Search for any green Service

Find green products from around the world in one place

Invasive Species Refined: Bioplastics from Water Hyacinth

Invasive Species Refined: Bioplastics from Water Hyacinth

In a pioneering breakthrough, researchers have unveiled an innovative technique to make bioplastics from water hyacinth (Pontederia crassipes) to solve pollution and plastic waste. Leveraging the notorious water hyacinth, an invasive aquatic weed causing havoc in waterways, the scientists have demonstrated a circular approach to tackle environmental challenges.

Revolutionizing Bioremediation and Value-Added Products

Water hyacinth is endemic to South America and was introduced to North America and the rest of the world as an ornamental plant. However, once in the environment, they are infamous for choking waterways, causing damage to ecosystems, and causing over $100 million in annual control costs in the U.S. alone. However, the research team at the University of California, Riverside, led by Dr. Zhiwei Hu, discovered a way to harness the potential of this invasive plant for environmental redemption. Their technique involves using water hyacinth to absorb and break down pollutants from wastewater, addressing excessive nutrient pollution, and then converting the biomass into valuable bioplastics and fertilizer.

“We aimed to tackle two environmental problems — excessive nutrient pollution and plastic waste — with one circular solution,” explained Dr. Hu. “And we discovered the resulting bioplastics from water hyacinth perform on par with standard petrochemical plastics in terms of flexibility, durability, and strength.”

This groundbreaking approach provides a sustainable solution to the environmental issues associated with water hyacinths and offers a valuable resource for manufacturing bioplastics from water hyacinths. The researchers are investigating ways to enhance the experimental bioplastics to enable full industrial substitution for materials like polyurethane in consumer goods.

Turning a Troublesome Weed into a Resource

Fueled by excessive nitrogen and phosphorous levels in surface waters, water hyacinth outbreaks have been wreaking havoc on freshwater habitats. Creating bioplastics from water hyacinths and other valuable products could jumpstart more resilient regional bio-manufacturing ecosystems.

“The collaboration between wastewater treatment plants and our water hyacinth bioremediation technique combined with material generation is under exploration,” noted Dr. Hu. “Scaling this will help relieve stress on conventional plastic supply chains while supporting greener, carbon-conscious manufacturing.”

Towards a Greener Future: Scaling and Collaboration

The potential for scaling bioplastics from water hyacinths holds promise for addressing the challenges posed by water hyacinths and contributing to sustainable manufacturing practices. Water hyacinth is an invasive aquatic plant that can cause substantial ecological and economic damage by outcompeting native species, reducing biodiversity, and impeding water flow.

However, researchers have discovered that the fibrous tissues and polymers within water hyacinth can be extracted and used as feedstock for biodegradable plastics. By repurposing these invasive plants into valuable bioplastics, an immense potential exists for transforming an environmental burden into economic opportunity.

The research showcases the environmental benefits and highlights the economic potential of repurposing invasive plants. Scaling up bioplastic production from water hyacinth could provide a renewable, compostable alternative to conventional petroleum-based plastics.

Water hyacinth is an ideal candidate for sustainable bioplastic feedstock as an abundant and fast-growing invasive species requiring no additional land, water, or nutrient resources. If successful, this approach could present an economically viable alternative to conventional plastic production, supporting ecological resilience through invasive plant control and closed-loop manufacturing powered by renewable plant biomass.

Additionally, the bioplastics from water hyacinths offer promising mechanical properties comparable to polyethylene and polypropylene. The research indicates that water hyacinth bioplastics could replace conventional plastics in various applications. By incentivizing large-scale harvesting of invasive plants, bioplastic production can mitigate ecological damage while meeting material demands.

Unlikely Collaborations: A Key to Sustainable Solutions

The collaboration between scientists and troublesome flora exemplifies the potential for finding solutions where they are least expected. By tapping into the disruptive tendencies of invasive plants, the research opens up new possibilities for environmental redemption and industrial symbiosis.

As the world grapples with pollution and plastic waste, bioplastics from water hyacinths offer hope. It showcases the transformative power of unlikely collaborations and the ability to turn environmental challenges into opportunities for innovation and positive change. The researchers believe that such groundbreaking initiatives could pave the way for a greener, more sustainable future in both environmental conservation and manufacturing.

