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Robot Jellyfish Show Promise for Ocean Cleanup

Robot Jellyfish Show Promise for Ocean Cleanup

Where are we Now?

Many different negative outcomes have been observed due to reckless disregard for our environment and ecosystems. The main focus in the environmental movement has been on GHGs, reasonably so, as carbon accumulation in the atmosphere poses the largest existential risk for our species and all other animals on our planet.

However, plastic pollution and pollution, in general, have been and continue to be a large risk for many animals and living things across the globe, this fact being amplified in the ocean. Marine ecosystems are delicate; many plants and animals depend on specific conditions to survive and thrive.

As such, cleaning up our oceans and other marine ecosystems is paramount. While numerous technologies have been developed to combat plastic pollution in our water, many of them have their own risks associated with them.

Some machines are too loud, driving animals away from their natural habitats. At the same time, others are too damaging in their efforts to clean up pollution, destroying delicate plants and animals while clearing away plastic.

However, a new technology developed by scientists out of the Max Planck Institute for Intelligent Systems may be able to solve these problems with minimal impact of its own, and that revolves around imitating jellyfish.

 

How Does a Robot Jellyfish Work?

When jellyfish move in the water, what happens is by flapping their bodies, they create an upward current, moving objects and nutrients up to be consumed by them. This new robot jellyfish more or less does the same thing.

It works by using artificial muscles called HAZELs, which are oil-filled sacs covered by electrodes. When the electrodes receive a current, they discharge it to the surrounding negatively charged ocean water. This causes the oil sacs to get pushed back in forth, creating the flapping movement.

This mechanism is the main draw behind these robotic jellyfish, as by using these robots, they can pull the plastic out of delicate areas like coral reefs without ever touching the reef itself. Another benefit is that these robot jellyfish are almost completely noiseless, so their presence won’t disturb other animals.

In a report in Science Advances speaking on how their technology is different from existing technology, they said, ​​“Existing prototypes cannot interact with aquatic species gently in a noise-free manner while accomplishing diverse tasks.” These jellyfish robots, however, can, and that is where the promise of what they’re doing lies.

 

Moving forward.

While these small robot jellyfish are an exciting development in plastic cleaning tech, there are hurdles still to be overcome in their creation. The main one presenting itself is that, as of writing, they still require a wired connection for power, thus limiting their scope to areas where they can be plugged in. There are ongoing trials for battery packs, but so far cannot be controlled remotely.

However, that is a small issue that can be resolved quickly. It is an interesting concept to imagine cute little robot jellyfish cleaning our oceans, but it is, in all reality, much closer than we realize. The importance of realizing efficient and non-disturbing ways of cleaning our oceans is critical, as plastic pollution’s damage to ecosystems and species worldwide is innumerable.

While in some areas of the environmental movement, we can help the ongoing natural processes, like reforestation for carbon capture, in plastic pollution in marine environments, we must develop new tools to reverse the damage we have caused. What an interesting world to live in, where robot jellyfish could be a major factor.

 

 


 

 

Source  Happy Eco News

Vortex Bladeless Turbine Wind Generator

Vortex Bladeless Turbine Wind Generator

How the Vortex Bladeless Turbine Works

The Vortex Bladeless Turbine is a pole-shaped structure that functions without rotating blades, but instead of rotating blades, it works off vibrations generated in the structure by vortices created when the wind passes around it. When the frequency of the vortices matches the resonance frequency of the structure, into which an alternator is integrated, the vibration energy can be transformed into electricity. In simpler terms, as the wind flows past the turbine, it creates a series of spinning whirlwinds, or vortices, that cause the rod-shaped turbine to vibrate. This vibration then converts the mechanical energy into electrical energy that can be used as a source of power.

One of the main differences between bladeless or motionless turbines and traditional wind turbines is that they can generate power at low wind speeds, which is significant because wind speeds in urban areas are typically lower than in rural areas. Traditional turbines require higher wind speeds, making them less effective in built-up areas.

Advantages of the Vortex Bladeless Turbine

One of the significant benefits of the Vortex Bladeless Turbine is that it’s more cost-effective than traditional turbines. It has fewer moving parts, which results in reduced manufacturing and maintenance costs. Also, it doesn’t require any oil or lubricants, making it a more environmentally friendly option.

