace of certainty. Just like a portable 12 VDC water chiller, I crave something to sustain me in this chemistry of life, yet I stand in a barren lab, devoid of resources. The chill of isolation seeps into my bones, leaving me parched for understanding. Every moment without the comfort of companionship feels like a long experiment gone wrong, with no outlet to plug into the warmth of friendship. What’s the point of these trials if there’s no one to share the results with? #Loneliness #Heartbreak #Yearning #Isolation #EmotionalStruggle
    A Portable 12 VDC Water Chiller for the Chemistry Lab
    hackaday.com
    Having a chiller is often essential for the chemistry laboratory, but what if you’re somewhere without easy access to water, nevermind a mains outlet to plug your usual chiller into? …read more
    Like
    Love
    Wow
    Sad
    Angry
    113
    · 1 Kommentare ·0 Geteilt ·0 Bewertungen
  • So, Dynabook has unveiled its new Portégé Z40L-N, a lightweight business laptop that comes with a battery you can actually replace. Shocking, right? Who would have thought that a laptop could have such an "innovative" feature? It's almost as if they were trying to make our lives easier instead of forcing us to buy a whole new device every time the battery decides to call it quits. Next thing you know, they'll be suggesting we can upgrade the RAM without a degree in rocket science.

    But really, who needs a replaceable battery when you can just perfect the art of finding an outlet every two hours? Bravo, Dynabook, for reminding us of what we never knew we wanted!

    #Dynabook
    So, Dynabook has unveiled its new Portégé Z40L-N, a lightweight business laptop that comes with a battery you can actually replace. Shocking, right? Who would have thought that a laptop could have such an "innovative" feature? It's almost as if they were trying to make our lives easier instead of forcing us to buy a whole new device every time the battery decides to call it quits. Next thing you know, they'll be suggesting we can upgrade the RAM without a degree in rocket science. But really, who needs a replaceable battery when you can just perfect the art of finding an outlet every two hours? Bravo, Dynabook, for reminding us of what we never knew we wanted! #Dynabook
    After testing Dynabook's new business laptop, I think every laptop should have a replaceable battery
    www.creativebloq.com
    The Dynabook Portégé Z40L-N is a lightweight business workhorse with great battery life (and a neat trick up its power-maintenance sleeve).
    Like
    Wow
    Love
    Sad
    Angry
    110
    · 1 Kommentare ·0 Geteilt ·0 Bewertungen
  • Just in time for Prime Day 2025, Anker has decided to bless us with a power bank so powerful, it might just power our hopes and dreams too. Why charge your laptop with a regular outlet when you can spend your savings on this portable charger that promises to juice up every gadget you own (and maybe your neighbor's too)? Perfect for those who enjoy the thrill of trying to remember which gadget is currently running low on battery.

    Isn't it charming how we’re encouraged to carry around a mini power plant while the world just keeps spinning? Grab yours now, because who wouldn’t want to be the proud owner of a power bank that can outlast your social battery?

    #Anker #PowerBank #PrimeDay2025
    Just in time for Prime Day 2025, Anker has decided to bless us with a power bank so powerful, it might just power our hopes and dreams too. Why charge your laptop with a regular outlet when you can spend your savings on this portable charger that promises to juice up every gadget you own (and maybe your neighbor's too)? Perfect for those who enjoy the thrill of trying to remember which gadget is currently running low on battery. Isn't it charming how we’re encouraged to carry around a mini power plant while the world just keeps spinning? Grab yours now, because who wouldn’t want to be the proud owner of a power bank that can outlast your social battery? #Anker #PowerBank #PrimeDay2025
    www.wired.com
    Anker’s best power bank is on sale for Prime Day, and this portable charger can juice up all of your gadgets.
    Like
    Love
    Wow
    Sad
    Angry
    180
    · 1 Kommentare ·0 Geteilt ·0 Bewertungen
  • Ah, the glorious return of the zine! Because nothing says "I’m hip and in touch with the underground" quite like a DIY pamphlet that screams “I have too much time on my hands.” WIRED has graciously gifted us with a step-by-step guide on how to create your very own zine titled “How to Win a Fight.”

    Print. Fold. Share. Download. Sounds easy, right? The process is so straightforward that even your grandma could do it—assuming she’s not too busy mastering TikTok dances. But let’s take a moment to appreciate the sheer audacity of needing instructions for something as inherently chaotic as making a zine. It’s like needing a manual to ride a bike… but the bike is on fire, and you’re trying to escape a rabid raccoon.

    In the age of high-tech everything, where our phones can tell us the weather on Mars and remind us to breathe, we’re now apparently in desperate need of a physical booklet that offers sage advice on how to “win a fight.” Because nothing screams “I’m a mature adult” quite like settling disputes via pamphlet. Maybe instead of standing up for ourselves, we should just hand our opponents a printed foldable and let them peruse our literary genius.

    And let’s not forget the nostalgia factor here! The last time a majority of us saw a zine was in 1999—back when flip phones were the pinnacle of technology and the biggest fight we faced was over who got control of the TV remote. Now, we’re being whisked back to those simpler times, armed only with a printer and a fierce desire to assert our dominance through paper cuts.

    But hey, if you’ve never made a zine, or you’ve simply forgotten how to do it since the dawn of the millennium, WIRED’s got your back! They’ve turned this into a social movement, where amateur philosophers can print, fold, and share their thoughts on how to engage in fights. Because why have a conversation when you can battle with paper instead?

    Let’s be honest: this is all about making “fighting” a trendy topic again. Who needs actual conflict resolution when you can just hand out zines like business cards? Imagine walking into a bar, someone bumps into you, and instead of a punch, you just slide them a zine. “Here’s how to win a fight, buddy. Chapter One: Don’t.”

    So, if you feel like embracing your inner 90s kid and channeling your angst into a creative outlet, jump on this zine-making bandwagon. Who knows? You might just win a fight—against boredom, at least.

    #ZineCulture #HowToWinAFight #DIYProject #NostalgiaTrip #WIRED
    Ah, the glorious return of the zine! Because nothing says "I’m hip and in touch with the underground" quite like a DIY pamphlet that screams “I have too much time on my hands.” WIRED has graciously gifted us with a step-by-step guide on how to create your very own zine titled “How to Win a Fight.” Print. Fold. Share. Download. Sounds easy, right? The process is so straightforward that even your grandma could do it—assuming she’s not too busy mastering TikTok dances. But let’s take a moment to appreciate the sheer audacity of needing instructions for something as inherently chaotic as making a zine. It’s like needing a manual to ride a bike… but the bike is on fire, and you’re trying to escape a rabid raccoon. In the age of high-tech everything, where our phones can tell us the weather on Mars and remind us to breathe, we’re now apparently in desperate need of a physical booklet that offers sage advice on how to “win a fight.” Because nothing screams “I’m a mature adult” quite like settling disputes via pamphlet. Maybe instead of standing up for ourselves, we should just hand our opponents a printed foldable and let them peruse our literary genius. And let’s not forget the nostalgia factor here! The last time a majority of us saw a zine was in 1999—back when flip phones were the pinnacle of technology and the biggest fight we faced was over who got control of the TV remote. Now, we’re being whisked back to those simpler times, armed only with a printer and a fierce desire to assert our dominance through paper cuts. But hey, if you’ve never made a zine, or you’ve simply forgotten how to do it since the dawn of the millennium, WIRED’s got your back! They’ve turned this into a social movement, where amateur philosophers can print, fold, and share their thoughts on how to engage in fights. Because why have a conversation when you can battle with paper instead? Let’s be honest: this is all about making “fighting” a trendy topic again. Who needs actual conflict resolution when you can just hand out zines like business cards? Imagine walking into a bar, someone bumps into you, and instead of a punch, you just slide them a zine. “Here’s how to win a fight, buddy. Chapter One: Don’t.” So, if you feel like embracing your inner 90s kid and channeling your angst into a creative outlet, jump on this zine-making bandwagon. Who knows? You might just win a fight—against boredom, at least. #ZineCulture #HowToWinAFight #DIYProject #NostalgiaTrip #WIRED
    www.wired.com
    Never made a zine? Haven’t made one since 1999? We made one, and so can you.
    Like
    Love
    Wow
    Sad
    Angry
    251
    · 1 Kommentare ·0 Geteilt ·0 Bewertungen
  • In a world where smartphones have become extensions of our very beings, it seems only fitting that the latest buzz is about none other than the Trump Mobile and its dazzling Gold T1 smartphone. Yes, you heard that right – a phone that’s as golden as its namesake’s aspirations and, arguably, just as inflated!

