Search for any green Service

Find green products from around the world in one place

4 Stepping Stones to Sustainability for New Construction Firms

4 Stepping Stones to Sustainability for New Construction Firms

4 Stepping Stones to Sustainability for New Construction Firms

The construction industry has a well-deserved reputation for being an environmental polluter. It has gotten away with ungreen practices because the other sectors are just as dirty, if not more. However, climate change has made the world less tolerant of environmentally unsound organizations. Governments have joined the sustainability movement, so the writing is on the wall for maladaptive enterprises.

Many firms are slow to adopt greener practices, but the influx of startups can accelerate the sector’s sustainability transformation. New design-build firms, general contracting businesses, and subcontractors are better positioned to embrace eco-friendly initiatives.

The corporate culture is still a blank canvas, so start fresh with these four tips.

 

  1. Go Digital

Technological adoption and sustainability go hand in hand. Outdated methods and crude tools limit your ability to overcome your blind spots and find opportunities to operate more sustainably. Investing in digital technologies is necessary to address your pain points and streamline your processes.

Which innovations should you prioritize? There are numerous excellent candidates:

  • Mobile devices and messaging tools can harness cloud computing’s potential to promote remote resource access and foster interconnectedness. The interplay between these technologies will break down the usual communication barriers, making it easy to keep everybody on the same page.
  • Computer-aided design, building information modeling, and construction management programs streamline processes. They have unique functions but digitize data so you can review information more granularly. Analytics programs can reveal insights to solve problems that harm the environment, like surplus inventory and rework.
  • LiDAR and camera-equipped drones, wearable Internet of Things devices, and telematics systems can collect data on almost anything. They can help you precisely and accurately scan the landscape to minimize disturbance on existing ecosystems, quantify worker performance to identify and correct wasteful habits and keep tabs on equipment usage.
  • Bots automate tedious tasks, allowing you to conduct construction work more efficiently. Robotic arm 3D printers and bricklayers can help you complete projects faster and decrease material waste.

Construction has been slow to innovate primarily due to employee hesitance. Feeling intimidated by innovative solutions and receiving inadequate technical support are some of the usual baggage crews carry. Budget for training and continuous learning, as technologically savvy workers feel comfortable with innovations and can maximize their tools to run your business more sustainably.

 

  1. Be Circular

Circularity promotes using renewable, reclaimed or recycled materials, reusing or repurposing items, recovering salvageable materials, and designing structures with easily recoverable components. Such practices aim to leave the remaining virgin resources untouched because logging, mining and quarrying have considerable environmental consequences. These extraction methods destroy natural habitats, displace wildlife, eradicate biodiversity, pollute soil, water and air, and reduce natural carbon sinks.

Considering the planet’s finite resources, the construction industry has to switch from the linear to the circular model sooner rather than later. Otherwise, the sector will face crippling supply chain disruptions, which can result in project delays and loss of profits. How do you join the circular economy?

  • Buy reclaimed, recycled and repurposed construction supplies: Try doing so whenever you can to help conserve virgin resources.
  • Choose vendors carefully: Circular suppliers engaging in unethical practices practice greenwashing, not sustainability. Exercise due diligence to ensure your supply chain partners are as green as they claim to be to avoid enriching environmentally damaging businesses.
  • Select used equipment over new products: Purchasing pre-owned tools, machines and vehicles is sustainable because they’re already around. Ordering brand-new assets incentivizes manufacturers to build more products, potentially using newly extracted raw materials. Plus, pre-owned models save you money because used items cost less, less downtime is necessary for training and replacement parts are usually cheaper.
  • Put a premium on prefabrication: Prefab construction minimizes waste since it’s easier to control material usage when building components off-site in a factory-controlled environment. More importantly, construction modules lend themselves to deconstruction, simplifying dismantling and material recovery for reuse or resale.

 

  1. Emit Less

Decarbonize your operations at every turn. Switching from diesel to electric is one of the best ways to do so. Powering your assets with nothing but electricity eliminates air and noise pollution on-site.

Running on electricity doesn’t automatically translate to fewer greenhouse gas emissions. In 2023, fossil fuels produced 60% of the electricity generated in the United States. The nation’s power mix will be cleaner once green hydrogen becomes ubiquitous, so operating electric construction assets will be even more eco-friendly in the future.