 

 

 


 

 

 

Source   Happy Eco News 

 

How eBay is Encouraging Refurbished Tech to Reduce E-waste

How eBay is Encouraging Refurbished Tech to Reduce E-waste

Here’s a weird fact. There are currently a little over 8 billion people on the planet, yet there are about 16 billion mobile phones. Convenient maths shows us that means every single person on the planet has on average two phones.

Even more startling is the fact that, according to the international Waste from Electrical and Electronic Equipment (WEEE) Forum, more than 5 billion of those will be thrown away this year and head to e-waste.

That is despite the fact that these devices contain valuable resources including gold, silver, copper, and palladium. Estimates put the value of these precious metals dumped each year at more than US$10 billion.

It’s not just mobile phones that are the issue, all electronic waste – from laptops to smart TVs – is a pressing issue that needs addressing.

In the UK alone, two million tonnes of e-waste is discarded each year. That’s according to Mark Monte-Colombo, Head of Refurbished Technology for eBay UK, who says refurbished technology can support a circular economy and enhance accessibility.

“Globally, a significant surge in electronic waste is expected to reach 74.7 million tonnes by the end of the decade,” Monte-Colombo tells Sustainability.

“However, the good news is that increased interest in refurbished technology can help to drastically reduce waste. For example, on eBay UK, through the sale of refurbished products, we avoided over 2.8 million kg of waste in 2022, which is equivalent to over 23.5 million phones being spared from landfills.”

 

Growing Demand for Refurbished to Reduce Costs and Waste

Refurbished technology refers to any tech product that has been used and returned, either to the original business or an approved reseller, for repairs or vetting before being resold.

People return technology for various reasons: perhaps the item is pristine but the customer had a change of mind within the returns window, sometimes items are returned due to marks or wear, many returns fall under what eBay calls ‘open box’ – meaning the item is pristine but not in its original packaging. On top of that, retailers offer trade-in schemes to help people upgrade their tech.

Monte-Colombo says momentum is growing for refurbished technology. More and more brands are seeing the value in refurbished products, and eBay now features over 150 leading brands in its refurbished category, such as Dyson, Samsung, and Apple.

“We understand how crucial it is to partner with major companies to extend the lifespan of electronic devices, reduce waste, and promote a circular economy,” he says.

“Looking ahead to 2024, I’m anticipating continued momentum for refurbished products.
Despite challenging times, consumers still genuinely care about the environment. Nearly a third (32%) of UK consumers we surveyed confirmed they’d purchase pre-loved or refurbished items because it’s better for the environment.”

 

 

Switching to Refurbished Drives Circular Economy

Refurbished technology is clearly resonating with consumers, with price being an important factor. Any stigma associated with ‘refurbished’, ‘second hand’, or ‘used’ is also being dispelled, largely thanks to mobile phones providing a “gateway” into the market.

Monte-Colombo says the frequent turnover of devices with contract upgrades has seen a constant influx of relatively new mobile devices becoming available as refurbished.

The resale of pre-loved and refurbished goods on our global platform conserves resources and reduces waste,” says Monte-Colombo. “In 2022, we avoided 73,000 metric tons of waste globally through buying and reselling on the platform.

“Refurbishing requires significantly less energy compared to manufacturing new products. Our Refurbished category extends the lifecycle of electronic products and diverts them from landfills, helping shoppers reduce their environmental impact.

“With these environmental benefits, more consumers and businesses switching to refurbished vs new will enable a circular economy model.”

 

How Businesses can Benefit From Choosing Refurbished

There is still work to do to shift consumer attitudes from considering refurbished products as an afterthought to a first thought. To shift this perception, promoting the value and quality of refurbished tech products and their reduced environmental impact is essential.

Monte-Colombo says another significant challenge is educating consumers about electronic recycling and reducing barriers to recycling electronics that no longer function and cannot be repurposed.

“There’s also a real opportunity for businesses to invest in refurbished technology vs new, a trend we’ve already observed gaining traction,” he says.

