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Solar Farms Help Bees: Solar Installations for the Bees

Solar Farms Help Bees: Solar Installations for the Bees

Solar farms help bees: Solar farms emerging as sanctuaries for declining wild and honey bee populations.

In an unexpected turn, solar farms help bees and are emerging as potential sanctuaries for declining bee populations, providing a secondary purpose beyond clean energy generation. A recent study reveals that strategically planting native flowers and grasses around solar installations significantly enhances the population and diversity of crucial pollinators like bees, offering a promising avenue for both clean energy expansion and environmental conservation.

Research conducted by scientists from the Department of Energy’s Argonne National Lab, in collaboration with the National Renewable Energy Lab, focused on assessing the impacts on insects from two large solar installations situated on retired farmland in Minnesota. Enel Green Power North America, the operators of these solar sites, undertook the initiative to plant wildflower mixes alongside the panel arrays during construction in 2018. The researchers then conducted comprehensive year-round insect surveys at these facilities from 2018 to 2022.

The findings from the study are nothing short of remarkable; solar farms help bees. Over the five-year observation period, both native bee and monarch butterfly populations increased more than twenty-fold. The areas surrounding the solar panels transformed into thriving, prairie-like habitats abundant with essential flowering nourishment. The overall insect populations tripled, surpassing initial expectations. Additionally, these flourishing hubs of pollinators are extending benefits to vegetation in nearby agricultural areas, as evidenced by satellite imaging.

Dr. Lee Walston, an ecologist at Argonne and the lead author of the study, expressed enthusiasm about the scale of positive influence managed solar landscapes can have on insect biodiversity and abundance. The strategic integration of natural ecosystem elements adjacent to renewable projects, as demonstrated in this study, could potentially offer a win-win scenario, supporting the expansion of clean energy infrastructure while addressing the decline in insect populations.

The research underscores the concept of “solar sharing” – a departure from the traditional approach of isolating solar infrastructure from its surroundings. By allowing vegetation to thrive around solar facilities, solar farms help bees, and a new haven is created to support fragile bee colonies. The collapse of global bee populations poses a severe threat to agriculture, as over $500 billion in crop production relies on natural pollination annually.

But it doesn’t have to be only about the bees. Agrovoltaics refers to co-locating agriculture and solar photovoltaic systems on the same land. The solar panels are elevated and spaced out to allow crops to be grown underneath while allowing sunlight to reach the crops. The partial shade created by the solar panels can benefit certain crops by providing shelter, reducing evapotranspiration, and lessening weed pressure. The crops benefit the solar infrastructure by reducing heat under and around the panels.

Some bee-friendly crops and flowers that could thrive under the partial shade of solar panels include potatoes, cabbage, kale, carrots, Brussels sprouts, celery, spinach, onions, garlic, lettuce, arugula, strawberries, asparagus, leeks, swiss chard, parsley, oregano, green beans, sunflowers, cosmos flowers, marigolds, clovers, borage, and many varieties of wildflowers. These provide nutrient-rich pollen and nectar that support diverse bee populations.

These findings open the door to a new perspective on the relationship between solar power and ecological conservation. Instead of erecting barriers, solar infrastructure can be designed to coexist harmoniously with the environment. The success observed in this study suggests that solar farms help bees and can play a crucial role in aiding declining bee populations, offering hope for preserving essential pollinators.

As the world grapples with the urgent need for sustainable practices amid the climate crisis, the authors hope these groundbreaking findings will inspire further research. Exploring habitat-friendly solar blueprints to integrate nature into the urgent climate transition could be a transformative step forward. Dr. Walston emphasized the potential symbiosis between solar power and ecological conservation, envisioning bees flocking to blossoms beneath solar panels, which may reveal surprising pathways to advance sustainable energy and agriculture concurrently.

In conclusion, solar farms help bees. Once seen solely as agents of clean energy, they are now emerging as potential allies in the crucial mission to preserve and protect bee populations. This unexpected synergy between renewable energy infrastructure and environmental conservation opens doors to innovative solutions that could redefine the future of sustainable energy and agriculture.

 

 


 

 

Source   Happy Eco News

Major milestone for Greek energy as renewables power 100% of electricity demand

Major milestone for Greek energy as renewables power 100% of electricity demand

Renewable energy met all of Greece’s electricity needs for the first time ever last week, the country’s independent power transmission operator IPTO announced.