If upgrading to electric equipment doesn’t make sense for you, adopting renewable diesel is the next best thing. This alternative fuel is chemically identical to fossil-derived diesel, so you can use it on your existing assets without modifying anything. Renewable diesel releases fewer climate change gasses because it burns cleaner.

Furthermore, localize your supply chain. Ships are responsible for 3% of all greenhouse gasses linked to human activities globally. Ordering materials from overseas will increase your construction firm’s carbon footprint, but transporting domestically sourced materials involves fewer emissions. It’s also logically simple because they cover less ground and avoid Customs and Border Protection. As a bonus, you enjoy shorter lead times.

Make it a mission to have a lean mindset. A lean construction philosophy aims to cut waste at every chance, minimizing idle time and redundant processes that drive up greenhouse gas emissions.

 

  1. Look Ahead

Sustainability isn’t an objective — it’s a purpose. It’s a never-ending pursuit, so always seek new ways to run your construction firm in an environmentally friendly way.

Lack of knowledge about emerging technologies is among the limiting factors in innovating. Curiosity is the antidote to ignorance, so keep up with the hottest trends in eco-building. Transparent wood, superabsorbent hydrogel, luminescent cement, 3D-printed soil structures, biodegradable polyurethane foam and plasma rock are some of the most promising innovations.

Most promising eco-friendly construction solutions take a lot of development before becoming ready for sale — and only a few ultimately gain mainstream acceptance. Although many ingenious ideas don’t pan out, be ahead of the curve. Use them to inspire regenerative and climate-resilient building designs that positively impact the environment for decades.

 

Take Small Steps Toward Sustainability

These four strategies only scratch the surface of what you do to be a force for good in the sector’s sustainability transformation. Strive to be more eco-friendly as you grow and you’ll establish a solid reputation as a green construction business.

 

 


 

 

Source   Happy Eco News 

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 

 

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

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

 

Larger Cargo Bikes in NYC Transport More Goods

Larger Cargo Bikes in NYC Transport More Goods

City is considering larger cargo bikes in NYC to transport more goods in more places.

New York City may soon permit larger cargo bikes in NYC to legally operate on its streets in a move that could substantially grow urban freight delivery by cycling. The NYC Department of Transportation proposed new rules that would legalize pedal-assisted electric cargo trikes up to 10 feet long and 10 feet high.

If adopted, the larger trike dimensions would enable more goods to be transported by bikes rather than vans and trucks. Advocates say embracing cargo bikes tailored for commercial uses can reduce traffic, pollution, noise, and curbside congestion caused by urban delivery vehicles.

Under current regulations, only smaller cargo bikes meeting dimensions for standard bicycles are street-legal in NYC. Larger cargo bikes in NYC are all but inevitable; cargo trikes exceeding those size limits have become popular for urban logistics in other US and European cities.

The proposed guidelines for larger cargo bikes in NYC would align with size allowances for cargo trikes in cities like Seattle, Detroit, and Philadelphia. The NYC DOT stressed cycling freight remains supplementary to traditional truck delivery but offers environmental benefits.

Larger cargo bikes in NYC can “provide increased hauling capacity compared to smaller bicycles…potentially reducing reliance on truck trips and promoting a more sustainable city,” the agency stated.

Expanding cargo bike delivery supports sustainability goals in New York City’s 25-year master plan released in 2021 aimed at equitable climate action. The plan’s transportation section calls for transitioning to cleaner freight options to reach carbon neutrality.

Advocates say allowing larger cargo bikes in NYC tailored for commercial uses would align with the master plan’s priorities. They argue substituting just one fossil fuel-powered delivery truck or van with an electric-assisted cargo trike prevents significant emissions over time. Each trike potentially displaces those larger, polluting vehicles that are worsening both congestion and air quality on NYC streets.

Wider cargo bike adoption can make a meaningful dent in transportation emissions, accounting for nearly 30% of New York City’s total carbon footprint. Cargo bikes also alleviate other pressures urban delivery vehicles create, such as noise, parking limitations, road safety concerns, and decreased public space. Unlocking the potential of micro-mobility freight options like cargo trikes is key to reaching the sustainability vision outlined in the 25-year plan.