“Nearly 60% of UK businesses actively opt for refurbished hardware over a new device. With many businesses setting sustainability goals, transitioning to refurbished technology can effectively help achieve these objectives.

For me, the future is refurbished. In 2024, we’ll see sustained consumer demand for refurbished tech. I’m excited to see the continued shift to a more sustainable future.”

 

 


 

 

Source  Sustainability

Holcim Orders 1000 Volvo FH Electric Trucks

Holcim Orders 1000 Volvo FH Electric Trucks

ZURICH – In a monumental move towards sustainable logistics, Holcim Group, one of the world’s largest cement manufacturers, has placed a groundbreaking order for 1000 Volvo FH electric trucks. This landmark deal marks the largest sale of electric 18-wheelers to date, signaling a significant shift towards decarbonized mass haulage on European roadways. The move is a strategic step in Holcim’s commitment to achieving net-zero emissions in cement logistics by 2050, according to Holcim CEO Jan Jenisch.

Driving Towards Net Zero in Cement Logistics

Holcim’s ambitious order of 1,000 Volvo FH electric trucks is a pivotal component of its broader strategy to slash Scope 3 transport carbon emissions and advance its 2050 net-zero roadmap. With the building materials industry grappling with substantial fleet pollution responsible for over a quarter of global value chain emissions, embracing e-mobility emerges as a viable solution to mitigate the outsized climate impact of freight transport.

The Volvo FH electric truck is a groundbreaking heavy-duty truck. Holcim’s colossal order now propels the commercialization of electric semi-trailers in Europe to new heights. As charging infrastructure continues to improve, major logistics players like Holcim are making strategic moves to convert their diesel fleets to electric, targeting reduced emissions and lower maintenance costs than traditional combustion vehicles.

Holcim’s substantial tender is expected to play a crucial role in accelerating the adoption of electric freight in Europe, with the potential for a quicker return on investment being an attractive proposition for other manufacturers to expedite their exploration of electric fleets.

Vehicle Automation on the Horizon

Holcim not only envisions a shift towards electric vehicles but also expects vehicle automation to play a significant role in the transition. Research and development pilots for vehicle automation are already underway in Germany, leveraging the latest Volvo FH electric truck models as a foundational platform for autonomous hardware. Holcim aims to integrate automation into its vision for decarbonized haulage, creating a seamlessly optimized material delivery system down to the turning wheels at each plant.

Germany is also developing an innovative catenary power system for electric transport trucks that will reduce fossil fuel usage and carbon emissions from the freight industry. The concept involves building overhead power lines along motorways that will connect to compatible vehicles like the Volvo FH electric truck while driving. Sensors and software in the trucks detect the cables above and automatically raise current collectors, allowing the electric motor, battery pack, and braking system to be powered by the overhead electric catenary.

This allows the trucks’ battery capacity to be smaller and lighter since they don’t need to store energy for the entire route. Instead, the catenaries continuously charge the batteries like electric trains and public transit trams, granting the trucks unlimited driving range while under the cables. Germany’s priority freight corridors between industrial hubs will be electrified first. The country allocated $73 million towards installing overhead cables on the autobahn in 2023. If the network expands as envisioned, trucking companies can utilize cleaner electric hybrid trucks for most routes without stopping and charging for long periods.

The numbers associated with this order of Volvo FH electric trucks are substantial and represent a significant leap toward sustainable practices in the building materials industry. Holcim’s strategic investment in electric semi-trucks underscores its commitment to sustainable practices and sets a precedent for the broader industry to embrace innovative solutions for a greener future.

 

 


 

 

Source   Happy Eco News

Best Jobs For People Who Love Nature

Best Jobs For People Who Love Nature

Being a nature lover means you’ll enjoy spending a lot of time outdoors in the very heart of nature. However, it doesn’t have to end there because you can make plenty of money from your passion. This piece highlights the best jobs for nature lovers.

Park Ranger

Park rangers are the heartbeat of most natural reserves, state parks, and national parks. They are responsible for enforcing rules protecting the natural environment and all life. Aside from environmental protection, they also educate and protect tourists. To fully prepare yourself for this role, you’ll need to attend any of the park ranger colleges in your proximity.