For at least five hours on Friday, renewables accounted for 100 per cent of Greece’s power generation, reaching a record high of 3,106 megawatt hours.

Solar, wind and hydro represented 46 per cent of the nation’s power mix in the eight months to August this year, up from 42 per cent in the same period in 2021, according to Greece-based environmental think-tank The Green Tank.

Green Tank called it, a “record of optimism for the country’s transition to clean energy, weaning off fossil fuels and ensuring our energy sufficiency.”

“European countries like Greece are rapidly accelerating away from fossil fuels and towards cheap renewable electricity. The milestone reached by Greece proves that a renewables-dominated electricity grid is within sight,” Elisabeth Cremona, an analyst at energy think tank Ember, told Euronews Green.

“This also clearly demonstrates that the electricity system can be powered by renewables without compromising reliability. But there remains more to do to ensure that renewables overtake fossil fuels in Greece’s power sector across the whole year.”

 

What’s the big picture for Greece’s energy transition?

It’s a significant milestone in the history of the country’s electricity system, and follows the bright news that renewables fully met the rise in global electricity demand in the first half of 2022.But Greece’s transition to clean energy hasn’t been entirely straightforward.

 

 

Solar panels soak up the sun’s rays at a new photovoltaic park near Kozani, Greece, pictured in August this year.

 

Like other European countries, Greece has cut its reliance on Russian gas following the war in Ukraine by increasing liquefied natural gas (LNG) imports to meet its needs. It has also boosted coal mining, pushing back its decarbonisation plan.

Using IPTO data, The Green Tank finds that renewables – excluding large hydro sources – surpassed all other energy sources, leaving fossil gas in second place as it decreased slightly for the first time since 2018.

Greece aims to more than double its green energy capacity to account for at least 70 per cent of its energy mix by 2030. To help hit that target, the government is seeking to attract around €30 billion in European funds and private investments to upgrade its electricity grid.

It plans to have 25 gigawatt of installed renewable energy capacity from about 10 gigawatt now but analysts say Athens might reach that target sooner.

IPTO has been investing in expanding the country’s power grid to boost power capacity and facilitate the penetration of solar, wind and hydro energy.

 


 

Source  euronews.green

 

Sri Lanka’s first ever agrivoltaic solar power plant opened

Sri Lanka’s first ever agrivoltaic solar power plant opened

Solar Universe, the 10MW solar power plant in Vavunathivu, Batticaloa was declared open today.

Energy Minister Kanchana Wijesekera announced the opening of the 10 MW Ground Mount Solar Power Plant.

Minister Wijesekera said that invested and developed by WindForce PLC, Vidullanka PLC, and HiEnergy Services (Pvt) Limited, it is the 1st Agrivoltaic Power Plant in Sri Lanka.

The Minister further said that the new 10MW solar power plant in Vavunathivu will add 20 GWh annually to the National Grid. (NewsWire).

 

 


 

Source NEWSWIRE

 

Australian outback cattle station to house world’s largest solar farm, powering Singapore

Australian outback cattle station to house world’s largest solar farm, powering Singapore

A cattle station halfway between Alice Springs and Darwin is set to house the world’s largest solar farm, with energy generated from the project to ultimately power Singapore.

Newcastle Waters, where casino mogul James Packer worked as a jackaroo for a year when his father, Kerry, owned the 10,000 sq km property, has been earmarked for the $20bn solar farm, according to the company responsible for the project, Sun Cable.

The 10-gigawatt solar farm, which will be visible from space if built, was granted major project status from the Morrison government in July and has attracted billionaire investors including Andrew Forrest and Mike Cannon-Brookes.

Sun Cable’s chief executive, David Griffin, told Guardian Australia the site would take up about 12,000 hectares, and that a referral for the project has been submitted to the Northern Territory’s Environmental Protection Authority – the first stage of a lengthy approvals process that is expected to allow construction to begin in late 2023, energy production by 2026 and export by 2027.

Speaking about the reasons for proposing the Newcastle Waters site, Griffin said its location was “a meeting point of a few key criteria”.

“It’s on the Adelaide to Darwin rail corridor, which is brilliant for our logistics given the enormous amount of material we’ll have to transport to the site,” he said. It was also within 30km of the Stuart highway, the main highway running through the sparsely populated Northern Territory.