The larger cargo bikes in NYC would utilize electric assist motors to haul substantial loads up to 500 pounds with minimal strain compared to pedaling those heavy full loads. Their three-wheeled stable design and sturdy hauling strengths make these cargo trikes ideal urban delivery vehicles for short distances or last-mile trips from distribution hubs. Cargo bikes’ small size, maneuverability, and zero direct emissions also let them nip through urban traffic easily for swift point-to-point goods movement.

Commercial cargo trike models can have front buckets or storage bins to securely transport goods, food orders, packages and more. Some designs allow custom boxes or refrigerated containers to be attached.

Logistics companies like Amazon, UPS, and FedEx already use cargo trikes in a few American cities to shortcut traffic in dense areas. Smaller NYC firms have recognized their benefits as well. For example, Gotham Greens, an urban produce grower, relies on a fleet of cargo bikes to distribute fresh salad greens to local restaurants and stores from their rooftop greenhouses. Beer distributor TriBeca deployed heavy-duty e-trikes last year capable of carrying 800 lbs of beer kegs to pubs and restaurants. They aim to replace several delivery vans to cut diesel emissions.

Experts say each switched delivery from vans to bikes eliminates, on average, about 7 tons of carbon dioxide emissions annually. Less truck traffic and parking also create safer, quieter streets.

But despite their promise, cargo bikes presently make up a tiny fraction of urban goods movement. Questions remain over whether larger cargo bikes in NYC could substantially dent air pollution and congestion woes created by the over 65,000 daily truck trips.

The NYC DOT will collect public feedback on proposed cargo trike regulations this spring before finalizing new rules. Customized trike manufacturers and logistics firms will be watching closely.

Larger cargo bikes have carved growing niches abroad in Amsterdam and London. For cycling advocates, allowing them in New York City could be a critical step to build momentum for sustainable urban freight.

 

 


 

 

Source  Happy Eco News

Renewable energy battery systems could harness eggshell proteins for electricity conduction

Renewable energy battery systems could harness eggshell proteins for electricity conduction

Chicken eggshells may be the answer to developing safer, sustainable and cost-effective rechargeable battery storage systems, according to new research.

Murdoch University Associate Professor Dr. Manickam Minakshi Sundaram, from the Center for Water, Energy and Waste at Harry Butler Institute, for a doctoral thesis has successfully developed a new mechanism associated with electrode materials and electrolytes, offering an alternative to the expensive and impractical power storage technologies of the past and present.

“We’ve found that chicken eggshells can be used as electrodes—a conductor of electricity—in powering batteries. Eggshells contain a high level of calcium carbonate, and when they are baked and crushed, their chemical compositions change and they become a more efficient electrode and conductor of power,” Dr. Minakshi said.

“The current lithium-ion batteries used for renewable energy storage typically use fossil fuels.

“Repurposing a bio-waste product like eggshells could add considerable value to the renewable energy market. They also offer a potentially safer option, as the current lithium battery technologies are high-cost and potentially unsafe in the event of catastrophic failure.”

As the world continues to prioritize renewable energy sources, this breakthrough marks a significant step forward, offering hope for a greener and more sustainable future.

The study, conducted by Dr. Minakshi as part of his higher doctorate thesis with Flinders University, focused on the development of sustainable electrodes in aqueous-based energy storage technology.

“The implications of this study go beyond scientific discovery,” Dr. Minakshi said.

“Chicken eggs and related products are used in large quantities in the food processing and manufacturing sectors, households, the nutrition industry and even in the pharmaceutical industry, but their shells are typically sent as solid waste to landfill.

“However, eggshell and shell membranes contain a range of active chemical compounds that can be used. The reversibility of this new approach allows for efficient energy storage and retrieval. The study demonstrates that highly conductive aqueous lithium and sodium electrolytes with varying salt concentrations have the potential to replace existing non-rechargeable primary batteries. The discovery holds the promise of high energy capacity, long cycle life and affordability in aqueous batteries.”

By incorporating suitable additives such as biodegradable redox polymers, titanium boride/sulfide (TiB2, TiS2), or bismuth oxide (Bi2O3) compounds, the electrodes can be further modified to improve their performance.

