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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

Solar-Powered Honey: How Agrivoltaics Can Help Restore Pollinators

Solar-Powered Honey: How Agrivoltaics Can Help Restore Pollinators

The plight of pollinators.

Climate change and human development have greatly impacted large varieties of plants and animals. From big to small, no species has been entirely safe from the consequences of our actions.

Pollinators, in particular, have seen a large decline over the past twenty years. As habitat loss has accelerated, climate change has affected historical ranges, and pesticides have become more common.

While most pollinators are quite small, they greatly impact all of us as they help disperse pollen, allowing plants to reproduce.

As land use has contributed to habitat loss for these pollinators, there has been considerable opposition to introducing solar panels and arrays to areas with considerable numbers of these small creatures.

This brings agriculture proponents into an uneasy alliance with ecological activists, as agriculture proponents also don’t want their profits to decline as land is used for a different purpose.

However, a solution to both of these issues can be found in agrivoltaics, which is a promising alternative to single-use solar arrays.

Minnesota is showing an alternative.

Pollinators living alongside solar systems have found significant promise in Minnesota, USA. A 2016 law set up the Habitat Friendly Solar program, which incentives property developers and solar companies to build arrays with benefits for songbirds and pollinators.

This is in stark contrast to solar development in the 2000s. As a result of the high price at the time of solar panels, solar companies sought to cut costs anywhere they could. As a result, in their solar installations, they put in gravel instead of flowers or field grass due to the price being lower.

However, due to new research, solar developers have found that vegetation creates a cooling microclimate that benefits energy efficiency. They have since been putting in clover and other field grasses under and alongside their panels, but even now, they are putting in higher-rising flowers.

Connexus is a solar cooperative that has been operating in Minnesota, and have said that “It started with our headquarters solar array — initially designed to utilize class 5 gravel under and around the panels, we worked with Connexus member Prairie Restorations to design a low-growing, flowering meadow under and around the panels.”

These changes also have other ecological benefits, as some environmental advocates are promoting the planting of the native northern tallgrass prairie, which has declined to represent 1% of the land in the US since European settlement.

This could change the solar industry as a whole.

These changes to how solar arrays are installed represent a significant alliance between solar developers, natural conservation groups, and agriculture advocates.

These changes are a branch of agrivoltaics that advocates combining solar arrays and agriculture. These developments show that agriculture, pollinator habitat restoration, and solar energy are not mutually exclusive.

It is possible to have the best of these worlds combined, and it is, in fact, beneficial to all parties involved. The solar panels provide shade for specific species of plants and animals that are better suited to being out of the sun for part of the time, and the plants enhance solar panel efficiency.

In the transition to solar energy, it’s incredibly important that the development isn’t harmful to existing food production and ecology goals.

 

 


 

 

Source  Happy Eco News

Carbon Dioxide Livestock Feed

Carbon Dioxide Livestock Feed

Researchers may have discovered a protein substitute for livestock feed that is significantly less environmentally damaging than corn and soybean production. The researchers have explored the concept of synthetic nutrition, which means essential nutrients can be produced artificially, efficiently and with a small footprint. They have turned greenhouse gas emissions into an ingredient that could be used for carbon dioxide livestock feed.

The researchers captured carbon dioxide and combined it with renewable hydrogen to make methanol powered by wind and solar energy. With the material created, they applied a series of enzymes into an eight-step process which, after several combinations, created an amino acid called L-alanine. This amino acid makes protein and is an energy source for muscles and the central nervous system. It also strengthens the immune system and helps the body use sugars.

This isn’t the first time researchers have been able to transform carbon dioxide into food products. Researchers have found a way to convert carbon dioxide into starch that typically comes from corn which requires a lot of land, water and fertilizer to grow. The process they used was 8.5 times more efficient than photosynthesis, which the corn plant uses to convert CO2 and sunlight into carbs. Moreover, their process took only four hours compared to the 120 days required for corn to grow and generate starch.

These new processes of using carbon dioxide to minimize the use of corn and starch will bypass the problem of repurposing a climate-damaging waste stream. Although there are other ways to synthesize L-alanine protein, they require emission-intensive processes that require petroleum products. Using existing carbon dioxide will reduce the need for emissions and harmful products. It also decouples production from the land because less land will be needed to produce the same amount of L-alanine. It will also use significantly less energy as the energy required will be taken from renewable sources.

The demand for animal protein continues, so the need for carbon dioxide livestock feed will also rise. Researchers are developing solutions that utilize harmful and excess emissions that can be transformed into food for these animals. These new solutions will allow us to move away from excess land and water use and monocultures and help us create more biologically diverse environments.