The design of the Vortex Bladeless Turbine is more eco-friendly than traditional turbines because its pole-shaped structure does not pose any harm to birds and other animals that can come into contact with rotating blades. Furthermore, the device’s sleek design takes up less space than traditional wind turbines, making it adaptable to a wide range of environments.

Another benefit of the Vortex Bladeless Turbine is its flexibility. Its small size makes it the perfect choice for urban areas, where space is limited. They can be placed on the roofs of buildings or integrated into street furniture, providing an unobtrusive source of renewable energy. It can also be used to power individual homes or small communities that are off-grid, where running costs are a concern.

Applications of the Vortex Bladeless Turbine

One application of the Vortex Turbine is in urban environments. As mentioned earlier, these turbines can generate electricity at low wind speeds, making them a viable option for powering cities and towns. By placing them in strategic locations, they can capture the wind currents that flow through narrow streets, parks, and plazas.

Another application of the Vortex Bladeless Turbine is its potential to replace traditional turbines in remote locations. Traditional turbines are often used to provide power in areas where a connection to the electrical grid is not possible. However, their high manufacturing and maintenance costs make them less feasible in such instances. The Vortex Bladeless Turbine, being cost-effective and low maintenance, provides an alternative that can meet the power needs of those living in isolated areas.

The Vortex Bladeless Turbine is a revolutionary wind power generator that has the potential to transform the way we generate renewable energy. Its low manufacturing and maintenance costs, eco-friendly design, and flexibility make it an attractive option for powering urban areas and remote places alike. While there are some limitations, such as the amount of power generated compared to traditional turbines, and the need for further development to increase efficiency, the Vortex Bladeless Turbine is a step in the right direction towards a cleaner, more sustainable future. The device’s minimal environmental impact also makes it an excellent choice for environmentally conscious consumers and energy companies alike.

With renewable energy becoming more important in the fight against climate change, the development of innovative technologies like the Vortex Bladeless Turbine is crucial. As we continue to explore cleaner, more sustainable sources of energy, devices like these will become increasingly critical. And while there are still challenges to overcome and further research to be done, the potential benefits of the Vortex Bladeless Turbine make it a promising addition to our renewable energy toolkit.

Overall, the Vortex Bladeless Turbine is a fascinating innovation that could play a significant role in the future of wind power generation. Its eco-friendly design, low cost, and flexibility make it an exciting alternative to traditional wind turbines. It’s clear that as we move towards a more sustainable future, technologies like this will continue to be developed, offering us new and exciting ways to generate renewable energy and help protect our planet.

 

 


 

 

Source Happy Eco News 

 

Living Green in the Suburbs

Living Green in the Suburbs

Living green in the suburbs is gaining interest from all over the US. Today, 8 of every 10 Americans live in the suburbs. Suburbs are areas within a metropolitan area that are primarily residential. They are not as densely populated as the inner city and are generally a separate political entity of the city. In many suburban areas, a car is required to get around the area and enter the main city or downtown core. In America, the suburbs are responsible for 50% of carbon emissions due to car dependence.

Moreover, these homes conserve less energy as they are required to heat and cool larger houses. Many suburban homes have lawns which require water and maintenance. Over 3 trillion gallons of water a year across 40 million acres of lawn is used in the US. Lawns are also one of the nation’s largest sources of pollution due to the chemical runoff from pesticides and fertilizers that make their way into waterways. Suburban lawns have been known to contaminate swimming and drinking water and harm local fish.

Living Green in the suburbs is simple (and fun).

But it doesn’t all have to be bad. Many environmentally friendly solutions exist to help make living green in the suburbs easier. Front or backyards could be transformed into wildflower meadows or rain gardens. Wildflower meadows mainly contain native plants and are a perfect habitat for pollinators like bees, butterflies and birds. Rain gardens are filled with plants and native grasses that collect storm water runoff from roofs, driveways and streets and are ways to protect the aquatic ecosystem.

Another lawn alternative is planting ground covers that require no mowing and little fertilizer and water. Food scaping is also growing in popularity as a lawn replacement as it enables sustainable edible landscapes. The plants can be edible, which will help contribute to food security, or ornamental, providing an aesthetically pleasing landscape with little planning.

Another way for suburbanites to reduce their environmental impact is by harvesting rainwater from runoff surfaces. The water can be used for irrigation and toilet flushing. It also reduces energy use and carbon emissions from water treatment industries that treat and transfer water.

