TOKYO — Panasonic Corp. is banking on the solar-panel business that it gained by acquiring domestic rival Sanyo, aiming for top market share of at least 35 percent in Japan by 2012.
New solar generation products, being offered in Japan starting next month, combine Sanyo Electric Co.'s solar technology with Panasonic's sales networks in appliances and housing, said Panasonic Executive Vice President Toshihiro Sakamoto.
Panasonic will be able to provide overall energy-saving systems for homes that will include rechargeable batteries, heating and air conditioning, security systems and Net-linking gadgets besides solar panels, which will all be hooked up to each other, he said.
Homes will be able to save on utility costs by selling surplus power from solar power generation systems, and using water heaters at night when utility rates are cheaper, he said.
"You will be living with virtually zero carbon-dioxide emissions through creating, saving, storing and managing energy," Sakamoto said in Tokyo.
Panasonic took over Sanyo in December and gained its solar-panel business as well as other businesses such as home appliances and batteries.
Although overlap in consumer electronics in the two companies is being eliminated, Panasonic has much to gain from Sanyo's technological prowess in solar panels and lithium-ion batteries, which are expected to be in stronger demand as the popularity of green vehicles grows.
The Osaka-based maker of Viera plasma panel TVs, has made being environmentally-friendly a major theme in its growth strategy, hoping to become "the No. 1 green innovation company in the electronics industry" by 2018.
Source - The Associated Press
Monday, 31 May 2010
SunEdison venture could lead to $1.5 billion in solar energy projects
SunEdison, a Beltsville firm that develops solar energy plants around the world, is teaming with one of the industry's largest private-equity companies in a joint venture that could generate up to $1.5 billion in new projects.
The deal with First Reserve comes as the price of manufacturing photovoltaic cells has dropped sharply in the past 18 months, making new projects much more affordable. At the same time, a growing number of governments around the world are requiring utilities to generate more power from renewable sources -- helping to kick up demand for solar.
Rhone Resch, president and chief executive of the Solar Energy Industries Association, said the deal could be a harbinger of what's to come in the industry.
"The biggest challenge we have faced in recent years is project financing," Resch said. "This starts to free up capital and allow the industry to begin to scale up."
With 350 projects built or underway, SunEdison is already one of the world's largest developers of solar energy projects. The company has a healthy backlog of plants going through the permitting process and waiting for funding.
SunEdison specializes in developing projects in areas near existing portions of the electrical grid in order to avoid large transmission costs. Its plants range from big, utility-scale operations to smaller rooftop systems feeding power to everything from Kohl's retail stores to Montgomery County school buildings. Any excess is typically sold back to utilities.
SunEdison employs about 100 people at its Beltsville offices. Last November, the company was bought by MEMC, a St. Peters, Mo.,-based manufacturer that sells silicon wafers to the semiconductor and solar industries.
"Our model has not changed," said SunEdison President Carlos Domenech. The joint venture "serves as an accelerator."
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SunEdison and First Reserve have agreed to put $167 million into their new venture, which they say should be enough to attract additional debt financing to fund as much as $825 million in new projects. First Reserve may raise an additional $150 million of equity, which can be leveraged to bring the total amount of projects funded to $1.5 billion, the companies said.
"We're looking for a way to invest in solar projects and a way to do it on an economical scale," said Mark Florian, managing director of First Reserve Energy Infrastructure.
First Reserve has $20 billion under management and invests exclusively in energy projects. It has offices in Houston, London and Greenwich, Conn.
Demand for solar power is projected to grow. At least 24 states have adopted rules requiring utilities to generate power from renewable sources, and federal climate legislation contemplates a national standard. Maryland and D.C. have adopted portfolio standards, as they are known, and Virginia has established nonbinding goals, according to an Energy Department summary.
In addition, the federal government has adopted tax credits, grants and loan guarantee programs to create incentives for new solar projects.
The cost of manufacturing solar cells has fallen 40 percent in less than two years, which many attribute in part to a decision by several countries to curb incentives. Spain, in particular, moved to cap the size of its market, shrinking the opportunities there by roughly 75 percent, Resch said. Many manufacturers that ramped up production in anticipation of new orders suddenly found themselves with a glut of supply.
Source - Washington Post
The deal with First Reserve comes as the price of manufacturing photovoltaic cells has dropped sharply in the past 18 months, making new projects much more affordable. At the same time, a growing number of governments around the world are requiring utilities to generate more power from renewable sources -- helping to kick up demand for solar.
Rhone Resch, president and chief executive of the Solar Energy Industries Association, said the deal could be a harbinger of what's to come in the industry.
"The biggest challenge we have faced in recent years is project financing," Resch said. "This starts to free up capital and allow the industry to begin to scale up."
With 350 projects built or underway, SunEdison is already one of the world's largest developers of solar energy projects. The company has a healthy backlog of plants going through the permitting process and waiting for funding.
SunEdison specializes in developing projects in areas near existing portions of the electrical grid in order to avoid large transmission costs. Its plants range from big, utility-scale operations to smaller rooftop systems feeding power to everything from Kohl's retail stores to Montgomery County school buildings. Any excess is typically sold back to utilities.
SunEdison employs about 100 people at its Beltsville offices. Last November, the company was bought by MEMC, a St. Peters, Mo.,-based manufacturer that sells silicon wafers to the semiconductor and solar industries.