“The potential applications of this breakthrough are immense,” Dr. Minakshi said. “We could transition from a linear economy to a circular economy, reducing, reusing and recycling waste improving both sustainable development and addressing waste management.”

The studies on sustainable electrode materials have also been extended to other biowaste including chitosan derived from crustaceans, mango seed husk, and grape marc from wineries. From these biowastes, N-doped carbon was derived, which exhibits excellent electrochemical performance.

 

 

 


 

 

 

Source –  Tech Xplore

The Power of Responsible Sourcing

The Power of Responsible Sourcing

Climate change, circular economies, ESG and sustainability have all become business priorities over the past few years, with global supply chains sitting right in the middle of these issues – both as a major contributor to the problem and as an area of focus for improvements. Businesses must, therefore, purchase materials and products from companies that can show that they have good sustainability practices, from both a labour and manufacturing point of view.

The benefits of responsible sourcing and sustainable packaging

Responsible sourcing has been shown to influence consumers buying decisions, with studies suggesting that up to 70% of consumers would pay more for sustainably-produced goods. Businesses must therefore meet the increasing demand from consumers for products that are both environmentally and socially responsible.

Yet businesses are still learning when it comes to improving their responsible sourcing process, with Richard Howells, Vice President of Solution Management for Digital Supply Chain at SAP, describing it as an “evolving landscape,” allowing businesses the opportunity to combine sustainability initiatives with efficiency efforts and customer demand.

“While the ‘Amazon Effect’ has led to heightened consumer expectations for quick delivery, there is a similar demand for eco-friendly products,” Howell says. “In fact, 90% of Gen X consumers say they’d be willing to pay more for sustainable items – compared to 34% just a couple of years ago.

“In today’s market, for businesses to prosper and expand they must discover novel approaches to meet rising demands for ESG standards, placing greater emphasis on responsible sourcing.”

Responsible sourcing within procurement

For businesses to build a responsible and resilient supply chain, leaders need to acknowledge that procurement is the first step. “The procurement team begins the sourcing process by evaluating potential goods and materials that would make up the products made and distributed in the supply chain,” says Etosha Thurman, Chief Marketing & Solutions Officer, of Intelligent Spend and Business Network at SAP.

“In their evaluation, they are considering the environmental, societal, and economic impact of sourcing the materials. For example, potential risks with energy efficiency, water and land usage, and hazardous materials.”

To ensure businesses adopt responsible sourcing, leadership needs to set out clear definitions which align with the ESG goals of the organisation. Procurement professionals must also be educated about the necessary steps to ensure the goods and services under consideration meet the criteria.

Technologies role in responsible sourcing

In today’s rapidly evolving business landscape, technology stands as a pivotal ally in driving sustainability across the source-to-pay (S2P) and procure-to-pay (P2P) processes. By seamlessly integrating innovative solutions, organisations can navigate strategic sourcing, procurement, and supplier relationships while adhering to responsible and ethical practices.

“Technology can help organisations follow sustainable practices at every stage of the S2P and P2P process,” Thurman says. “In strategic sourcing, the right solutions can help analyse current and future spending, find and source from suppliers, ensure compliance and reduce risk with sustainability in mind. SAP Ariba Sourcing is a good example of a solution that enables users to prioritise suppliers that align with ESG goals.”

During the P2P process, Thurman reminds organisations that it is important to use solutions that help guide business users to make risk-aware and sustainable purchases, ensuring contract compliance with sustainable procurement policies. “The guided buying capability in SAP Ariba Procurement solutions can help guide employees to purchase from sustainable suppliers,” she adds. “Technology can also be a valuable tool in nurturing relationships with sustainable suppliers. Taulia’s Sustainable Supplier Finance solution allows users to reward suppliers that share their ESG qualifications with early payment incentives.

What’s more, to build a sustainable and risk-resilient supply chain, businesses need to establish strong relationships with key suppliers, which must be diverse. The supply chain data then needs to be monitored and analysed in real time, and investment needs to be made in technologies that can enhance supply chain visibility and agility.