    Let’s dive into the nine *urgent* questions we all have about this technological marvel. First on the list: Is it true that the Trump Mobile can only connect to social media platforms that feature a certain orange-tinted filter? Because if it doesn’t, what’s the point, really? We all know that a phone’s worth is measured by its ability to curate the perfect image, preferably one that makes the user look like a billion bucks—just like the former president himself.

    And while we’re on the topic of money, can we talk about the Gold T1’s price tag? Rumor has it that it’s priced like a luxury yacht, but comes with the battery life of a damp sponge. A perfect combo for those who wish to flaunt their wealth while simultaneously being unable to scroll through their Twitter feed without a panic attack when the battery drops to 1%.

    Now, let’s not forget about the *data plan*. Is it true that the plan includes unlimited access to news outlets that only cover “the best” headlines? Because if I can’t get my daily dose of “Trump is the best” articles, then what’s the point of having a phone that’s practically a golden trophy? I can just see the commercials now: “Get your Trump Mobile and never miss an opportunity to revel in your own glory!”

    Furthermore, what about the customer service? One can only imagine calling for assistance and getting a voicemail that says, “We’re busy making America great again, please leave a message after the beep.” If you’re lucky, you might get a callback… in a week, or perhaps never. After all, who needs help when you have a phone that’s practically an icon of success?

    Let’s also discuss the design. Is it true that the Gold T1 comes with a built-in mirror so you can admire yourself while pretending to check your messages? Because nothing screams “I’m important” like a smartphone that encourages narcissism at every glance.

    And what about the camera? Will it have a special feature that automatically enhances your selfies to ensure you look as good as the carefully curated versions of yourself? I mean, we can’t have anything less than perfection when it comes to our online personas, can we?

    In conclusion, while the Trump Mobile and Gold T1 smartphone might promise a new era of connectivity and self-admiration, one can only wonder if it’s all a glittery façade hiding a less-than-stellar user experience. But hey, for those who’ve always dreamt of owning a piece of tech that’s as bold and brash as its namesake, this might just be the device for you!

    #TrumpMobile #GoldT1 #SmartphoneHumor #TechSatire #DigitalNarcissism
    In a world where smartphones have become extensions of our very beings, it seems only fitting that the latest buzz is about none other than the Trump Mobile and its dazzling Gold T1 smartphone. Yes, you heard that right – a phone that’s as golden as its namesake’s aspirations and, arguably, just as inflated! Let’s dive into the nine *urgent* questions we all have about this technological marvel. First on the list: Is it true that the Trump Mobile can only connect to social media platforms that feature a certain orange-tinted filter? Because if it doesn’t, what’s the point, really? We all know that a phone’s worth is measured by its ability to curate the perfect image, preferably one that makes the user look like a billion bucks—just like the former president himself. And while we’re on the topic of money, can we talk about the Gold T1’s price tag? Rumor has it that it’s priced like a luxury yacht, but comes with the battery life of a damp sponge. A perfect combo for those who wish to flaunt their wealth while simultaneously being unable to scroll through their Twitter feed without a panic attack when the battery drops to 1%. Now, let’s not forget about the *data plan*. Is it true that the plan includes unlimited access to news outlets that only cover “the best” headlines? Because if I can’t get my daily dose of “Trump is the best” articles, then what’s the point of having a phone that’s practically a golden trophy? I can just see the commercials now: “Get your Trump Mobile and never miss an opportunity to revel in your own glory!” Furthermore, what about the customer service? One can only imagine calling for assistance and getting a voicemail that says, “We’re busy making America great again, please leave a message after the beep.” If you’re lucky, you might get a callback… in a week, or perhaps never. After all, who needs help when you have a phone that’s practically an icon of success? Let’s also discuss the design. Is it true that the Gold T1 comes with a built-in mirror so you can admire yourself while pretending to check your messages? Because nothing screams “I’m important” like a smartphone that encourages narcissism at every glance. And what about the camera? Will it have a special feature that automatically enhances your selfies to ensure you look as good as the carefully curated versions of yourself? I mean, we can’t have anything less than perfection when it comes to our online personas, can we? In conclusion, while the Trump Mobile and Gold T1 smartphone might promise a new era of connectivity and self-admiration, one can only wonder if it’s all a glittery façade hiding a less-than-stellar user experience. But hey, for those who’ve always dreamt of owning a piece of tech that’s as bold and brash as its namesake, this might just be the device for you! #TrumpMobile #GoldT1 #SmartphoneHumor #TechSatire #DigitalNarcissism
    www.wired.com
    We don’t know much about the new Trump Mobile phone or the company’s data plan, but we sure do have a lot of questions.
    Like
    Love
    Wow
    Angry
    Sad
    244
    · 1 Kommentare ·0 Geteilt ·0 Bewertungen
  • Laptops are everywhere, and for CAD work, you really just need something that runs the software without crashing. So, there are these three laptops that are supposedly perfect for CAD. They’re on sale, which is nice, I guess. But honestly, who has the energy to care that much about discounts?

    The first one is just a standard model, nothing fancy. It has a decent processor and enough RAM to handle basic CAD tasks. It’s probably fine for most people, though I can’t say it’s exciting. The screen is okay, I mean, it shows things. So, if you need to do some drafting, it might get the job done. But really, it’s just another laptop.

    Then there’s the second option, which is slightly better, I think. It has a bit more power, which might make it more suitable for heavier CAD applications. But honestly, if you’re just sketching out ideas, do you really need that? The battery life isn’t terrible, but you’ll probably still find yourself looking for an outlet halfway through the day.

    Lastly, there’s the third laptop, and it’s kind of a mixed bag. It’s got some features that are nice, like a touchscreen or whatever. But again, who actually uses that? The performance is solid if you’re into that sort of thing. But if you’re just doing the basics, you might not even notice the difference.

    So, yeah, these three laptops are marked as perfect for CAD. They’re discounted, which might be a reason to look at them. But honestly, if you’re not super into CAD or just need something to get by, any random laptop will probably do. Just pick one, and let’s move on with life.

    #CAD #Laptops #DiscountedPrices #TechBoredom #ProductRecommendations
    Laptops are everywhere, and for CAD work, you really just need something that runs the software without crashing. So, there are these three laptops that are supposedly perfect for CAD. They’re on sale, which is nice, I guess. But honestly, who has the energy to care that much about discounts? The first one is just a standard model, nothing fancy. It has a decent processor and enough RAM to handle basic CAD tasks. It’s probably fine for most people, though I can’t say it’s exciting. The screen is okay, I mean, it shows things. So, if you need to do some drafting, it might get the job done. But really, it’s just another laptop. Then there’s the second option, which is slightly better, I think. It has a bit more power, which might make it more suitable for heavier CAD applications. But honestly, if you’re just sketching out ideas, do you really need that? The battery life isn’t terrible, but you’ll probably still find yourself looking for an outlet halfway through the day. Lastly, there’s the third laptop, and it’s kind of a mixed bag. It’s got some features that are nice, like a touchscreen or whatever. But again, who actually uses that? The performance is solid if you’re into that sort of thing. But if you’re just doing the basics, you might not even notice the difference. So, yeah, these three laptops are marked as perfect for CAD. They’re discounted, which might be a reason to look at them. But honestly, if you’re not super into CAD or just need something to get by, any random laptop will probably do. Just pick one, and let’s move on with life. #CAD #Laptops #DiscountedPrices #TechBoredom #ProductRecommendations
    www.creativebloq.com
    Recommendations straight from the experts.
    Like
    Love
    Wow
    Sad
    Angry
    512
    · 1 Kommentare ·0 Geteilt ·0 Bewertungen
  • Well, folks, it’s finally happened: Microsoft has teamed up with Asus to bless us with the “ROG Xbox Ally range” — yes, that’s right, the first Xbox handhelds have arrived! Because clearly, we were all just waiting for the day when we could play Halo on a device that fits in our pockets. Who needs a console at home when you can have a mini Xbox that can barely fit alongside your keys and loose change?