 

 


 

 

Source Happy Eco News

California’s Compressed Air Batteries

California’s Compressed Air Batteries

Engineers and scientists have been developing ways to store unused energy from renewable sources as the world moves from fossil fuels to renewable energy. We’ve seen different types of batteries making their mark, including lithium-ion batteries, pumped hydro, tanks full of molten salt or silicon and more. Now, California has found a way to move past lithium into an even more sustainable battery – compressed air batteries. Compressed air batteries do not require lithium which is expensive and environmentally damaging to dig up. They store energy like solar and wind and are a 24/7 source of clean power for homes and businesses.

In 2021, Hydrostor opened two new compressed air energy storage facilities in California, which provide almost twice the storage capacity. Their facilities use surplus electricity from the grid to run an air compressor. The compressed air is stored in a big underground tank until the energy is needed. When needed, the energy will be released through a turbine to generate electricity that is fed back into the grid. Reheating the air as it is fed into the turbine increases the system’s efficiency.

Hydrosor’s system is optimized for system sizes of over 100 megawatts with 5 hours up to multi-day storage duration. This is longer than the four-hour standard for lithium-ion. Hydrostor projects that it can produce 60% to 65% of the electricity it consumes, which is a larger energy loss than lithium-ion batteries or similar types of storage. Hydrostor says its systems will store up to 10 GWh of energy, providing between eight and 12 hours of energy over a full discharge at close to its maximum rate.

Earlier this year, California’s Central Coast Community Energy (3CE) approved a 25-year contract with Hydrostor to construct a compressed-air energy storage facility, making it the world’s largest compressed-air energy storage project. Two hundred megawatts of energy would help 3CE serve 447 000 customers between Santa Cruz and Santa Barbara with 100% clean and renewable energy by 2030. This project will help California transition off fossil fuels without causing blackouts.

Compared to lithium-ion batteries that degrade and must be replaced every few years, compressed air batteries can store energy for decades without any loss of efficiency. Compressed air batteries are significantly more expensive than lithium-ion, but the battery’s longevity will outweigh the cost.

Hydrosor has figured out a way to capture and reuse the heat generated when the air is compressed, which means no gas needs to be burned. The company also found a way to dig caverns out of rock rather than salt. These projects have been used elsewhere in places with underground salt domes, but they depend partly on natural gas to heat compressed air as it leaves caverns to make it more efficient. Digging caverns out of rock opens up the possibility of compressed air battery storage worldwide.

3CE’s partnership with Hydrosor will allow for California’s renewable energy to be clean and sustainable. These compressed-air batteries will protect the planet and the people of California and will be an example for other states to implement.

 

 


 

 

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 

 

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

Apple aims for 100% recycled cobalt in batteries by 2025

Apple aims for 100% recycled cobalt in batteries by 2025

Apple has unveiled plans to increase the use of recycled materials in its products, with a new target of using 100% recycled cobalt in all Apple-designed batteries by 2025.

The tech giant will also aim to use entirely recycled rare earth elements in magnets for its devices and 100% recycled tin soldering and gold plating in all Apple-designed printed circuit boards by the same year.

“Every day, Apple is innovating to make technology that enriches people’s lives, while protecting the planet we all share,” said Tim Cook, Apple’s CEO. “From the recycled materials in our products, to the clean energy that powers our operations, our environmental work is integral to everything we make and to who we are. So we’ll keep pressing forward in the belief that great technology should be great for our users, and for the environment.”

 

Reducing Apple’s carbon footprint

The announcement is part of Apple’s broader efforts to reduce its carbon footprint and become more environmentally friendly.

In 2022, the company significantly expanded its use of recycled metals, with over two-thirds of all aluminium, nearly three-quarters of all rare earth materials, and more than 95% of all tungsten in Apple products sourced from 100% recycled material.

Apple’s rapid progress in this area brings the company closer to its ultimate goal of making all products with only recycled and renewable materials and advances its aim to achieve carbon neutrality for every product by 2030.

“Our ambition to one day use 100% recycled and renewable materials in our products works hand in hand with Apple 2030: our goal to achieve carbon neutral products by 2030,” said Lisa Jackson, Apple’s vice president of Environment, Policy, and Social Initiatives. “We’re working toward both goals with urgency and advancing innovation across our entire industry in the process.”

If Apple is able to achieve this goal, it will show major steps towards achieving a more sustainable future for the company.