“Efficient, effective technology can help businesses acquire and manage the data and information they need to measure compliance, minimise risk and boost sustainability,” Howells says. “Businesses must examine their value chains comprehensively, from sourcing raw materials to understanding the end product’s lifecycle. By adopting technology-driven solutions like blockchain and IoT, companies can ensure that their sustainability efforts extend beyond the surface level to every aspect of their operations.”

What’s more, SAP works with its partners to provide efficient solutions to business operations, while recognising the importance of monitoring and measuring not only cost, speed, profitability and customer service, but increasingly, emissions, waste, inequality and other sustainability and risk KPIs across the supply chain. This can be accomplished by connecting every process, contextualising every decision and collaborating with partners without obstacles. However, there is no one-size-fits-all solution for supply chain complexities.

Howell explains: “Buyers on SAP Business Network can choose vendors based not only on price and availability but also on human rights records and third-party sustainability ratings. Suppliers share human rights questionnaires to their profiles on SAP Business Network, where buyers can access them. Buyers are automatically notified any time a supplier they are doing business with updates their questionnaire. This saves suppliers time and helps buyers easily prepare for due diligence processes.”

Final thoughts

Embracing responsible sourcing is paramount for businesses aiming to navigate the evolving landscape of sustainability, satisfy consumer demands and enhance their growth prospects. Through integrating technology, fostering diverse supplier relationships and monitoring supply chain data, organisations can achieve a holistic approach to ESG standards, ensuring lasting positive impacts on both their operations and the wider world.

In a rapidly changing business environment, responsible sourcing stands as a gateway to sustainable success. By aligning with ESG goals, leveraging technology-driven solutions, and nurturing supplier relationships, businesses can forge resilient supply chains that not only meet current demands but also pave the way for a more environmentally and socially conscious future.

 

 


 

 

Source  Sustainability

Honeywell & Recipharm to reduce greenhouse gas emissions

Honeywell & Recipharm to reduce greenhouse gas emissions

Honeywell and Recipharm have partnered to utilize technology to reduce greenhouse gas emissions in respiratory care and to lessen its environmental impact
Technology giant Honeywell has announced a commercial partnership with global contract development and manufacturing organisation (CDMO) Recipharm to develop pressurised metered dose inhalers (pMDIs) that use Honeywell’s near-zero global warming potential (GWP) propellant.

Globally, as many as 646 million people suffer from either chronic obstructive pulmonary disease or asthma, both of which are often treated using pMDIs. However, pMDIs have a high global warming potential due to the use of hydrofluoroalkanes.

To counter this, Honeywell Solstice® Air is an alternative technology, proven to reduce the greenhouse gas (GHG) emissions pMDIs by up to 99.9%, in comparison to current inhaler propellants.

“As the first CDMO to partner with Honeywell for the use of Solstice Air, this collaboration significantly accelerates and simplifies our customers’ pathway to develop the next generation of low greenhouse gas pMDIs,” said Chris Hirst, president of Recipharm’s Advanced Delivery Systems business unit. “Our collaboration is supported by Recipharm’s investment in manufacturing with HFO-1234ze(E) cGMP at our Holmes Chapel, United Kingdom site, and the further development of the Bespak® valve range to ensure the required product performance.”

Honeywell: Using technology to create sustainable change

The business has invested more than US$1bn in research, development and new capacity for its Solstice technology. This technology can be used to improve the sustainability credentials of applications in refrigerants, blowing agents, aerosols and solvents, to name a few.

Consequently, the Honeywell Solstice technology has helped avoid the potential release of more than 326 million metric tonnes of carbon dioxide into the atmosphere. This is approximately equal to the carbon emissions generated from 70 million gasoline-powered passenger vehicles each year.

“Honeywell is making great strides to offer patients who rely on pMDIs a lower greenhouse gas solution to meet their medical needs,” said Laura Reinhard, Vice President and General Manager of Honeywell Foam and Industrial Products. “Through our collaboration with Recipharm, the increased use of near-zero GWP propellant used in pMDIs will help reduce the environmental impact of the life-saving medical treatments patients need, without sacrificing performance.”

 

 


 

 

 

Source Sustainability

Masdar: Using technology to power a sustainable future

Masdar: Using technology to power a sustainable future
Renewable energy company Masdar has been making strides towards its sustainability goals by utilising the latest technology

As a global leader in renewable energy and green hydrogen, Masdar has pioneered commercially viable solutions in clean energy, sustainable real estate and clean technology in the UAE and around the world for over a decade.