“It’s a bit of a balancing act too, because it’s far south enough to get away from the main patch affected by the wet season, so it’s a steady solar resource throughout the year,” he said. “There’s plenty of sun and not many clouds.”

Griffin also said the site was not so far south that it made the costs of transmitting the electricity to Darwin too high, and that the existing land was “really ideal for construction of a solar farm as it’s extremely flat”.

Sun Cable has entered into an agreement with the current owners of Newcastle Waters, Consolidated Pastoral Company, to use the land. However, Griffin said he could not reveal the financial details of the deal.

Overhead transmission lines will send the electricity generated by Sun Cable to Darwin and feed into the state’s power grid, but Griffin said two-thirds of the power would be exported to Singapore by high-voltage direct current undersea cables.

There will be at least two cables, each with a diameter slightly smaller than a soccer ball, with Sun Cable able to provide about a fifth of Singapore’s electricity needs as the country looks to move away from its increasingly expensive gas-fired power system.

 

 

Griffin has also said the solar farm could supply power to remote communities in the Northern Territory that currently rely on expensive diesel generators for electricity.

Sun Cable expects the project will generate 1,500 direct jobs and 10,000 indirect jobs during construction, and about 350 permanent jobs once in operation.

Griffin said Sun Cable was working on a training and employment opportunities plan so part of the workforce could be sourced from nearby Indigenous communities, and that supplies would be produced by local businesses.

Exporting solar energy has been flagged as a way Australia can expand its energy production while significantly reducing global emissions. Australia is responsible for about 1.4% of greenhouse gas emissions, which increases by 5% if fossil fuel exports are counted.

 


 

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Source: The Guardian

Abu Dhabi confirms plans for record-low cost solar farm

Abu Dhabi confirms plans for record-low cost solar farm

Abu Dhabi Power Corporation (ADPower) has confirmed plans for a record-breaking new solar farm, confirming that its latest project is set to be both the world’s largest solar development and will deliver power at a record low cost.

ADPower’s subsidiary, Emirates Water and Electricity Company (EWEC), yesterday provided an update on the bids from five consortia looking to develop the 2GW Solar Photovoltaic (PV) Independent Power Producer (IPP) Al Dhafra Solar PV project.

The company said the first-ranked bidder pledged to deliver the world’s most cost-competitive tariff for solar PV energy, set at AED 4.97fils/kWh (1.35USDcents/kWh) on a Levelized Electricity Cost (LEC) basis. The bid is approximately 44 per cent lower than the tariff set three years ago on the Noor Abu Dhabi project – Abu Dhabi’s first large-scale solar PV project, which set its own low cost record at the time.

The new Al Dhafra Solar PV project is expected to boast enough capacity to power approximately 160,000 households across the UAE. It will be almost double the size of the approximately 1.2GW Noor Abu Dhabi solar plant, which has been amongst the largest operational solar PV plants in the world since it started commercial operations in April 2019.

“Abu Dhabi has illustrated a remarkable step-change in the way the Emirate generates power through an enhanced focus on sustainability and renewable technologies,” said Jasim Husain Thabet, chief executive and managing director at ADPower. “The water and electricity sector intends to play a critical role in meeting the target of having 50 per cent of Abu Dhabi’s energy needs served from renewable and clean energy sources by 2030, as well as the reduction of the generation system’s average carbon intensity by more than 70 per cent, compared to 2015.”

Othman Al Ali, chief executive at EWEC, said the new project further underlined the cost competitiveness of renewable energy technologies.

“The cost-competitiveness of the bids received is truly remarkable – positioning Abu Dhabi as one of the world’s most attractive markets for solar energy development and reinforcing the economic benefits now achievable through renewable technologies,” he said. “Securing such competitive tariffs on our energy projects is fundamental to support economic growth across all sectors in the UAE. We look forward to signing the Power Purchase Agreement and to delivering the project in Q2 2022.”

The news came on the same day as influential analyst firm BloombergNEF published its latest report on global renewable energy costs, confirming solar and onshore wind costs continued to fall last year, meaning renewables are now the lowest cost means of providing new generation capacity in regions that are home to over two thirds of the world’s population.

 


 

James S Murray
Editor-in-chief of BusinessGreen