 

 


 

 

Source Sustainability

The LOOP Dubai, a 93km indoor green hub

The LOOP Dubai, a 93km indoor green hub

Dubai, which has historically been largely focused on automobile transportation, is transforming into a human-powered transport city. The LOOP is a 93 km (nearly 58-mile) sustainable pathway for walking and cycling. A comfortable and climate-controlled area that promotes walking and cycling to promote healthy living among the inhabitants of Dubai.

Currently, most of Dubai relies on cars and taxis to reach necessary locales. The LOOP aims to replace this with walking, running, and cycling. The footpath system is intended to reduce the number of vehicles on streets by 80% by 2040, giving rise to a traffic system that considers people first and that provides citizens with safer and healthier modes of transportation. This goes along with Dubai’s goal of improved social infrastructure and facilities for residents.

The indoor green space will integrate services with wellness and leisure facilities to be shared by neighbour hoods and allow human-powered access to all districts of the city. Pocket parks and gardening allotments will help promote social engagement bringing people together to forge a stronger sense of community.

It will be indoors in one of the hottest places on Earth, requiring climate control. How will it be considered sustainable, you ask? The Project will generate electricity through kinetic energy. The human footsteps will be transformed into renewable energy via kinetic paving. The specialty floors move to activate electromagnetic induction generators.

The LOOP in Dubai is an ambitious project that might be a glimpse of the future for humanity. While it would be preferential to have open-air green spaces, renewable-powered enclosed green spaces in hotter climates may be the only way to allow humans to get out of their cars.

 

 


 

 

Source Happy Eco News

More Conscious Travelers, Climate Concerns Impacting Accommodation Design

More Conscious Travelers, Climate Concerns Impacting Accommodation Design

In a race to avert the climate crisis, the tourism industry is evolving. More travelers decide to keep their feet on the ground; the industry responded with flight-free services and itineraries. Concerned with how the climate impacts biodiversity and wilderness areas, many tour operators began actively supporting carbon reduction and rewilding programs. It turns out that where travelers finally lay their heads at the end of a busy day affects the climate, as well.

According to research conducted by the Sustainable Hospitality Alliance, “The hotel industry needs to reduce its carbon emissions by 66 percent per room by 2030 and 90 percent per room by 2050 to ensure that the growth forecast for the industry does not lead to a corresponding increase in carbon emissions.”

Responding to regulatory changes, consumer preferences and proactive climate commitments, hotel chains and independently owned accommodations are making changes — though at varying speeds and to differing degrees. This includes pursuing LEED certification, shifting to renewable energy, and reducing waste and water consumption, among other actions.

“When I designed our first villa, Villa Punto de Vista, that was back in 2007 — just after the release of Al Gore’s An Inconvenient Truth — so I was already in tune with the concept of a warming planet and designed the building with an eco-conscious mindset,” said David Konwiser, co-founder and architect of the Costa Rica property. “However, ten years later and after seeing the devastating storms and worsening drought ravage our planet over that next decade, I designed our second villa (Villa La Isla) with even more emphasis on carbon neutrality.”

From natural fiber ceilings produced by Indigenous Peoples living in Costa Rica’s mountains to the microfiber bedding made from recycled plastic bags, nearly every square inch of the property reflects Konwiser’s climate concerns. “The villas’ materials and finishes had to be of premium quality, ecologically sourced, and surpass the challenging esthetic and safety expectations of the world’s most discerning travelers,” he said.

Villa Punto de Vista certainly isn’t the only property built from the ground up with the climate top of mind. In fact, there’s been a wave of them lately: Svart — a luxury property in Norway expected to open in 2024 — is said to be the first off-grid, energy-positive resort. The recently opened Hotel Marcel in New Haven, Connecticut, is completely powered by solar electricity.

Similarly, Populus — a 265-room hotel currently under construction in Denver, Colorado — is being billed as the first carbon-positive hotel in the US. It features window “lids” that provide shade while improving energy performance and a roof terrace planted with regional vegetation intended to attract local wildlife and insects.

Critics of “sustainable” buildings rightly point out that an eco-friendly, resource-efficient building is one thing; but construction itself has a massive carbon footprint. As noted in a 2022 Bloomberg article, the Marcel may be designated LEED Platinum; but on its way to being the US’s first net-zero-emissions hotel, its calculations failed to include embodied carbon — which includes all the greenhouse gases emitted during renovation, construction, demolition and disposal of a building.