Reducing energy consumption while living green in the suburbs includes buying more energy-efficient light bulbs, installing insulation and storm windows, purchasing Energy Star Label appliances and choosing renewable energy. Within these suburban communities, a community solar project may allow homeowners to buy into a collectively owned energy project.

Here is an easy-to-follow checklist for living green in the suburbs.

1. Reduce, reuse, and recycle: Practice the three R’s of sustainability by reducing your disposable consumption, reusing items as much as possible, and recycling materials such as paper, plastics, and glass.

2. Compost: Start a compost pile to reduce organic waste and produce nutrient-rich soil for gardening.

3. Install energy-efficient appliances: Replace old appliances with energy-efficient models to reduce energy consumption and save money on utility bills.

4. Use public transportation or carpool: Use public transportation whenever possible or carpool with others to reduce carbon emissions from vehicles.

5. Plant native species in your yard: Planting native species can help support biodiversity and provide habitats for local wildlife.

6. Conserve water: Install low-flow showerheads and toilets, and limit outdoor watering to reduce water usage.

7. Use eco-friendly cleaning products: Switch to environmentally friendly cleaning products that use natural ingredients instead of harsh chemicals.

8. Support local farmers and businesses: Buy produce and products from local farmers and businesses to reduce the carbon footprint associated with shipping and distribution.

9. Use solar power: Install solar panels on your property to produce clean energy and reduce reliance on non-renewable energy sources.

10. Participate in community-wide sustainability initiatives: Join community groups or organizations that promote green living and participate in local sustainability programs or events.

Just because you live in the suburbs, it doesn’t mean you get a free pass to environmental damage. Suburban living can be environmentally damaging, but many opportunities exist to reduce your impact. By simply converting your lawn, you can protect local wildlife and ecosystems. Finding ways to reduce your energy consumption, installing compost bins and piles, and even choosing to eat locally and seasonally will all positively impact how you live, no matter where you live and soon you will find your own family living green in the suburbs.

 

 


 

 

Source Happy Eco News

Aquifer Thermal Energy Storage for Renewables

Aquifer Thermal Energy Storage for Renewables

It’s Not All About Energy Generation

When the topic of decarbonization comes up, oftentimes, we think of transportation or energy generation. These issues are important, as vehicle emissions are a major problem, as well as emissions from fossil fuel power generation. However, while important, these issues only partially show the roadblocks to moving towards a green future.

Another component that needs to be addressed in the conversation is energy storage and efficiency in renewable energy.

Wind and solar energy are important and rapidly developing technologies but are dependent on weather conditions that vary from month to month and from year to year. In colder months, when houses need to heat, that is when significantly less sunlight is present, thus driving down the available energy to heat them.

This is why energy storage is crucial to the conversation regarding renewable energy, but other solutions might mitigate this problem if properly implemented. This is how aquifer thermal energy storage (ATES) could help assist in cooling and heating buildings, reducing the reliance on other renewable energy sources.

How About Aquifer Thermal Energy Storage?

Energy storage is a difficult topic to address, as the technologies required to implement large-scale grid energy storage require, ironically, a lot of energy. This isn’t helped by the fact that hydrogen energy storage systems right now lose a significant amount of the energy stored.

This is why reducing the grid energy demand is important to implement renewable energy systems successfully. Aquifer thermal energy storage is an interesting form of renewable energy specific to the heating and cooling of buildings because it ties in directly with the seasons that affect solar energy so much.

It works by utilizing two wells connected to the same groundwater reservoir. Cold groundwater is pumped up to cool the building during the summer, then stored. The same process happens in winter but in reverse. Warm groundwater is pumped up into the building, then stored.

Aquifer thermal energy storage systems can also store excess heat from industrial operations, similar to the geothermal systems being deployed in decommissioned oil wells. This process can help bridge the gap between the seasonal availability of renewable energy while at the same time decarbonizing the heating and cooling sector.

This system is also useful because it can make energy infrastructure more resilient by reducing the demand currently placed upon it by heating and cooling. According to a study in Science Direct, Aquifer thermal energy storage systems could reduce reliance on fossil fuels for energy by up to 40%.

New Tech can Help but not Solve Inherent Limits

The importance of renewable energy in the transition to a greener world cannot be understated. However, it is also important to recognize that there are limitations to the technology currently available.