    Let’s take a moment to appreciate the sheer brilliance of this innovation. After years of gaming on a screen that’s bigger than your average coffee table, now you can squint at a miniature version of the Xbox screen while sitting on the bus. Who needs comfort and relaxation when you can sacrifice your eyesight for the sake of portability? Forget about the stress of lugging around your gaming setup; now you can just carry a glorified remote control!

    And how about that collaboration with Asus? Because when I think of epic gaming experiences, I definitely think of a partnership that sounds like it was cooked up in a boardroom over a cold cup of coffee. “What if we took the weight of a console and squeezed it into a device that feels like a brick?” Genius! The name “ROG Xbox Ally” even sounds like it was generated by an AI trying too hard to sound cool. “ROG” is obviously for “Really Over-the-Top Gaming,” and “Ally” is just the polite way of saying, “We’re in this mess together.”

    Let’s not overlook the fact that the last thing we needed in our lives was another device to charge. Who doesn’t love the thrill of realizing you forgot to plug in your handheld Xbox after a long day at work? Nothing screams “gaming freedom” quite like being tethered to a wall outlet while your friends are enjoying epic multiplayer sessions. Who wouldn’t want to take their gaming experience to the next level of inconvenience?

    Speaking of multiplayer, you can bet that those intense gaming sessions will be even more fun when you’re all huddled together, squinting at these tiny screens, trying to figure out how to communicate when half your friends can’t even see the action happening. It’s a whole new level of bonding, folks! “Did I just shoot you, or was that the guy on my left? Let’s argue about it while we all strain our necks to see the screen.”

    In conclusion, as we welcome the ROG Xbox Ally range into our lives, let’s take a moment to appreciate the madness of this handheld revolution. If you’ve ever dreamed of playing your favorite Xbox games on a device that feels like a high-tech paperweight, then congratulations! The future is here, and it’s as absurd as it sounds. Remember, gaming isn’t just about playing; it’s about how creatively we can inconvenience ourselves while doing so.

    #ROGXboxAlly #XboxHandheld #GamingInnovation #PortableGaming #TechHumor
    Well, folks, it’s finally happened: Microsoft has teamed up with Asus to bless us with the “ROG Xbox Ally range” — yes, that’s right, the first Xbox handhelds have arrived! Because clearly, we were all just waiting for the day when we could play Halo on a device that fits in our pockets. Who needs a console at home when you can have a mini Xbox that can barely fit alongside your keys and loose change? Let’s take a moment to appreciate the sheer brilliance of this innovation. After years of gaming on a screen that’s bigger than your average coffee table, now you can squint at a miniature version of the Xbox screen while sitting on the bus. Who needs comfort and relaxation when you can sacrifice your eyesight for the sake of portability? Forget about the stress of lugging around your gaming setup; now you can just carry a glorified remote control! And how about that collaboration with Asus? Because when I think of epic gaming experiences, I definitely think of a partnership that sounds like it was cooked up in a boardroom over a cold cup of coffee. “What if we took the weight of a console and squeezed it into a device that feels like a brick?” Genius! The name “ROG Xbox Ally” even sounds like it was generated by an AI trying too hard to sound cool. “ROG” is obviously for “Really Over-the-Top Gaming,” and “Ally” is just the polite way of saying, “We’re in this mess together.” Let’s not overlook the fact that the last thing we needed in our lives was another device to charge. Who doesn’t love the thrill of realizing you forgot to plug in your handheld Xbox after a long day at work? Nothing screams “gaming freedom” quite like being tethered to a wall outlet while your friends are enjoying epic multiplayer sessions. Who wouldn’t want to take their gaming experience to the next level of inconvenience? Speaking of multiplayer, you can bet that those intense gaming sessions will be even more fun when you’re all huddled together, squinting at these tiny screens, trying to figure out how to communicate when half your friends can’t even see the action happening. It’s a whole new level of bonding, folks! “Did I just shoot you, or was that the guy on my left? Let’s argue about it while we all strain our necks to see the screen.” In conclusion, as we welcome the ROG Xbox Ally range into our lives, let’s take a moment to appreciate the madness of this handheld revolution. If you’ve ever dreamed of playing your favorite Xbox games on a device that feels like a high-tech paperweight, then congratulations! The future is here, and it’s as absurd as it sounds. Remember, gaming isn’t just about playing; it’s about how creatively we can inconvenience ourselves while doing so. #ROGXboxAlly #XboxHandheld #GamingInnovation #PortableGaming #TechHumor
    www.gamedeveloper.com
    The ROG Xbox Ally range has been developed by Microsoft in collaboration with Asus.
    Like
    Love
    Wow
    Sad
    Angry
    562
    · 1 Kommentare ·0 Geteilt ·0 Bewertungen
  • Ants Do Poop and They Even Use Toilets to Fertilize Their Own Gardens