Environmental Engineer

There are many reasons why any nature lover would sign up to be an environmental engineer. First, this career allows you to protect the environment you love so much. You’ll be tasked with working with a team to create innovative solutions that prevent environmental hazards.

When you sign up as an environmental engineer, you may spend some time indoors in an office; however, you will also spend a great portion of your work time in the great outdoors.

Also, environmental engineers earn an impressive salary. On average, these engineers make six figures annually. Additionally, there are several job opportunities for environmental engineers in the private and public sectors.

Wildlife Biologist

The role of a wildlife biologist is one of the most exciting for people who love nature. A job as a wildlife biologist will take you closer than ever to animals. You’ll spend plenty of time studying animal behavior in the wild. However, you may choose to study them in captivity in a zoo.

Wildlife biologists are also called zoologists and are often employed by universities, conservation organizations, and government agencies. Getting a bachelor’s degree in Wildlife Conservation is recommended if you want a career as a wildlife biologist.

Sustainability Manager

Being a nature lover without a flair for sustainability is impossible. This job role sees you focus on caring for the environment and fighting deterioration. They are the progenitors of innovative waste management plans.

Unlike other job roles that take you closer to nature, you’ll spend most of your time as a sustainability manager in an office, attending calls and meetings. So, it’s essential to have strong communication and critical thinking skills to process plenty of information.

 

Frequently Asked Questions

What Are Some Ideal Job Options for Individuals Passionate About Nature?

For nature enthusiasts, careers like park ranger, environmental scientist, or wildlife biologist are excellent choices. Park rangers work directly in natural settings, managing parks, educating visitors, and conserving wildlife. Environmental scientists study the impact of human activity on the environment, while wildlife biologists focus on the behavior and conservation of animals.

How Do Careers in Ecotourism Cater to Nature Lovers?

Ecotourism offers unique opportunities for those who love nature by allowing them to combine their passion with work. Jobs in ecotourism include eco-tour guides, sustainable travel planners, or wildlife photographers. These roles involve leading nature-focused tours, promoting conservation efforts, and providing educational experiences for travelers in natural settings.

What Role Do Conservation Organizations Play in Providing Fulfilling Careers for Nature Lovers?

Conservation organizations offer diverse career paths for individuals committed to protecting the environment. Jobs such as conservation biologist, environmental educator, or sustainability coordinator are typical within these organizations. Conservation biologists work to preserve ecosystems and endangered species, while environmental educators raise awareness and promote environmental stewardship.

 

Conclusion

Contrary to popular opinion, being a nature lover doesn’t necessarily have to stop at being just a passion. You will gain more satisfaction earning from a job you also enjoy. As such, we’ve compiled a list of the best jobs for you to help the environment.

 

 


 

 

Source  Happy Eco News

What is water cremation? UK now offers eco-friendly burial alternative

What is water cremation? UK now offers eco-friendly burial alternative

The UK’s biggest funeral care provider is now offering water cremation. But what exactly is it and what is its impact on the environment?

Water cremation is now available in the UK following rising demand for more environmentally friendly end-of-life options.

When you die there are currently only two options in most of Europe – burial or a traditional fire cremation.

But new options are becoming more popular.

 

What is water cremation or resomation?

Water cremation, also known as aquamation, resomation and alkaline hydrolysis, uses water to bring the body back to the skeletal remains.

The body is placed in a steel vessel filled with water and an alkaline solution.

It is then heated up which takes the flesh back to its chemical components – amino acids, peptides, sugars and salts.

After about three to four hours, only the bones remain. They are then ground down to a white powder, placed in an urn and given to the family.

Last summer the UK’s biggest funeral provider, Co-op Funeralcare, announced that it would start offering the service. This made them the first business to do so.

Water cremation was already legal in the UK subject to compliance with health, safety and environmental regulation.

It’s the method that South African anti-apartheid hero Desmond TuTu chose following his death in 2021.

He wanted an eco-friendly funeral and according to UK-based firm resomation, it uses five times less energy than a fire cremation.

 

What is the environmental impact of the funeral industry?

“For decades there have been just two main choices when it comes to [peoples’] end-of-life arrangements: burial and cremation,” says Julian Atkinson, director of resomation company Kindly Earth.