Going forward, there are certainly ways that renewable energy, specifically solar, can become more efficient; the issue of seasonal availability will always be there. This is why alternative methods of addressing needs like heating and cooling are as important.

The issue of energy storage is also important because bridging the gap between availability and need is necessary for making renewable energy a viable alternative to our current fossil fuel energy generation system.

 

 

 


 

 

 

Source Happy Eco News

 

10 Low Maintenance Houseplants for Air Purification

10 Low Maintenance Houseplants for Air Purification

The Top Low Maintenance Houseplants for Air Purification

  1. Snake Plant
  2. Aloe Vera
  3. English Ivy
  4. Spider Plant
  5. Peace Lily
  6. Boston Fern
  7. Rubber Plant
  8. Golden Pothos
  9. Bamboo Palm
  10. Chinese Evergreen

Snake Plant

The snake plant, also known as mother-in-law’s tongue, is one of the most popular low maintenance houseplants for air purification. This plant is great for beginners as it can survive in almost any lighting condition and doesn’t require frequent watering. It also removes toxins such as benzene, formaldehyde, and trichloroethylene from the air.

Aloe Vera

Aloe Vera is not only a great houseplant for air purification, but it also has several other health benefits. This low maintenance plant can survive in low light conditions and doesn’t require frequent watering. Aloe vera is known to remove formaldehyde from the air and can be used to treat minor burns and skin irritations.

English Ivy

English ivy is another low maintenance houseplant that can purify the air in your home. It can survive in low light conditions and doesn’t require frequent watering. English ivy is known to remove toxins such as benzene, formaldehyde, and trichloroethylene from the air.

Spider Plant

The spider plant is a great choice for those looking for low maintenance houseplants for air purification. This plant can remove formaldehyde and xylene from the air and survive in low light conditions. It doesn’t require frequent watering and is safe for pets.

Peace Lily

The peace lily is a beautiful low maintenance houseplant that can also purify the air in your home. It can survive in low light conditions and doesn’t require frequent watering. The peace lily is known to remove toxins such as benzene, formaldehyde, and trichloroethylene from the air.

Boston Fern

The Boston fern is a popular choice for those looking for low maintenance houseplants for air purification. This plant can survive in low light conditions and doesn’t require frequent watering. The Boston fern is known to remove toxins such as formaldehyde and xylene from the air.

Rubber Plant

The rubber plant is a low maintenance houseplant that can purify the air in your home. It can survive in low light conditions and doesn’t require frequent watering. The rubber plant is known to remove toxins such as formaldehyde from the air.

Golden Pothos

The golden pothos is a low maintenance houseplant that can also purify the air in your home. This plant can survive in low light conditions and doesn’t require frequent watering. The golden pothos is known to remove toxins such as formaldehyde, benzene, and carbon monoxide from the air.

Bamboo Palm

The bamboo palm is a low maintenance houseplant that can remove toxins such as benzene and formaldehyde from the air. This plant can survive in low light conditions and doesn’t require frequent watering. The bamboo palm is also pet-friendly, making it a great choice for those with furry friends at home.

Chinese Evergreen

The Chinese evergreen is a low maintenance houseplant that can purify the air in your home. It can survive in low light conditions and doesn’t require frequent watering. The Chinese evergreen is known to remove toxins such as benzene and formaldehyde from the air, making it a great choice for those looking for a low maintenance plant that can improve air quality.

How to Care for Low Maintenance Houseplants

Low maintenance houseplants are great for those who don’t have much time to devote to caring for plants. Here are some tips on how to care for them:

  • Water: Most low maintenance houseplants for air purification don’t require frequent watering. Overwatering can harm your plant, so letting the soil dry out between watering sessions is important. You can check if your plant needs water by sticking your finger in the soil. If it’s dry, it’s time to water your plant.
  • Light: Most low maintenance houseplants can survive in low to medium light conditions. However, it’s important to make sure your plant is getting enough light to thrive. If your plant starts to look droopy or its leaves start to turn yellow, it may be a sign that it’s not getting enough light.
  • Soil: Use well-draining soil for your low maintenance houseplants. This will help prevent overwatering and root rot.
  • Fertilizer: Low maintenance houseplants don’t require frequent fertilizing. You can fertilize your plant once every few months with a general-purpose houseplant fertilizer.

FAQs

Can low maintenance houseplants really purify the air?