    Key Takeaways on Ant PoopDo ants poop? Yes. Any creature that eats will poop and ants are no exception. Because ants live in close quarters, they need to protect the colony from their feces so bacteria and fungus doesn't infect their health. This is why they use toilet chambers. Whether they isolate it in a toilet chamber or kick it to the curb, ants don’t keep their waste around. But some ants find a use for that stuff. One such species is the leafcutter ant that takes little clippings of leaves and uses these leaves to grow a very particular fungus that they then eat.Like urban humans, ants live in close quarters. Ant colonies can be home to thousands, even tens of thousands of individuals, depending on the species. And like any creature that eats, ants poop. When you combine close quarters and loads of feces, you have a recipe for disease, says Jessica Ware, curator and division chair of Invertebrate Zoology at the American Museum of Natural History. “Ant poop can harbor bacteria, and because it contains partly undigested food, it can grow bacteria and fungus that could threaten the health of the colony,” Ware says. But ant colonies aren’t seething beds of disease. That’s because ants are scrupulous about hygiene.Ants Do Poop and Ant Toilets Are RealAnt colony underground with ant chambers.To keep themselves and their nests clean, ants have evolved some interesting housekeeping strategies. Some types of ants actually have toilets — or at least something we might call toilets. Their nests are very complicated, with lots of different tunnels and chambers, explains Ware, and one of those chambers is a toilet chamber. Ants don’t visit the toilet when they feel the call of nature. Instead, worker ants who are on latrine duty collect the poop and carry it to the toilet chamber, which is located far away from other parts of the nest. What Does Ant Poop Look Like? This isn’t as messy a chore as it sounds. Like most insects, ants are water-limited, says Ware, so they try to get as much liquid out of their food as possible. This results in small, hard, usually black or brownish pellets of poop. The poop is dry and hard enough so that for ant species that don’t have indoor toilet chambers, the workers can just kick the poop out of the nest.Ants Use Poop as FertilizerWhether they isolate it in a toilet chamber or kick it to the curb, ants don’t keep their waste around. Well, at least most types of ants don’t. Some ants find a use for that stuff. One such species is the leafcutter ant. “They basically take little clippings of leaves and use these leaves to grow a very particular fungus that they then eat,” says Ware. “They don't eat the leaves, they eat the fungus.” And yep, they use their poop to fertilize their crops. “They’re basically gardeners,” Ware says. If you’d like to see leafcutter ants at work in their gardens and you happen to be in the New York City area, drop by the American Museum of Natural History. They have a large colony of fungus-gardening ants on display.Other Insects That Use ToiletsAnts may have toilets, but termites have even wilder ways of dealing with their wastes. Termites and ants might seem similar at first sight, but they aren’t closely related. Ants are more closely related to bees, while termites are more closely related to cockroaches, explains Aram Mikaelyan, an entomologist at North Carolina State University who studies the co-evolution of insects and their gut microbiomes. So ants’ and termites’ styles of social living evolved independently, and their solutions to the waste problem are quite different.“Termites have found a way to not distance themselves from the feces,” says Mikaelyan. “Instead, they use the feces itself as building material.” They’re able to do this because they feed on wood, Mikaelyan explains. When wood passes through the termites’ digestive systems into the poop, it enables a type of bacteria called Actinobacteria. These bacteria are the source of many antibiotics that humans use.So that unusual building material acts as a disinfectant. Mikaelyan describes it as “a living disinfectant wall, like a Clorox wall, almost.”Insect HygieneIt may seem surprising that ants and termites are so tidy and concerned with hygiene, but it’s really not uncommon. “Insects in general are cleaner than we think,” says Ware. “We often think of insects as being really gross, but most insects don’t want to lie in their own filth.”Article SourcesOur writers at Discovermagazine.com use peer-reviewed studies and high-quality sources for our articles, and our editors review for scientific accuracy and editorial standards. Review the sources used below for this article:The American Society of Microbiology. The Leaf-cutter Ant’s 50 Million Years of FarmingAvery Hurt is a freelance science journalist. In addition to writing for Discover, she writes regularly for a variety of outlets, both print and online, including National Geographic, Science News Explores, Medscape, and WebMD. She’s the author of Bullet With Your Name on It: What You Will Probably Die From and What You Can Do About It, Clerisy Press 2007, as well as several books for young readers. Avery got her start in journalism while attending university, writing for the school newspaper and editing the student non-fiction magazine. Though she writes about all areas of science, she is particularly interested in neuroscience, the science of consciousness, and AI–interests she developed while earning a degree in philosophy.
    #ants #poop #they #even #use
    Ants Do Poop and They Even Use Toilets to Fertilize Their Own Gardens
    Key Takeaways on Ant PoopDo ants poop? Yes. Any creature that eats will poop and ants are no exception. Because ants live in close quarters, they need to protect the colony from their feces so bacteria and fungus doesn't infect their health. This is why they use toilet chambers. Whether they isolate it in a toilet chamber or kick it to the curb, ants don’t keep their waste around. But some ants find a use for that stuff. One such species is the leafcutter ant that takes little clippings of leaves and uses these leaves to grow a very particular fungus that they then eat.Like urban humans, ants live in close quarters. Ant colonies can be home to thousands, even tens of thousands of individuals, depending on the species. And like any creature that eats, ants poop. When you combine close quarters and loads of feces, you have a recipe for disease, says Jessica Ware, curator and division chair of Invertebrate Zoology at the American Museum of Natural History. “Ant poop can harbor bacteria, and because it contains partly undigested food, it can grow bacteria and fungus that could threaten the health of the colony,” Ware says. But ant colonies aren’t seething beds of disease. That’s because ants are scrupulous about hygiene.Ants Do Poop and Ant Toilets Are RealAnt colony underground with ant chambers.To keep themselves and their nests clean, ants have evolved some interesting housekeeping strategies. Some types of ants actually have toilets — or at least something we might call toilets. Their nests are very complicated, with lots of different tunnels and chambers, explains Ware, and one of those chambers is a toilet chamber. Ants don’t visit the toilet when they feel the call of nature. Instead, worker ants who are on latrine duty collect the poop and carry it to the toilet chamber, which is located far away from other parts of the nest. What Does Ant Poop Look Like? This isn’t as messy a chore as it sounds. Like most insects, ants are water-limited, says Ware, so they try to get as much liquid out of their food as possible. This results in small, hard, usually black or brownish pellets of poop. The poop is dry and hard enough so that for ant species that don’t have indoor toilet chambers, the workers can just kick the poop out of the nest.Ants Use Poop as FertilizerWhether they isolate it in a toilet chamber or kick it to the curb, ants don’t keep their waste around. Well, at least most types of ants don’t. Some ants find a use for that stuff. One such species is the leafcutter ant. “They basically take little clippings of leaves and use these leaves to grow a very particular fungus that they then eat,” says Ware. “They don't eat the leaves, they eat the fungus.” And yep, they use their poop to fertilize their crops. “They’re basically gardeners,” Ware says. If you’d like to see leafcutter ants at work in their gardens and you happen to be in the New York City area, drop by the American Museum of Natural History. They have a large colony of fungus-gardening ants on display.Other Insects That Use ToiletsAnts may have toilets, but termites have even wilder ways of dealing with their wastes. Termites and ants might seem similar at first sight, but they aren’t closely related. Ants are more closely related to bees, while termites are more closely related to cockroaches, explains Aram Mikaelyan, an entomologist at North Carolina State University who studies the co-evolution of insects and their gut microbiomes. So ants’ and termites’ styles of social living evolved independently, and their solutions to the waste problem are quite different.“Termites have found a way to not distance themselves from the feces,” says Mikaelyan. “Instead, they use the feces itself as building material.” They’re able to do this because they feed on wood, Mikaelyan explains. When wood passes through the termites’ digestive systems into the poop, it enables a type of bacteria called Actinobacteria. These bacteria are the source of many antibiotics that humans use.So that unusual building material acts as a disinfectant. Mikaelyan describes it as “a living disinfectant wall, like a Clorox wall, almost.”Insect HygieneIt may seem surprising that ants and termites are so tidy and concerned with hygiene, but it’s really not uncommon. “Insects in general are cleaner than we think,” says Ware. “We often think of insects as being really gross, but most insects don’t want to lie in their own filth.”Article SourcesOur writers at Discovermagazine.com use peer-reviewed studies and high-quality sources for our articles, and our editors review for scientific accuracy and editorial standards. Review the sources used below for this article:The American Society of Microbiology. The Leaf-cutter Ant’s 50 Million Years of FarmingAvery Hurt is a freelance science journalist. In addition to writing for Discover, she writes regularly for a variety of outlets, both print and online, including National Geographic, Science News Explores, Medscape, and WebMD. She’s the author of Bullet With Your Name on It: What You Will Probably Die From and What You Can Do About It, Clerisy Press 2007, as well as several books for young readers. Avery got her start in journalism while attending university, writing for the school newspaper and editing the student non-fiction magazine. Though she writes about all areas of science, she is particularly interested in neuroscience, the science of consciousness, and AI–interests she developed while earning a degree in philosophy. #ants #poop #they #even #use
    Ants Do Poop and They Even Use Toilets to Fertilize Their Own Gardens
    www.discovermagazine.com
    Key Takeaways on Ant PoopDo ants poop? Yes. Any creature that eats will poop and ants are no exception. Because ants live in close quarters, they need to protect the colony from their feces so bacteria and fungus doesn't infect their health. This is why they use toilet chambers. Whether they isolate it in a toilet chamber or kick it to the curb, ants don’t keep their waste around. But some ants find a use for that stuff. One such species is the leafcutter ant that takes little clippings of leaves and uses these leaves to grow a very particular fungus that they then eat.Like urban humans, ants live in close quarters. Ant colonies can be home to thousands, even tens of thousands of individuals, depending on the species. And like any creature that eats, ants poop. When you combine close quarters and loads of feces, you have a recipe for disease, says Jessica Ware, curator and division chair of Invertebrate Zoology at the American Museum of Natural History. “Ant poop can harbor bacteria, and because it contains partly undigested food, it can grow bacteria and fungus that could threaten the health of the colony,” Ware says. But ant colonies aren’t seething beds of disease. That’s because ants are scrupulous about hygiene.Ants Do Poop and Ant Toilets Are RealAnt colony underground with ant chambers. (Image Credit: Lidok_L/Shutterstock)To keep themselves and their nests clean, ants have evolved some interesting housekeeping strategies. Some types of ants actually have toilets — or at least something we might call toilets. Their nests are very complicated, with lots of different tunnels and chambers, explains Ware, and one of those chambers is a toilet chamber. Ants don’t visit the toilet when they feel the call of nature. Instead, worker ants who are on latrine duty collect the poop and carry it to the toilet chamber, which is located far away from other parts of the nest. What Does Ant Poop Look Like? This isn’t as messy a chore as it sounds. Like most insects, ants are water-limited, says Ware, so they try to get as much liquid out of their food as possible. This results in small, hard, usually black or brownish pellets of poop. The poop is dry and hard enough so that for ant species that don’t have indoor toilet chambers, the workers can just kick the poop out of the nest.Ants Use Poop as FertilizerWhether they isolate it in a toilet chamber or kick it to the curb, ants don’t keep their waste around. Well, at least most types of ants don’t. Some ants find a use for that stuff. One such species is the leafcutter ant. “They basically take little clippings of leaves and use these leaves to grow a very particular fungus that they then eat,” says Ware. “They don't eat the leaves, they eat the fungus.” And yep, they use their poop to fertilize their crops. “They’re basically gardeners,” Ware says. If you’d like to see leafcutter ants at work in their gardens and you happen to be in the New York City area, drop by the American Museum of Natural History. They have a large colony of fungus-gardening ants on display.Other Insects That Use ToiletsAnts may have toilets, but termites have even wilder ways of dealing with their wastes. Termites and ants might seem similar at first sight, but they aren’t closely related. Ants are more closely related to bees, while termites are more closely related to cockroaches, explains Aram Mikaelyan, an entomologist at North Carolina State University who studies the co-evolution of insects and their gut microbiomes. So ants’ and termites’ styles of social living evolved independently, and their solutions to the waste problem are quite different.“Termites have found a way to not distance themselves from the feces,” says Mikaelyan. “Instead, they use the feces itself as building material.” They’re able to do this because they feed on wood, Mikaelyan explains. When wood passes through the termites’ digestive systems into the poop, it enables a type of bacteria called Actinobacteria. These bacteria are the source of many antibiotics that humans use. (Leafcutter ants also use Actinobacteria to keep their fungus gardens free of parasites.) So that unusual building material acts as a disinfectant. Mikaelyan describes it as “a living disinfectant wall, like a Clorox wall, almost.”Insect HygieneIt may seem surprising that ants and termites are so tidy and concerned with hygiene, but it’s really not uncommon. “Insects in general are cleaner than we think,” says Ware. “We often think of insects as being really gross, but most insects don’t want to lie in their own filth.”Article SourcesOur writers at Discovermagazine.com use peer-reviewed studies and high-quality sources for our articles, and our editors review for scientific accuracy and editorial standards. Review the sources used below for this article:The American Society of Microbiology. The Leaf-cutter Ant’s 50 Million Years of FarmingAvery Hurt is a freelance science journalist. In addition to writing for Discover, she writes regularly for a variety of outlets, both print and online, including National Geographic, Science News Explores, Medscape, and WebMD. She’s the author of Bullet With Your Name on It: What You Will Probably Die From and What You Can Do About It, Clerisy Press 2007, as well as several books for young readers. Avery got her start in journalism while attending university, writing for the school newspaper and editing the student non-fiction magazine. Though she writes about all areas of science, she is particularly interested in neuroscience, the science of consciousness, and AI–interests she developed while earning a degree in philosophy.
    0 Kommentare ·0 Geteilt ·0 Bewertungen
  • Op-ed: Canada’s leadership in solar air heating—Innovation and flagship projects