“[We] will be providing people with another option for how they leave this world because this natural process uses water, not fire, making it gentler on the body and kinder on the environment.”

And there appears to be an appetite for such a service.

Research by YouGov, commissioned by Co-op Funeralcare, found that 89 per cent of UK adults hadn’t heard of the term resomation. But once explained, just under a third (29 per cent) said they would choose it for their own funeral if it was available.

“The rise in ecological and sustainability concerns over the past decade combined with a desire to be part of nature or laid to rest in a natural setting, means more people are considering the environmental impact of their body once they die,” says Professor Douglas Davies from the Department of Theology and Religion at Durham University.

Around 245kg of carbon emissions are generated by one traditional cremation, the equivalent of charging your smartphone over 29,000 times.

Traditional burials also have negative environmental consequences. The chemicals used in the embalming process can leak out and pollute the surrounding soil and waterways.

 

Which European countries offer water cremation?

The UK is not the only European country to make waves in the resomation scene.

Ireland is set to open its first water cremation facility this year. The service is also available in the US, Canada and South Africa.

Belgium and the Netherlands are among the other European countries looking to introduce resomation, but there are regulatory hurdles that must be overcome first.

 

 


 

 

Source   euronews.green.com

Premier League Clubs Agree To Minimum Standard Of Environmental Action

Premier League Clubs Agree To Minimum Standard Of Environmental Action

‘Underpin long-term environmental ambitions’

The Commitment outlines four operational measures, which will build on existing actions and provide a foundation to underpin long-term environmental ambitions. They are:

1. Develop a robust environmental sustainability policy, by the end of the 2024/25 season

2. Designate a senior employee to lead the club’s environmental sustainability activities

3. Develop a greenhouse gas (GHG) emissions dataset (scope 1, 2 and 3) by the end of the 2025/26 season and work towards a standardised football-wide approach to measuring emissions

4. Support the development of a common framework for action via the Premier League Sustainability Working Group (PLSWG)

The statement confirms that ‘the measures have been developed following extensive consultation with clubs and the Premier League Sustainability Working Group, which was established last year to help shape and inform environmental practices across the League.’

 

What impact will this have?

According to Sport Positive Leagues dataset (the latest update of which is in progress, out in March), the majority of Premier League clubs have an environmental policy or strategy in place. They range from a statement on the club’s website, to a large-scale breakdown of their activities, environmental footprint, reporting and ambition. Having a date in place for all clubs to have something robust in place is a strong step forward.

Designating a senior employee to lead the environmental sustainability activities is crucial, to ensure this stays on the agenda and is pushed forward. In Premier League clubs currently this ranges from head of sustainability and sustainability manager roles, to communications, facilities and operations.

Six Premier League clubs currently publicly share some or all of their carbon footprint – Manchester City, Liverpool, Tottenham Hotspur, Wolverhampton Wanderers, Nottingham Forest and Crystal Palace. Some clubs know their emissions footprint but don’t currently publicly report on scope 1, 2 and 3, beyond SECR regulations. Other clubs are earlier on in the journey of capturing data, but the majority are on the way to understanding their baseline. Having a standardised football-wide approach will enable a level playing field.

The development of a common framework for action via PLSWG is an important commitment, as the power of collective and unified action in football is key to ambition, action and success at scale.

 

 


 

 

Source   Forbes

 

Lidl launches city-wide drinks packaging recycling scheme

Lidl launches city-wide drinks packaging recycling scheme

Shoppers will be able to deposit any single-use drinks packaging made from either PET plastic or aluminium, between 100ml and three litres in size. Barcodes must be attached and readable.

Collected packaging will be sent for recycling. Lidl is aiming to capture at least 10.5 tonnes of material every month.

The launch of the scheme is intended to go some way to preparing customers for Scotland’s nationwide deposit return scheme (DRS) for drinks packaging, which was due to launch last August but was delayed until March 2024.

Further delays could yet be announced due to backlash from some retailers, plus the fact that a UK-wide DRS is not due to launch until early 2025 at the soonest.

DRS initiatives see a levy placed on beverages, which customers can only claim back after returning their used packaging to a certified collection point for recycling.