  1. Yes, certain houseplants are known for their ability to purify the air and remove toxins.

How often should I water my low maintenance houseplants?

  1. Most low maintenance houseplants don’t require frequent watering. It’s important to let the soil dry out between watering sessions.

Are low maintenance houseplants safe for pets?

  1. Most of the low maintenance houseplants listed in this article are safe for pets. However, it’s always a good idea to check if a plant is pet-friendly before bringing it into your home.

Can low maintenance houseplants survive in low light conditions?

  1. Yes, most low maintenance houseplants can survive in low to medium light conditions.

Do low maintenance houseplants require frequent fertilizing?

  1. No, low maintenance houseplants don’t require frequent fertilizing. You can fertilize your plant once every few months with a general-purpose houseplant fertilizer.

 

 


 

 

Source  Happy Eco News

 

Solar panel efficiency to increase 50% with “miracle” cells

Solar panel efficiency to increase 50% with “miracle” cells

A South Korean company has made a groundbreaking achievement as they unveiled the world’s first production line dedicated to perovskite-silicon tandem solar cells. These innovative solar cells have the potential to boost efficiency by 50-75% compared to standard solar panels.

The commercialization of perovskite-based solar cells marks a significant milestone after years of advancements with the mineral. It has widely been regarded as a “miracle” material capable of revolutionizing various industries, including renewable energy.

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The next-generation solar cell technology

Qcells, based in Seoul, has committed a substantial investment of US$100mn to bring this next-generation solar cell technology from the realm of lab tests and academic research to practical application.

A pilot production line to be operational by late next year will be funded by the investment at a factory in Jincheon.

“This investment in Jincheon will mark an important step in securing technological leadership,” said Justin Lee, CEO of Qcells.“With a global R&D network spanning from Korea, Germany and the US, Qcells will ramp up its efforts to produce high-efficiency advanced tandem cells.”

 

Improving sufficiency

Tandem solar cells offer a significant enhancement to the efficiency of conventional solar panels, by dividing the light spectrum and optimizing energy extraction from each segment to generate electricity.

In fact, the world record for solar cell efficiency stands at 32.5%, achieved with a perovskite-silicon tandem cell. In contrast, traditional silicon-based solar cells typically reach only around 22% efficiency.

This signifies that nearly one-third of solar radiation can be efficiently converted into electrical energy.

The development of tandem solar cells represents a promising leap forward in harnessing solar energy more effectively and surpassing the limitations of conventional silicon-based technologies.

 

 


 

 

Source Sustainability

 

Berrow-Zeice Hydrogen; Clean Retrofits for Diesel

Berrow-Zeice Hydrogen; Clean Retrofits for Diesel

Berrow-Zeice Hydrogen System is Emissions Free

Steve Berrow, who is located in South Wales, has expressed his elation about Innovate UK’s involvement in the project. He claims that the Berrow-Zeice hydrogen system, with its zero-emissions technology using hydrogen, is a “thing of great beauty.” Integrating the fuel system into a conventional combustion engine can provide an emissions-free solution, significantly reducing carbon emissions. The system’s practical applications are enormous, making it a game-changer in the field of hydrogen fuel technology.

Unlike a hydrogen fuel cell, which is a device that converts hydrogen into electricity that can then be used to power an electric motor, the Berrow-Zeice hydrogen fuel system is a unique hydrogen-powered fuel system that can be applied to any petrol or diesel engine. It takes in no air and delivers no exhaust resulting in zero emissions, making it a game-changing emissions-free system. The technology ensures greater efficiency for drivers than other current zero-emission offerings and has the potential to reduce carbon emissions significantly.

This innovation can potentially revolutionize the over 2 billion internal combustion engines currently in use worldwide, creating several multitrillion-dollar revenue streams by converting current rolling stock to this emissions-free system. The system’s potential to be applied to the 2 billion plus internal combustion engines already in existence presents a massive revenue stream opportunity for investors.

Innovate UK’s substantial grant further validates the patent-pending innovation, providing increased confidence for potential investors. Overall, the potential for the Berrow-Zeice fuel system to create a massive reduction in carbon emissions while providing a more efficient and cost-effective solution for drivers presents a compelling investment opportunity.

Most current zero-emission vehicles run on either lithium batteries or hydrogen cells, both of which have negative environmental consequences when manufacturing new automobiles. In addition, there is the issue of “electric stress” caused by batteries and the high cost of hydrogen cells for consumers.