    Solar air heating is among the most cost-effective applications of solar thermal energy. These systems are used for space heating and preheating fresh air for ventilation, typically using glazed or unglazed perforated solar collectors. The collectors draw in outside air, heat it using solar energy, and then distribute it through ductwork to meet building heating and fresh air needs. In 2024, Canada led again the world for the at least seventh year in a row in solar air heating adoption. The four key suppliers – Trigo Energies, Conserval Engineering, Matrix Energy, and Aéronergie – reported a combined 26,203 m2of collector area sold last year. Several of these providers are optimistic about the growing demand. These findings come from the newly released Canadian Solar Thermal Market Survey 2024, commissioned by Natural Resources Canada.
    Canada is the global leader in solar air heating. The market is driven by a strong network of experienced system suppliers, optimized technologies, and a few small favorable funding programs – especially in the province of Quebec. Architects and developers are increasingly turning to these cost-effective, façade-integrated systems as a practical solution for reducing onsite natural gas consumption.
    Despite its cold climate, Canada benefits from strong solar potential with solar irradiance in many areas rivaling or even exceeding that of parts of Europe. This makes solar air heating not only viable, but especially valuable in buildings with high fresh air requirements including schools, hospitals, and offices. The projects highlighted in this article showcase the versatility and relevance of solar air heating across a range of building types, from new constructions to retrofits.
    Figure 1: Preheating air for industrial buildings: 2,750 m2of Calento SL solar air collectors cover all south-west and south-east facing facades of the FAB3R factory in Trois-Rivières, Quebec. The hourly unitary flow rate is set at 41 m3/m2 or 2.23 cfm/ft2 of collector area, at the lower range because only a limited number of intake fans was close enough to the solar façade to avoid long ventilation ductwork. Photo: Trigo Energies
    Quebec’s solar air heating boom: the Trigo Energies story
    Trigo Energies makes almost 90 per cent of its sales in Quebec. “We profit from great subsidies, as solar air systems are supported by several organizations in our province – the electricity utility Hydro Quebec, the gas utility Energir and the Ministry of Natural Resources,” explained Christian Vachon, Vice President Technologies and R&D at Trigo Energies.
    Trigo Energies currently has nine employees directly involved in planning, engineering and installing solar air heating systems and teams up with several partner contractors to install mostly retrofit projects. “A high degree of engineering is required to fit a solar heating system into an existing factory,” emphasized Vachon. “Knowledge about HVAC engineering is as important as experience with solar thermal and architecture.”
    One recent Trigo installation is at the FAB3R factory in Trois-Rivières. FAB3R specializes in manufacturing, repairing, and refurbishing large industrial equipment. Its air heating and ventilation system needed urgent renovation because of leakages and discomfort for the workers. “Due to many positive references he had from industries in the area, the owner of FAB3R contacted us,” explained Vachon. “The existence of subsidies helped the client to go for a retrofitting project including solar façade at once instead of fixing the problems one bit at a time.” Approximately 50 per cent of the investment costs for both the solar air heating and the renovation of the indoor ventilation system were covered by grants and subsidies. FAB3R profited from an Energir grant targeted at solar preheating, plus an investment subsidy from the Government of Quebec’s EcoPerformance Programme.
     