But Lidl has elected not to add a levy to its beverages at present. Instead, customers will receive a 5p reward for every bottle or can returned, with no limit on the amount that each person can claim. They can receive the rewards as either a voucher for money off their next shop, or as a donation to Lidl’s charity partner in Scotland, STV Children’s appeal. The appeal supports children in poverty with education, mental health care, social activities and necessities like food and clothing.

Lidl GB’s chief commercial officer Richard Bourns described the initiative as “a win-win for all”.

He said: “We’re on a mission to eliminate all unnecessary waste, and with over 95% of our own-brand packaging now recyclable, reusable, or refillable we’ve been making great progress. We know that Lidl shoppers share this passion, and we hope that utilising this infrastructure, which might otherwise have been left dormant, will help to make recycling their cans and bottles even more convenient for them.”

 

 


 

 

Source   edie

Absolut Vodka in Paper Bottles

Absolut Vodka in Paper Bottles

Over 50 years ago, we were introduced to the concept of box wine – a wine that came in a box with a collapsible bag inside. The invention gained popularity because it was cheaper than other wines and spirits. Adding the integral tap in the bag made it easier to pour a glass of wine and store it. From an environmental standpoint, boxed wine is recyclable and easier to transport. Although glass is recyclable, it requires a lot of energy to produce and transport.

Switching to cardboard is less energy-intensive to produce and is a lot lighter in comparison to transport. Although boxed wine has been associated with being a cheaper quality wine, the quality has improved significantly over the years, with many winemakers packaging their products in boxes.

If wine can be packaged more sustainably, what about other types of alcohol? Swedish company Absolut Vodka wants to switch from glass bottles to paper bottles. As part of a pilot project, Absolut has made bottles out of 57% wood fibres certified by the Forest Stewardship Council. To prevent the liquid from leaking through, the bottles contain an integrated moisture barrier made from recycled plastic.

This pilot project is part of a collaboration with Paboco and the Pioneer Community. Paboco is a paper bottle company working towards creating the world’s first 100% bio-based and recyclable paper bottle. The paper bottle is recyclable as paper packaging and can be designed to hold many different products, from soda to sun location. The company has partnered with L’Oreal, the Coca-Cola Company, Procter & Gamble and many others to help introduce smarter and more sustainable packaging solutions into more significant markets.

Paboco is no stranger to packaging alcohol in paper bottles. They have been successful with beer company Carlsberg with their Fibre Bottle, made out of plant-based PEF polymer lining. The material is compatible with plastic recycling systems and can degrade in nature. The PEF, which is made out of natural raw materials, protects the taste and fizziness of the beer, and the outer shell helps to keep the beer colder for longer compared to cans or glass bottles.

Absolut Vodka has been testing these paper bottles for over a decade, and they are finally launching 500-millilitre paper bottles in select Tesco stores in Manchester, in the UK. The city of Manchester was chosen as a testing site because it had the recycling infrastructure to handle the bottles. Absolut also found that Manchester had higher household recycling rates than any other region in the UK.

Much like how wine boxes are lighter and less energy-intensive to transport, Absolut will calculate the carbon footprint of the paper bottles, which will be significantly lighter than their traditional glass bottles. The company is also collecting feedback from consumers, retailers and distributors and will use their findings to make necessary adjustments. They will also be working on developing ways to make the bottles from more than 57% paper and achieve a 100% paper bottle target.

While glass is a better option and can be used infinitely, compared to plastic bottles, it is pretty costly to recycle. Glass can only be recycled in furnaces that use high energy to reach high heat, increasing pollution. The switch to paper bottles could have a significant impact on the emission that comes from the food and drink industry. While Absolut Vodka is only one of many alcohol companies, it could be the inspiration needed to make the switch. We might see our liquor stores go from clanky, heavy glass bottles to lightweight paper ones in the near future.

 

 


 

 

Source  Happy Eco News

Danish City First To Test Return System For Reusable Coffee Cups

Danish City First To Test Return System For Reusable Coffee Cups

The Danish city of Aarhus launched a three-year trial program to curve down the number of disposable coffee cups where locals can use a deposit system for reusable takeaway packages.