The BERROW-ZEICE system offers a “100% fuel burn” to the engine, which provides greater efficiency for drivers than other current zero-emission solutions, potentially reducing carbon emissions worldwide. This technology will significantly impact public health and the environment by reducing the harmful effects of emissions like Carbon dioxide (CO2), Carbon monoxide (CO), Nitrogen oxides (NOx), Particulate matter (PM), and other unburned toxins in the breathable environment.

For more information on Berrow-ZEICE, visit their website at www.berrow-zeice.com.

Innovate UK is a UK-based innovation agency that provides financial and advisory support to clean technology startups and other innovative businesses. The agency has supported the Berrow-Zeice hydrogen fuel system with a substantial grant, which will facilitate the conversion and commercialization of a large power generator, paving the way for a wider commercial rollout across static and mobile applications.

Innovate UK’s support for Berrow-Zeice underscores its commitment to fostering the growth of the clean technology sector and driving economic growth by supporting innovative ideas and solutions. By connecting businesses with partners, customers, and investors that can help them turn their ideas into successful products and services, Innovate UK plays a crucial role in helping to realize the potential of new technologies that can address global challenges such as climate change and air pollution.

 

 


 

 

Source  Happy Eco News

Etihad Airways plans to use sustainable fuel made from CO2

Etihad Airways plans to use sustainable fuel made from CO2

UAE-based airline Etihad Airways has partnered with Twelve, a carbon transformation company, to promote sustainable aviation fuel (SAF) produced from CO2 and renewable energy.

Twelve combines renewable energy and water to convert CO2 into vital chemicals and materials derived from fossil fuels. This innovative formula reduces lifecycle emissions by 90% compared to traditional fossil-based fuels and is compatible with current aircrafts.

Etihad’s sustainable mission

The new partnership aligns with Etihad’s sustainability goals of achieving net-zero emissions by 2050 and converting waste into fuel, with a target of diverting 75% of waste from landfills by 2025. The collaboration is driven by the growing demand for SAF among various airlines.

In 2019, the airline introduced the Etihad Greenliner Program, which allocated a Boeing 787-10 Dreamliner to focus on sustainability initiatives. The programme aims to identify and tackle key sustainability challenges through partnerships with Boeing and engine manufacturer GE.

SAF aligns with Etihad’s commitment to driving innovation and transforming the aviation industry towards sustainability, and the new partnership reinforces Etihad’s mission and sustainability efforts.

“Etihad Airways is working hard on its sustainability strategy and deploying a range of initiatives across the spectrum of sustainability to achieve that,” Mohammad Al Bulooki, Chief Operating Officer at Etihad said. “Collaborating with sustainable aviation fuel makers like Twelve to advance products like E-Jet fuel is an important part of that drive.”

A long-term solution for addressing aviation emissions

Twelve has developed a low-carbon jet fuel, E-Jet fuel, produced using carbon transformation technology, which has been tested and verified by the US Air Force.

By joining forces, the two businesses aim to plan international demonstration flights to promote SAF in the global market.

Twelve’s CEO, Nicholas Flanders, describes the partnership as an “honour” while highlighting the company’s progress towards a supply of drop-in jet fuel made from air and not oil.

Flanders continues: “Our E-Jet fuel allows airlines like Etihad to reduce emissions by up to 90% with their existing aircraft fleet, which will be critical to achieving the United Nations’ 2050 net-zero emissions target in aviation.”

 

 


 

 

Source  Sustainability

4D-Printed Seeds That Can Study the Soil

4D-Printed Seeds That Can Study the Soil

Soil plays an important role in keeping our planet healthy. Soil filters our water, provides plants with nutrients, and provides a home for billions of organisms. Moreover, the soil is an important ingredient for growing food, and it protects us against flooding and combats drought. Because soil is made in part of broken down plant matter, they contain a lot of carbon that the plants took in from the atmosphere. The capacity of carbon that soil can hold depends on climate, temperature, rainfall, soil type and depth.

Soil is under threat due to rising temperatures and biodiversity loss due to climate change. Half of the topsoil in the world has been lost in the last 150 years due to erosion. These impacts include compaction, loss of soil structure, nutrient degradation and soil salinity. Soil nutrient loss is recognized as among the most critical problems at a global level for food security and sustainability.