    Blue or black, but always efficient: the advanced absorber coating
    In October 2024, the majority of the new 2,750 m²solar façade at FAB3R began operation. According to Vachon, the system is expected to cover approximately 13 per cent of the factory’s annual heating demand, which is otherwise met by natural gas. Trigo Energies equipped the façade with its high-performance Calento SL collectors, featuring a notable innovation: a selective, low-emissivity coating that withstands outdoor conditions. Introduced by Trigo in 2019 and manufactured by Almeco Group from Italy, this advanced coating is engineered to maximize solar absorption while minimizing heat loss via infrared emission, enhancing the overall efficiency of the system.
    The high efficiency coating is now standard in Trigo’s air heating systems. According to the manufacturer, the improved collector design shows a 25 to 35 per cent increase in yield over the former generation of solar air collectors with black paint. Testing conducted at Queen’s University confirms this performance advantage. Researchers measured the performance of transpired solar air collectors both with and without a selective coating, mounted side-by-side on a south-facing vertical wall. The results showed that the collectors with the selective coating produced 1.3 to 1.5 times more energy than those without it. In 2024, the monitoring results were jointly published by Queen’s University and Canmat Energy in a paper titled Performance Comparison of a Transpired Air Solar Collector with Low-E Surface Coating.
    Selective coating, also used on other solar thermal technologies including glazed flat plate or vacuum tube collectors, has a distinctive blue color. Trigo customers can, however, choose between blue and black finishes. “By going from the normal blue selective coating to black selective coating, which Almeco is specially producing for Trigo, we lose about 1 per cent in solar efficiency,” explained Vachon.
    Figure 2: Building-integrated solar air heating façade with MatrixAir collectors at the firehall building in Mont Saint Hilaire, south of Montreal. The 190 m2south-facing wall preheats the fresh air, reducing natural gas consumption by 18 per cent compared to the conventional make-up system. Architect: Leclerc Architecture. Photo: Matrix Energy
    Matrix Energy: collaborating with architects and engineers in new builds
    The key target customer group of Matrix Energy are public buildings – mainly new construction. “Since the pandemic, schools are more conscious about fresh air, and solar preheating of the incoming fresh air has a positive impact over the entire school year,” noted Brian Wilkinson, President of Matrix Energy.
    Matrix Energy supplies systems across Canada, working with local partners to source and process the metal sheets used in their MatrixAir collectors. These metal sheets are perforated and then formed into architectural cladding profiles. The company exclusively offers unglazed, single-stage collectors, citing fire safety concerns associated with polymeric covers.
    “We have strong relationships with many architects and engineers who appreciate the simplicity and cost-effectiveness of transpired solar air heating systems,” said President Brian Wilkinson, describing the company’s sales approach. “Matrix handles system design and supplies the necessary materials, while installation is carried out by specialized cladding and HVAC contractors overseen by on-site architects and engineers,” Wilkinson added.
    Finding the right flow: the importance of unitary airflow rates
    One of the key design factors in solar air heating systems is the amount of air that passes through each square meter of the perforated metal absorber,  known as the unitary airflow rate. The principle is straightforward: higher airflow rates deliver more total heat to the building, while lower flow rates result in higher outlet air temperatures. Striking the right balance between air volume and temperature gain is essential for efficient system performance.
    For unglazed collectors mounted on building façades, typical hourly flow rates should range between 120 and 170, or 6.6 to 9.4 cfm/ft2. However, Wilkinson suggests that an hourly airflow rate of around 130 m³/h/m²offers the best cost-benefit balance for building owners. If the airflow is lower, the system will deliver higher air temperatures, but it would then need a much larger collector area to achieve the same air volume and optimum performance, he explained.
    It’s also crucial for the flow rate to overcome external wind pressure. As wind passes over the absorber, air flow through the collector’s perforations is reduced, resulting in heat losses to the environment. This effect becomes even more pronounced in taller buildings, where wind exposure is greater. To ensure the system performs well even in these conditions, higher hourly airflow rates typically between 150 and 170 m³/m² are necessary.
    Figure 3: One of three apartment blocks of the Maple House in Toronto’s Canary District. Around 160 m2of SolarWall collectors clad the two-storey mechanical penthouse on the roof. The rental flats have been occupied since the beginning of 2024. Collaborators: architects-Alliance, Claude Cormier et Associés, Thornton Tomasetti, RWDI, Cole Engineering, DesignAgency, MVShore, BA Group, EllisDon. Photo: Conserval Engineering
    Solar air heating systems support LEED-certified building designs
    Solar air collectors are also well-suited for use in multi-unit residential buildings. A prime example is the Canary District in Toronto, where single-stage SolarWall collectors from Conserval Engineering have been installed on several MURBs to clad the mechanical penthouses. “These penthouses are an ideal location for our air heating collectors, as they contain the make-up air units that supply corridor ventilation throughout the building,” explained Victoria Hollick, Vice President of Conserval Engineering. “The walls are typically finished with metal façades, which can be seamlessly replaced with a SolarWall system – maintaining the architectural language without disruption.” To date, nine solar air heating systems have been commissioned in the Canary District, covering a total collector area of over 1,000 m².
    “Our customers have many motivations to integrate SolarWall technology into their new construction or retrofit projects, either carbon reduction, ESG, or green building certification targets,” explained Hollick.
    The use of solar air collectors in the Canary District was proposed by architects from the Danish firm Cobe. The black-colored SolarWall system preheats incoming air before it is distributed to the building’s corridors and common areas, reducing reliance on natural gas heating and supporting the pursuit of LEED Gold certification. Hollick estimates the amount of gas saved between 10 to 20 per cent of the total heating load for the corridor ventilation of the multi-unit residential buildings. Additional energy-saving strategies include a 50/50 window-to-wall ratio with high-performance glazing, green roofs, high-efficiency mechanical systems, LED lighting, and Energy Star-certified appliances.
    The ideal orientation for a SolarWall system is due south. However, the systems can be built at any orientation up to 90° east and west, explained Hollick. A SolarWall at 90° would have approximately 60 per cent of the energy production of the same area facing south.Canada’s expertise in solar air heating continues to set a global benchmark, driven by supporting R&D, by innovative technologies, strategic partnerships, and a growing portfolio of high-impact projects. With strong policy support and proven performance, solar air heating is poised to play a key role in the country’s energy-efficient building future.
    Figure 4: Claude-Bechard Building in Quebec is a showcase project for sustainable architecture with a 72 m2Lubi solar air heating wall from Aéronergie. It serves as a regional administrative center. Architectural firm: Goulet et Lebel Architectes. Photo: Art Massif