Like in other Nordic and Central European countries, in Denmark deposit system where one receives back money one pays when purchasing a plastic bottles or cans is already in place

The project that focused on eliminating disposable cups trash is the result of a collaboration between the Municipality of Aarhus and the recycling company TOMRA which already provides other waste collection services to the city.

For a year and a half in 2022, the company All In On Green’s robotic arm SeaProtectorOne deployed in the water, collected over 100,000 disposable glasses from the city’s river Å – from which the city derived its name – demonstrating a huge level of plastic pollution in the city.

”Aarhus must be greener and more sustainable, and Aarhus must be a city where we have the courage to test new solutions.” said Nicolaj Bang, Aarhus’ councillor for technology and environment in a press release. “We use enormous amounts of takeaway packaging in Denmark, and consumption is increasing. Therefore, it really matters if we can make it easier for both consumers and businesses to choose a more sustainable alternative to disposable packaging,” he stated.

Aarhus is the second biggest city in Denmark, counting around 336,000 inhabitants – and potential disposable cup users. The trial has been set as voluntary, but so far already 44 cafés and bars in the center of the city got interested in the project – perhaps even some frequented by King Frederik X, when he used to study at the city’s university.

Initially, 40,000 cups in two designs will be produced and around 25 deposit machines will be established in the city so that citizens can return their cups, and cash back some Danish kroner. Geir Sæther, senior vice president for circular economy at TOMRA said the company expects ‘to be able to expand the system to other types of packaging in the near future’, so to facilitate the transition from single-use to reusable packaging.

The return fee for a reused cup is just over 70 dollar cents (DKK 5) , but it is not for the money that citizens should start returning their cups: ”Recycling saves the earth’s resources and our emission of CO2. More recycling means that there is less waste that ends up as rubbish in our city and our nature,” said Bang.

This is the first city in Denmark, and the world, to carry out such city experiments, although Copenhagen had previously trialed an experimental system where pizza containers, sushi trays and coffee cups should be able to be returned in the hip area of Kødbyen, situated in a central neighborhood. Currently, Danish startup Kleen hub is experimenting in the capital with its third-generation return system based on a single bank card tap.

TOMRA’s ceo Tove Andersen said in a press release that “Aarhus shows the way to one more sustainable future, and we hope that many more cities will be inspired to do the same,”.

Cities and regional authorities have so far acted upon consumer behaviors to decrease different kinds of pollution in their cities: “These policies are quietly working because local governments are addressing climate change with communities long-term together with other challenges that people care about, like healthy diets and supporting local businesses,” said Olivier de Schutter, co-chair of the sustainable food system expert team IPES-Food.

 

 


 

 

Source  Forbes

 

 

Meta Powers Towards Net Zero with Carbon Removal Projects

Meta Powers Towards Net Zero with Carbon Removal Projects

Any organisation worth their sustainability salt knows that reaching net zero emissions in operations alone is not enough

Decarbonization must extend beyond offices and factories to include Scope 3, from the emissions caused by suppliers to those created by employees.

For Meta, the world’s fifth-biggest tech company, this challenge is being met with ambitious targets and bold, meaningful action.

Having already hit net zero emissions in global operations in 2020, the social media giant now has its sustainability sights set on achieving net zero value chain emissions by 2030.

This is quite the challenge, given 99% of Meta’s carbon footprint came from Scope 3 in 2022 – and this continues to rise.

“We know that reaching net zero emissions across our value chain will not be an easy task,” Rachel Peterson, Vice President of Data Centre Strategy at Meta said in the company’s 2023 Sustainability Report.

“Right now, our Scope 3 emissions are increasing and will continue to do so as we work to support the global demand for the services we provide.”

 

Meta Tackles Hard-to-Abate Sectors with Carbon Removal Projects

Meta acknowledges that reaching this goal requires a significant shift in how it builds infrastructure and operates its entire business – and the 20-year-old company is prioritising efficiency and circularity in its business decisions and embracing low-carbon technology to operate with a lower emissions footprint.

For example, through its supplier engagement programme, Meta is working to decarbonise its supply chain and enable at least two-thirds of its suppliers to set SBTi-aligned reduction targets by 206.