According to Transforming Existing Hotels to Net-Zero Carbon, a guide developed by four companies including IHG Hotels & Resorts, embodied carbon makes up between 30 and 70 percent of a typical building’s total lifecycle emissions. Further, approximately 80 percent of the buildings that will be in use in 2050 are already in existence today.

“Adapting and retrofitting existing buildings to lower GHG emissions is critical and needs to be embraced as part of the hotel sector’s ‘Routemap to Zero Carbon,’ particularly as expectations of hotel investors, owners, staff, and guests shift towards greener, more sustainable models of investment, business operation, and living,” noted Gillian Breen, director of Gleeds at the time of Transforming Existing Hotels’ publication.

The natural solution for most properties, then, is to renovate existing buildings with an eye on sustainability. For example, Hotel Belmar — located in Costa Rica’s Monteverde cloud forest — was built in 1985 with environmental stewardship, cultural appreciation and economic benefits for the local community in mind. Upgrades nearly 30 years later further reduced its environmental footprint.

“The 2012 renovation of Hotel Belmar kept our traditional wooden architecture; but we adapted most rooms, some bathrooms and hallways to have floor-to-ceiling windows, skylights and big sliding glass doors,” said Pedro Belmar, CEO and general manager of the hotel. This increased lighting efficiency and ventilation, and decreased energy consumption. Property owners also invested in solar panels, upgraded water-treatment systems and installed rain-collector systems.

Regardless of whether properties are renovated or built more sustainably (while accounting for embodied carbon), time is of the essence when it comes to making climate-conscious accommodations an industry standard.

“It is widely acknowledged that this decade needs to be one of climate action,” wrote Simon Gill, hotels and leisure business leader for UKIMEA at Arup, in his forward to Transforming Existing Hotels. “Without taking bold steps now, we will not be able to achieve the net-zero carbon target set for 2050 and avert climate catastrophe.”

 

 


 

 

Source  Sustainable Life Media

Centrica plans battery storage, solar and hydrogen at former gas power plant

Centrica plans battery storage, solar and hydrogen at former gas power plant

British Gas owner Centrica has today (24 January) confirmed that it has acquired the four-acre site for the former Knapton Generating Station, near Malton in North Yorkshire, from Third Energy.

Gas-fired power generation ceased at Knapton in late 2019, as Third Energy had fired the plant using fracked gas before the UK Government imposed a moratorium on fracking. Third Energy was initially planning to create a low-carbon ‘energy park’ at the site but Centrica, as new owner, is now taking up that mantle.

Centrica has proposed the creation of a 28MW battery energy storage facility on the site. The facility will be developed in stages and the first part will be a 56MWh grid-connected battery. Centrica claims that this battery would be able to power 14,000 homes for two hours.

Centrica has also confirmed that it will explore the potential for installing solar panels in the surrounding area. A co-located battery with renewables like solar can help overcome the challenge of intermittent generation, storing generated electricity when conditions are favorable and demand is low, then providing the electricity to the grid during times of low generation and high demand.

Additionally, Centrica will investigate whether Knapton would be a suitable location for off-grid hydrogen production.

 

SSE Renewables

In related news, SSE Renewables has opened a public consultation on plans to co-locate battery energy storage and solar panels with its existing Richfield Wind Farm at Bridgetown in County Wexford, Ireland.

Richfield (pictured) is an 18-turbine wind farm that has been operational since 2006. It has a total generation capacity of 27MW.

 

 

SSE Renewables is seeking to develop a 21MWp solar farm on lands near the wind farm. It also wants to develop a co-located 10MW battery energy storage system which, like Centrica’s, would be able to power thousands of local homes for two hours.

The proposed solar farm would be located in the townlands of Hooks and Yoletown while the proposed battery energy storage system would be co-located adjacent to the existing substation at Richfield Wind Farm. SSE Renewables intends to submit a planning application to the County Council this spring, following a full public consultation.

SSE Renewables will need to, also, apply for permission for grid connection. At present, Ireland does not permit grid connections for ‘hybrid’ technologies, where projects are co-located.

“While some regulatory hurdles still need to be overcome to allow for hybrid grid connections, we’re ready at SSE Renewables to work closely with key government and regulatory stakeholders so that we can remove any remaining barriers and support the delivery of important solar and battery technology projects co-located at wind farm sites,” said the business’s onshore renewables development and construction director Heather Donald.

Ireland is notably aiming to generate 80% of its electricity from renewable sources by 2030, Wind is currently the leading renewable generation method for Ireland.

 

 


 

 

Source edie