Headquartered in Abu Dhabi, UAE, the business is currently developing large-scale renewable energy initiatives, in a bid to drive the progression of clean technologies and further grow technology in the renewable energy sector. In doing so, Masdar is focused on creating new long-term revenue streams for the UAE.

How is Masdar utilizing technology to boost sustainable energy?

Committed to advancing clean-tech innovation, Masdar utilises technology to enhance the renewable energy sector.

Masdar hosts a range of wind farms in its offshore project portfolio, including sites in London Array and the Dudgeon Offshore Wind Farm in the United Kingdom. The business has also partnered with Hywind Scotland, the world’s first floating offshore wind farm.

Additionally, Masdar deploys solar photovoltaic (PV) technology in utility-scale and off-grid solar power plants and rooftop systems, including monocrystalline silicon panels, polycrystalline silicon panels, and thin-film panels.

Depending on the solar potential, geographical location, and financial requirements of a specific solar PV project, a suitable PV system is implemented to meet the project’s needs.

Likewise, concentrated solar power (CSP) systems – which use mirrors to focus a large area of sunlight onto much smaller areas – are used to convert concentrated light into heat, to drive a heat engine connected to an electrical power generator. CSP systems have become known as a promising solar power technology for large-scale power generation.

When CSP and thermal energy storage (TES) are used together, it is capable of producing constant power for up to 24 hours a day.

Masdar’s sustainability commitments

With the aim of investing and actively supporting the development of young people, Masdar strives to help support the sustainability leaders of tomorrow through its Youth 4 Sustainability (Y4S).

His Highness Sheikh Khaled bin Mohamed bin Zayed Al Nahyan, Crown Prince of Abu Dhabi invested in the initiative, ensuring it aligned with the United Nations Sustainable Development Goals to bolster the nation’s sustainability efforts.

By 2030, Y4S aims to reach up to one million youth, creating awareness of the skills needed for future jobs in sustainability.

 

 


 

 

Source Sustainability

Use Technology to Create a More Sustainable Future

Use Technology to Create a More Sustainable Future

Renewable energy

There are four major sources of renewable energy in the UK – wind, solar, hydroelectric and bioenergy. The technology used in these solutions includes photovoltaics basics, which are commonly found in solar panels.

Wind turbines convert kinetic energy into rotational energy. Technologies being used to enhance to capabilities of wind turbines include smart blades, 3D printing and improved blade design.

Materials

Packaging has been at the forefront of environmental issues for a number of years. Businesses have switched to biodegradable materials instead of plastics in the hope of reducing the landfill problem and have sought to limit the amount of packaging used on products.

But new and emerging technologies have opened the door to even more creative solutions. One example is using CAD design software to create sustainable products from materials that are recycled and from renewable sources.

Using this type of technology to design and manufacture products such as packaging and clothing also results in less waste due to the accuracy of computer-generated cuts.

IoT technology

The Internet of Things is being increasingly adopted by a wide range of industries, making their processes more efficient, connected and sustainable.

As well as helping to track ESG goals, IoT technology allows data sharing, and improved productivity and can monitor logistics in real-time. Creating a more efficient factory, office or site can also help reduce energy consumption and waste and support the optimisation of the workspace.

AI

Artificial Intelligence has the potential to transform industries and, when used creatively, could harness a variety of sustainable solutions. For example, the agricultural industry has seen huge developments which have paved the way for automated tractors and other machinery as well as robotics for crop optimisation.

AI has also enabled farmers to create optimal conditions for improved nutrients and harvesting which the natural environment might struggle to achieve.

Electric vehicles

Powered by electricity rather than fossil fuels, electric cars produce less greenhouse gases than petrol or diesel vehicles. However, to optimise sustainability, the manufacturing and running of electric vehicles should eventually be facilitated via renewable energy.

As the government invests in introducing new charging points and electric vehicles become cheaper and more efficient, an increasing number of businesses and individuals are likely to switch from conventional cars.

As newer and more advanced technologies continue to emerge, there’s no doubt that sustainable solutions will become more creative, adaptable and profitable.

 

 


 

 

Source  Happy Eco News