However, there are some emissions from hard-to-abate sectors the Facebook owner knows will be difficult to reduce by the end of the decade.

And so to tackle this, Meta has turned to carbon removal projects, the third pillar in its high-level emissions reduction strategy.

In a white paper outlining its Net Zero Strategy, the company says investing in value chain emissions reductions projects is necessary to address sources it can’t directly influence – like companies or processes used to extract and process the copper in data centre hardware or mechanical electrical equipment.

“These projects offer a significant opportunity to decarbonise our business at pace and scale require to achieve our 2030 reduction target,” the paper states.

For Meta, a diverse approach to carbon removal that includes both nature-based and technological approaches is crucial – not only to ensure near-term climate impact but to support carbon removal solutions for the future.

This strategy involves the purchase of credits from projects that align with Meta’s principles, from reforestation to investment in direct air capture technology.

 

Nature-Based Solutions in Mitigating Carbon Emissions

Since 2021, the social media giant has supported numerous nature-based carbon removal projects, from Australia to Kenya, including increasing forest carbon stock of community ejido forests in Oaxaca and increasing stored carbon via protection of forests that provide habitat for mitigating salmon in California.

And demonstrating its continued commitment to investing in nature-based solutions to mitigate carbon emissions, Meta recently signed a major carbon credits deal for 6.75 million carbon credits with Aspiration, a leading provider of sustainable financial services.

These credits hail from a myriad of ecosystem restoration and natural carbon removal approaches, including native tree and mangrove reforestation, agroforestry, and the implementation of sustainable agricultural practices.

Meta’s role in the voluntary carbon market extends beyond purchasing credits from projects to supporting new project development through financing and encouraging the evolution of standards that bring more certainty to the market.

Among the ways Meta is driving development in the sector is through collaborative action that will “aggregate the resources of multiple companies to create rapid change at scale”.

This includes a collaborative pledge to develop carbon projects that centre Indigenous leadership.

Through 1t.org, the National Indian Carbon Coalition and Meta have pledged to support and promote a model of carbon projects that centre on the leadership, traditional ecological knowledge, and vision of Indigenous Peoples for themselves and their land.

Among other collaborative projects:

  • Participation in the Business Alliance to Scale Climate Solutions (BASCS), which provides a platform for businesses and climate experts to meet, learn, discuss and act together to improve climate solutions.
  • Collaboration with the World Resources Institute to develop a method to map forest canopy height↗ at individual tree-scale using a new Meta AI training model. We have mapped forest canopy in California and São Paulo, Brazil, and are making the data public and freely available

 

 

Meta’s Role in Scaling Carbon Removal Technologies

In further driving development in the sector, Meta joined forces with other big tech companies in 2022 to accelerate the development of carbon removal technologies by guaranteeing future demand.

While some say focusing on carbon capture is a distraction to the real goal of reducing greenhouse gas emissions, Meta argues that both emissions reductions and carbon dioxide removal are needed.

And climate science backs this up.

Scientists say removing the carbon emissions that we have already pumped into the atmosphere is necessary if we are to avoid the 1.5-degree rises in global temperature set out in the Paris Agreement.

Launched in 2022, Frontier is a US$925 million joint commitment between Meta, Stripe, Shopify, McKinsey Sustainability and Alphabet – more recently bolstered with four new companies – Autodesk, H&M Group, JPMorgan Chase and Workday – committing a combined US$100 million.

Frontier helps its member companies purchase CO2 removal via pre-purchase agreements or offtake agreements. The goal is to spur the development of a new industry by providing a novel source of funding that isn’t based on debt or equity investments, but on actual product purchases before the technology is fully available at scale.

So far, Frontier has spent $5.6 million buying nearly 9,000 tonnes of contracted carbon removal from 15 different carbon dioxide removal startups.

Among these, RepAir uses electrochemical cells and clean electricity to capture carbon dioxide from the air, while Living Carbon is a synthetic biology startup working on engineering natural systems to remove carbon dioxide.

With this strategy, Meta is helping to expand the voluntary carbon market, overcome barriers to scale, and at the same time achieve its own ambitious net zero goals.

 

 


 

 

Source