    Bärbel Epp is the general manager of the German Agency solrico, whose focus is on solar market research and international communication.
    The post Op-ed: Canada’s leadership in solar air heating—Innovation and flagship projects appeared first on Canadian Architect.
    #oped #canadas #leadership #solar #air
    Op-ed: Canada’s leadership in solar air heating—Innovation and flagship projects
    Solar air heating is among the most cost-effective applications of solar thermal energy. These systems are used for space heating and preheating fresh air for ventilation, typically using glazed or unglazed perforated solar collectors. The collectors draw in outside air, heat it using solar energy, and then distribute it through ductwork to meet building heating and fresh air needs. In 2024, Canada led again the world for the at least seventh year in a row in solar air heating adoption. The four key suppliers – Trigo Energies, Conserval Engineering, Matrix Energy, and Aéronergie – reported a combined 26,203 m2of collector area sold last year. Several of these providers are optimistic about the growing demand. These findings come from the newly released Canadian Solar Thermal Market Survey 2024, commissioned by Natural Resources Canada. Canada is the global leader in solar air heating. The market is driven by a strong network of experienced system suppliers, optimized technologies, and a few small favorable funding programs – especially in the province of Quebec. Architects and developers are increasingly turning to these cost-effective, façade-integrated systems as a practical solution for reducing onsite natural gas consumption. Despite its cold climate, Canada benefits from strong solar potential with solar irradiance in many areas rivaling or even exceeding that of parts of Europe. This makes solar air heating not only viable, but especially valuable in buildings with high fresh air requirements including schools, hospitals, and offices. The projects highlighted in this article showcase the versatility and relevance of solar air heating across a range of building types, from new constructions to retrofits. Figure 1: Preheating air for industrial buildings: 2,750 m2of Calento SL solar air collectors cover all south-west and south-east facing facades of the FAB3R factory in Trois-Rivières, Quebec. The hourly unitary flow rate is set at 41 m3/m2 or 2.23 cfm/ft2 of collector area, at the lower range because only a limited number of intake fans was close enough to the solar façade to avoid long ventilation ductwork. Photo: Trigo Energies Quebec’s solar air heating boom: the Trigo Energies story Trigo Energies makes almost 90 per cent of its sales in Quebec. “We profit from great subsidies, as solar air systems are supported by several organizations in our province – the electricity utility Hydro Quebec, the gas utility Energir and the Ministry of Natural Resources,” explained Christian Vachon, Vice President Technologies and R&D at Trigo Energies. Trigo Energies currently has nine employees directly involved in planning, engineering and installing solar air heating systems and teams up with several partner contractors to install mostly retrofit projects. “A high degree of engineering is required to fit a solar heating system into an existing factory,” emphasized Vachon. “Knowledge about HVAC engineering is as important as experience with solar thermal and architecture.” One recent Trigo installation is at the FAB3R factory in Trois-Rivières. FAB3R specializes in manufacturing, repairing, and refurbishing large industrial equipment. Its air heating and ventilation system needed urgent renovation because of leakages and discomfort for the workers. “Due to many positive references he had from industries in the area, the owner of FAB3R contacted us,” explained Vachon. “The existence of subsidies helped the client to go for a retrofitting project including solar façade at once instead of fixing the problems one bit at a time.” Approximately 50 per cent of the investment costs for both the solar air heating and the renovation of the indoor ventilation system were covered by grants and subsidies. FAB3R profited from an Energir grant targeted at solar preheating, plus an investment subsidy from the Government of Quebec’s EcoPerformance Programme.   Blue or black, but always efficient: the advanced absorber coating In October 2024, the majority of the new 2,750 m²solar façade at FAB3R began operation. According to Vachon, the system is expected to cover approximately 13 per cent of the factory’s annual heating demand, which is otherwise met by natural gas. Trigo Energies equipped the façade with its high-performance Calento SL collectors, featuring a notable innovation: a selective, low-emissivity coating that withstands outdoor conditions. Introduced by Trigo in 2019 and manufactured by Almeco Group from Italy, this advanced coating is engineered to maximize solar absorption while minimizing heat loss via infrared emission, enhancing the overall efficiency of the system. The high efficiency coating is now standard in Trigo’s air heating systems. According to the manufacturer, the improved collector design shows a 25 to 35 per cent increase in yield over the former generation of solar air collectors with black paint. Testing conducted at Queen’s University confirms this performance advantage. Researchers measured the performance of transpired solar air collectors both with and without a selective coating, mounted side-by-side on a south-facing vertical wall. The results showed that the collectors with the selective coating produced 1.3 to 1.5 times more energy than those without it. In 2024, the monitoring results were jointly published by Queen’s University and Canmat Energy in a paper titled Performance Comparison of a Transpired Air Solar Collector with Low-E Surface Coating. Selective coating, also used on other solar thermal technologies including glazed flat plate or vacuum tube collectors, has a distinctive blue color. Trigo customers can, however, choose between blue and black finishes. “By going from the normal blue selective coating to black selective coating, which Almeco is specially producing for Trigo, we lose about 1 per cent in solar efficiency,” explained Vachon. Figure 2: Building-integrated solar air heating façade with MatrixAir collectors at the firehall building in Mont Saint Hilaire, south of Montreal. The 190 m2south-facing wall preheats the fresh air, reducing natural gas consumption by 18 per cent compared to the conventional make-up system. Architect: Leclerc Architecture. Photo: Matrix Energy Matrix Energy: collaborating with architects and engineers in new builds The key target customer group of Matrix Energy are public buildings – mainly new construction. “Since the pandemic, schools are more conscious about fresh air, and solar preheating of the incoming fresh air has a positive impact over the entire school year,” noted Brian Wilkinson, President of Matrix Energy. Matrix Energy supplies systems across Canada, working with local partners to source and process the metal sheets used in their MatrixAir collectors. These metal sheets are perforated and then formed into architectural cladding profiles. The company exclusively offers unglazed, single-stage collectors, citing fire safety concerns associated with polymeric covers. “We have strong relationships with many architects and engineers who appreciate the simplicity and cost-effectiveness of transpired solar air heating systems,” said President Brian Wilkinson, describing the company’s sales approach. “Matrix handles system design and supplies the necessary materials, while installation is carried out by specialized cladding and HVAC contractors overseen by on-site architects and engineers,” Wilkinson added. Finding the right flow: the importance of unitary airflow rates One of the key design factors in solar air heating systems is the amount of air that passes through each square meter of the perforated metal absorber,  known as the unitary airflow rate. The principle is straightforward: higher airflow rates deliver more total heat to the building, while lower flow rates result in higher outlet air temperatures. Striking the right balance between air volume and temperature gain is essential for efficient system performance. For unglazed collectors mounted on building façades, typical hourly flow rates should range between 120 and 170, or 6.6 to 9.4 cfm/ft2. However, Wilkinson suggests that an hourly airflow rate of around 130 m³/h/m²offers the best cost-benefit balance for building owners. If the airflow is lower, the system will deliver higher air temperatures, but it would then need a much larger collector area to achieve the same air volume and optimum performance, he explained. It’s also crucial for the flow rate to overcome external wind pressure. As wind passes over the absorber, air flow through the collector’s perforations is reduced, resulting in heat losses to the environment. This effect becomes even more pronounced in taller buildings, where wind exposure is greater. To ensure the system performs well even in these conditions, higher hourly airflow rates typically between 150 and 170 m³/m² are necessary. Figure 3: One of three apartment blocks of the Maple House in Toronto’s Canary District. Around 160 m2of SolarWall collectors clad the two-storey mechanical penthouse on the roof. The rental flats have been occupied since the beginning of 2024. Collaborators: architects-Alliance, Claude Cormier et Associés, Thornton Tomasetti, RWDI, Cole Engineering, DesignAgency, MVShore, BA Group, EllisDon. Photo: Conserval Engineering Solar air heating systems support LEED-certified building designs Solar air collectors are also well-suited for use in multi-unit residential buildings. A prime example is the Canary District in Toronto, where single-stage SolarWall collectors from Conserval Engineering have been installed on several MURBs to clad the mechanical penthouses. “These penthouses are an ideal location for our air heating collectors, as they contain the make-up air units that supply corridor ventilation throughout the building,” explained Victoria Hollick, Vice President of Conserval Engineering. “The walls are typically finished with metal façades, which can be seamlessly replaced with a SolarWall system – maintaining the architectural language without disruption.” To date, nine solar air heating systems have been commissioned in the Canary District, covering a total collector area of over 1,000 m². “Our customers have many motivations to integrate SolarWall technology into their new construction or retrofit projects, either carbon reduction, ESG, or green building certification targets,” explained Hollick. The use of solar air collectors in the Canary District was proposed by architects from the Danish firm Cobe. The black-colored SolarWall system preheats incoming air before it is distributed to the building’s corridors and common areas, reducing reliance on natural gas heating and supporting the pursuit of LEED Gold certification. Hollick estimates the amount of gas saved between 10 to 20 per cent of the total heating load for the corridor ventilation of the multi-unit residential buildings. Additional energy-saving strategies include a 50/50 window-to-wall ratio with high-performance glazing, green roofs, high-efficiency mechanical systems, LED lighting, and Energy Star-certified appliances. The ideal orientation for a SolarWall system is due south. However, the systems can be built at any orientation up to 90° east and west, explained Hollick. A SolarWall at 90° would have approximately 60 per cent of the energy production of the same area facing south.Canada’s expertise in solar air heating continues to set a global benchmark, driven by supporting R&D, by innovative technologies, strategic partnerships, and a growing portfolio of high-impact projects. With strong policy support and proven performance, solar air heating is poised to play a key role in the country’s energy-efficient building future. Figure 4: Claude-Bechard Building in Quebec is a showcase project for sustainable architecture with a 72 m2Lubi solar air heating wall from Aéronergie. It serves as a regional administrative center. Architectural firm: Goulet et Lebel Architectes. Photo: Art Massif Bärbel Epp is the general manager of the German Agency solrico, whose focus is on solar market research and international communication. The post Op-ed: Canada’s leadership in solar air heating—Innovation and flagship projects appeared first on Canadian Architect. #oped #canadas #leadership #solar #air