Because many of the effects of climate change on soil happen underground, it can be difficult to study the impacts. Scientists from the Bioinspired Soft Robotics Lab in Genoa, Italy, have developed a solution to this problem. They have designed the first 4D-printed seed-inspired soft robot. The robotic seed mimics the movement and performance of a natural seed. The seed is said to help act as a sensor for monitoring pollutants, CO2 levels, temperature and humidity in the soil.

The structure of the South African geranium inspires the artificial seed. The seeds can change shape in response to how humid their environment is. The seed can autonomously move around a terrain surface and penetrate the soil. Here, the seed can explore the soil and penetrate inside fractures, extracting energy from the environmental humidity changes. The seeds can find a home for themselves by expanding and shrinking due to changes in the water content of the air.

The seed was created using 4D printed structures as they can create dynamic morphological changes under environmental stimuli. Additionally, these structures can be programmed to reshape and perform work for any type of scenario. The seed is also strong enough to lift about 100 times its own weight. The seeds are made out of biodegradable polymers, which are activated using oxygen plasma to increase water-attracting abilities. The scientists chose these materials because they absorb and expand when exposed to humidity.

This invention could be a battery-free wireless tool for environmental topsoil monitoring. It could be a low-cost system to collect soil data across remote areas without monitoring data. It is also a relatively non-invasive way to study and monitor the soil. And the role of biodegradable materials and eco-friendly processing is fundamental for sustainable and green robotics to avoid the dispersal of new waste in natural environments. This study could be an inspiration for other researchers looking to study hard-to-reach areas that are at risk due to climate change.

 

 


 

 

Source Eco Hero News

Sustainable Fashion: Could the future of LYCRA be corn?

Sustainable Fashion: Could the future of LYCRA be corn?

Developed in 1958, the revolutionary LYCRA fiber invented by Dr. Joseph Shivers – DuPont Chemist – was designed to replace natural rubber in girdles and foundation garments. Driven by the outbreak of World War II those in Europe and the US began to seek alternatives for natural resources that we expected to be either cut off or redirected for military use.

This new elasticated fiber could be spun into fine filaments and stretch up to 500% of its original length while being able to return to its original shape. Being both stronger and more durable, the fiber could be used to create softer, lighter and sheerer foundation garments that are easy to care for an highly resistant to perspiration, oils and lotions.

Flash forward 60 years, and LYCRA has had many landmark moments in the world of fashion, notable moments include the use of LYCRA for the Apollo astronauts’ spacesuits in 1969; achieving recording-breaking athletic performance in the 1972 summer games; jumping onboard the fitness craze in the 1980s; and becoming a household name in 1995.

Today, LYCRA has more than 200 unique fibers to optimize the way clothes look, feel, and perform. As an industry leader in fibre innovation, LYCRA is driven to meet the ever-changing needs of consumers.

How LYCRA is furthering sustainable fashion with the use of corn

Partnering with Qore, The LYCRA Company has developed the world’s first large-scale commercial production of bio-derived spandex using QIRA as one of its main ingredients. As a result, 70% of LYCRA fiber content will derive from annually renewable feedstock.

“As part of our sustainability goals, we are committed to delivering products that support a more circular economy while helping our apparel and personal care customers reduce their footprint,” said Julien Born, CEO of The LYCRA Company.

He added: “We are especially pleased to collaborate with Qore, a company that shares our vision for innovative, sustainable solutions. Their expertise in operating fermentation processes and understanding of the chemical value chains makes them the ideal partner to help develop a bio-derived LYCRA® fibre at commercial scale.”

Production of QIRA will be at Cargill’s biotechnology campus and corn refining operations in Eddyville, Iowa, operations will commence in 2024 following the completion of the facility’s construction. The first Renewable LYCRA fiber made with QIRA will be produced at The LYCRA Company’s Tuas, Singapore manufacturing site in 2024.

“We are proud to partner with The LYCRA Company on bringing this sustainable material solution to the market. This collaboration demonstrates that QIRA® directly replaces conventional BDO and thus significantly improves the fibre’s sustainability profile. QIRA® is an innovative platform chemical that can be used in various applications across industries,” said Jon Veldhouse, CEO of Qore.

By using field corm grown by Iowa farmers, both LYCRA and QIRA will enable a significant reduction in CO2, and replace a finite resource with one that is annually renewable, while maintaining the fiber’s performance.

 

 


 

 

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