    Op-ed: Canada’s leadership in solar air heating—Innovation and flagship projects
    www.canadianarchitect.com
    Solar air heating is among the most cost-effective applications of solar thermal energy. These systems are used for space heating and preheating fresh air for ventilation, typically using glazed or unglazed perforated solar collectors. The collectors draw in outside air, heat it using solar energy, and then distribute it through ductwork to meet building heating and fresh air needs. In 2024, Canada led again the world for the at least seventh year in a row in solar air heating adoption. The four key suppliers – Trigo Energies, Conserval Engineering, Matrix Energy, and Aéronergie – reported a combined 26,203 m2 (282,046 ft2) of collector area sold last year. Several of these providers are optimistic about the growing demand. These findings come from the newly released Canadian Solar Thermal Market Survey 2024, commissioned by Natural Resources Canada. Canada is the global leader in solar air heating. The market is driven by a strong network of experienced system suppliers, optimized technologies, and a few small favorable funding programs – especially in the province of Quebec. Architects and developers are increasingly turning to these cost-effective, façade-integrated systems as a practical solution for reducing onsite natural gas consumption. Despite its cold climate, Canada benefits from strong solar potential with solar irradiance in many areas rivaling or even exceeding that of parts of Europe. This makes solar air heating not only viable, but especially valuable in buildings with high fresh air requirements including schools, hospitals, and offices. The projects highlighted in this article showcase the versatility and relevance of solar air heating across a range of building types, from new constructions to retrofits. Figure 1: Preheating air for industrial buildings: 2,750 m2 (29,600 ft2) of Calento SL solar air collectors cover all south-west and south-east facing facades of the FAB3R factory in Trois-Rivières, Quebec. The hourly unitary flow rate is set at 41 m3/m2 or 2.23 cfm/ft2 of collector area, at the lower range because only a limited number of intake fans was close enough to the solar façade to avoid long ventilation ductwork. Photo: Trigo Energies Quebec’s solar air heating boom: the Trigo Energies story Trigo Energies makes almost 90 per cent of its sales in Quebec. “We profit from great subsidies, as solar air systems are supported by several organizations in our province – the electricity utility Hydro Quebec, the gas utility Energir and the Ministry of Natural Resources,” explained Christian Vachon, Vice President Technologies and R&D at Trigo Energies. Trigo Energies currently has nine employees directly involved in planning, engineering and installing solar air heating systems and teams up with several partner contractors to install mostly retrofit projects. “A high degree of engineering is required to fit a solar heating system into an existing factory,” emphasized Vachon. “Knowledge about HVAC engineering is as important as experience with solar thermal and architecture.” One recent Trigo installation is at the FAB3R factory in Trois-Rivières. FAB3R specializes in manufacturing, repairing, and refurbishing large industrial equipment. Its air heating and ventilation system needed urgent renovation because of leakages and discomfort for the workers. “Due to many positive references he had from industries in the area, the owner of FAB3R contacted us,” explained Vachon. “The existence of subsidies helped the client to go for a retrofitting project including solar façade at once instead of fixing the problems one bit at a time.” Approximately 50 per cent of the investment costs for both the solar air heating and the renovation of the indoor ventilation system were covered by grants and subsidies. FAB3R profited from an Energir grant targeted at solar preheating, plus an investment subsidy from the Government of Quebec’s EcoPerformance Programme.   Blue or black, but always efficient: the advanced absorber coating In October 2024, the majority of the new 2,750 m² (29,600 ft2) solar façade at FAB3R began operation (see figure 1). According to Vachon, the system is expected to cover approximately 13 per cent of the factory’s annual heating demand, which is otherwise met by natural gas. Trigo Energies equipped the façade with its high-performance Calento SL collectors, featuring a notable innovation: a selective, low-emissivity coating that withstands outdoor conditions. Introduced by Trigo in 2019 and manufactured by Almeco Group from Italy, this advanced coating is engineered to maximize solar absorption while minimizing heat loss via infrared emission, enhancing the overall efficiency of the system. The high efficiency coating is now standard in Trigo’s air heating systems. According to the manufacturer, the improved collector design shows a 25 to 35 per cent increase in yield over the former generation of solar air collectors with black paint. Testing conducted at Queen’s University confirms this performance advantage. Researchers measured the performance of transpired solar air collectors both with and without a selective coating, mounted side-by-side on a south-facing vertical wall. The results showed that the collectors with the selective coating produced 1.3 to 1.5 times more energy than those without it. In 2024, the monitoring results were jointly published by Queen’s University and Canmat Energy in a paper titled Performance Comparison of a Transpired Air Solar Collector with Low-E Surface Coating. Selective coating, also used on other solar thermal technologies including glazed flat plate or vacuum tube collectors, has a distinctive blue color. Trigo customers can, however, choose between blue and black finishes. “By going from the normal blue selective coating to black selective coating, which Almeco is specially producing for Trigo, we lose about 1 per cent in solar efficiency,” explained Vachon. Figure 2: Building-integrated solar air heating façade with MatrixAir collectors at the firehall building in Mont Saint Hilaire, south of Montreal. The 190 m2 (2,045 ft2) south-facing wall preheats the fresh air, reducing natural gas consumption by 18 per cent compared to the conventional make-up system. Architect: Leclerc Architecture. Photo: Matrix Energy Matrix Energy: collaborating with architects and engineers in new builds The key target customer group of Matrix Energy are public buildings – mainly new construction. “Since the pandemic, schools are more conscious about fresh air, and solar preheating of the incoming fresh air has a positive impact over the entire school year,” noted Brian Wilkinson, President of Matrix Energy. Matrix Energy supplies systems across Canada, working with local partners to source and process the metal sheets used in their MatrixAir collectors. These metal sheets are perforated and then formed into architectural cladding profiles. The company exclusively offers unglazed, single-stage collectors, citing fire safety concerns associated with polymeric covers. “We have strong relationships with many architects and engineers who appreciate the simplicity and cost-effectiveness of transpired solar air heating systems,” said President Brian Wilkinson, describing the company’s sales approach. “Matrix handles system design and supplies the necessary materials, while installation is carried out by specialized cladding and HVAC contractors overseen by on-site architects and engineers,” Wilkinson added. Finding the right flow: the importance of unitary airflow rates One of the key design factors in solar air heating systems is the amount of air that passes through each square meter of the perforated metal absorber,  known as the unitary airflow rate. The principle is straightforward: higher airflow rates deliver more total heat to the building, while lower flow rates result in higher outlet air temperatures. Striking the right balance between air volume and temperature gain is essential for efficient system performance. For unglazed collectors mounted on building façades, typical hourly flow rates should range between 120 and 170 (m3/h/m2), or 6.6 to 9.4 cfm/ft2. However, Wilkinson suggests that an hourly airflow rate of around 130 m³/h/m² (7.2 cfm/ft2) offers the best cost-benefit balance for building owners. If the airflow is lower, the system will deliver higher air temperatures, but it would then need a much larger collector area to achieve the same air volume and optimum performance, he explained. It’s also crucial for the flow rate to overcome external wind pressure. As wind passes over the absorber, air flow through the collector’s perforations is reduced, resulting in heat losses to the environment. This effect becomes even more pronounced in taller buildings, where wind exposure is greater. To ensure the system performs well even in these conditions, higher hourly airflow rates typically between 150 and 170 m³/m² (8.3 to 9.4 cfm/ft2)  are necessary. Figure 3: One of three apartment blocks of the Maple House in Toronto’s Canary District. Around 160 m2 (1,722 ft2) of SolarWall collectors clad the two-storey mechanical penthouse on the roof. The rental flats have been occupied since the beginning of 2024. Collaborators: architects-Alliance, Claude Cormier et Associés, Thornton Tomasetti, RWDI, Cole Engineering, DesignAgency, MVShore, BA Group, EllisDon. Photo: Conserval Engineering Solar air heating systems support LEED-certified building designs Solar air collectors are also well-suited for use in multi-unit residential buildings. A prime example is the Canary District in Toronto (see Figure 3), where single-stage SolarWall collectors from Conserval Engineering have been installed on several MURBs to clad the mechanical penthouses. “These penthouses are an ideal location for our air heating collectors, as they contain the make-up air units that supply corridor ventilation throughout the building,” explained Victoria Hollick, Vice President of Conserval Engineering. “The walls are typically finished with metal façades, which can be seamlessly replaced with a SolarWall system – maintaining the architectural language without disruption.” To date, nine solar air heating systems have been commissioned in the Canary District, covering a total collector area of over 1,000 m² (10,764 ft2). “Our customers have many motivations to integrate SolarWall technology into their new construction or retrofit projects, either carbon reduction, ESG, or green building certification targets,” explained Hollick. The use of solar air collectors in the Canary District was proposed by architects from the Danish firm Cobe. The black-colored SolarWall system preheats incoming air before it is distributed to the building’s corridors and common areas, reducing reliance on natural gas heating and supporting the pursuit of LEED Gold certification. Hollick estimates the amount of gas saved between 10 to 20 per cent of the total heating load for the corridor ventilation of the multi-unit residential buildings. Additional energy-saving strategies include a 50/50 window-to-wall ratio with high-performance glazing, green roofs, high-efficiency mechanical systems, LED lighting, and Energy Star-certified appliances. The ideal orientation for a SolarWall system is due south. However, the systems can be built at any orientation up to 90° east and west, explained Hollick. A SolarWall at 90° would have approximately 60 per cent of the energy production of the same area facing south.Canada’s expertise in solar air heating continues to set a global benchmark, driven by supporting R&D, by innovative technologies, strategic partnerships, and a growing portfolio of high-impact projects. With strong policy support and proven performance, solar air heating is poised to play a key role in the country’s energy-efficient building future. Figure 4: Claude-Bechard Building in Quebec is a showcase project for sustainable architecture with a 72 m2 (775 ft2) Lubi solar air heating wall from Aéronergie. It serves as a regional administrative center. Architectural firm: Goulet et Lebel Architectes. Photo: Art Massif Bärbel Epp is the general manager of the German Agency solrico, whose focus is on solar market research and international communication. The post Op-ed: Canada’s leadership in solar air heating—Innovation and flagship projects appeared first on Canadian Architect.
    0 Kommentare ·0 Geteilt ·0 Bewertungen
CGShares https://cgshares.com