"Our model has not changed," said SunEdison President Carlos Domenech. The joint venture "serves as an accelerator."
ad_icon
SunEdison and First Reserve have agreed to put $167 million into their new venture, which they say should be enough to attract additional debt financing to fund as much as $825 million in new projects. First Reserve may raise an additional $150 million of equity, which can be leveraged to bring the total amount of projects funded to $1.5 billion, the companies said.
"We're looking for a way to invest in solar projects and a way to do it on an economical scale," said Mark Florian, managing director of First Reserve Energy Infrastructure.
First Reserve has $20 billion under management and invests exclusively in energy projects. It has offices in Houston, London and Greenwich, Conn.
Demand for solar power is projected to grow. At least 24 states have adopted rules requiring utilities to generate power from renewable sources, and federal climate legislation contemplates a national standard. Maryland and D.C. have adopted portfolio standards, as they are known, and Virginia has established nonbinding goals, according to an Energy Department summary.
In addition, the federal government has adopted tax credits, grants and loan guarantee programs to create incentives for new solar projects.
The cost of manufacturing solar cells has fallen 40 percent in less than two years, which many attribute in part to a decision by several countries to curb incentives. Spain, in particular, moved to cap the size of its market, shrinking the opportunities there by roughly 75 percent, Resch said. Many manufacturers that ramped up production in anticipation of new orders suddenly found themselves with a glut of supply.
Source - Washington Post
Wednesday, 26 May 2010
Taipower to Build Taiwan’s Biggest Solar Power Plant (Update1)
May 26 (Bloomberg) -- Taiwan Power Co. plans to build the island’s biggest solar power station in the southern county of Tainan as the government aims to reduce carbon emissions.
The proposed 5-megawatt plant will surpass a 4.6-megawatt facility being constructed in the neighboring Kaohsiung County, Tu Yueh-yuan, chief engineer of Taiwan’s biggest electricity producer, said by telephone in Taipei today. One megawatt is enough to power 800 U.S. homes.
State-run Taiwan Power, known as Taipower, is building solar stations and wind turbines as the government aims to have renewable energy account for 15 percent of the island’s electricity generation capacity by 2025 to help cut carbon emissions. The industrialized island releases about three times more heat-trapping gases per person than the world average, Bloomberg data show.
“Budget for it won’t be a problem” as the company plans to boost solar power capacity, Tu said. Details of the project, including costs, aren’t yet available, she said.
The utility is negotiating with state-run Taiwan Sugar Corp., which owns the land for the proposed site, Tu said. Taipower plans to build another solar power station, with installed capacity of 4 megawatts, on Taiwan Sugar-owned land in Tainan, She said.
Energy Sources
Renewable source, including solar energy and wind turbines, accounted for 5.7 percent of Taiwan’s installed capacity as of April, according to Taipower’s website.
Taiwan’s government set minimum wholesale prices in December for electricity generated by solar panels and wind turbines at levels higher than for power from fossil fuels to spur renewable energy production.
Lawmakers approved the Renewable Energy Development Act in June, designed to help cut carbon emissions and reduce the island’s dependence on imports, according to the Bureau of Energy. Taiwan relies on overseas shipments for about 99 percent of its energy needs.
The 60-megawatt Olmedilla plant in Spain is the world’s biggest photovoltaic power station, according to pvresources.com, a website on solar technologies and applications.
The government owns 97 percent of Taiwan Power, which generates about 75 percent of the electricity the island uses.
Source - Business week
The proposed 5-megawatt plant will surpass a 4.6-megawatt facility being constructed in the neighboring Kaohsiung County, Tu Yueh-yuan, chief engineer of Taiwan’s biggest electricity producer, said by telephone in Taipei today. One megawatt is enough to power 800 U.S. homes.
State-run Taiwan Power, known as Taipower, is building solar stations and wind turbines as the government aims to have renewable energy account for 15 percent of the island’s electricity generation capacity by 2025 to help cut carbon emissions. The industrialized island releases about three times more heat-trapping gases per person than the world average, Bloomberg data show.
“Budget for it won’t be a problem” as the company plans to boost solar power capacity, Tu said. Details of the project, including costs, aren’t yet available, she said.
The utility is negotiating with state-run Taiwan Sugar Corp., which owns the land for the proposed site, Tu said. Taipower plans to build another solar power station, with installed capacity of 4 megawatts, on Taiwan Sugar-owned land in Tainan, She said.
Energy Sources
Renewable source, including solar energy and wind turbines, accounted for 5.7 percent of Taiwan’s installed capacity as of April, according to Taipower’s website.
Taiwan’s government set minimum wholesale prices in December for electricity generated by solar panels and wind turbines at levels higher than for power from fossil fuels to spur renewable energy production.
Lawmakers approved the Renewable Energy Development Act in June, designed to help cut carbon emissions and reduce the island’s dependence on imports, according to the Bureau of Energy. Taiwan relies on overseas shipments for about 99 percent of its energy needs.
The 60-megawatt Olmedilla plant in Spain is the world’s biggest photovoltaic power station, according to pvresources.com, a website on solar technologies and applications.
The government owns 97 percent of Taiwan Power, which generates about 75 percent of the electricity the island uses.
Source - Business week
Okotoks solar community sets world record
Okotoks’ solar community has set a world record in energy production after becoming the first to provide 80 per cent of space heating from the sun.
Drake Landing, a solar community of 52 homes, is well on its way to achieving a goal of 90 per cent space heating over five years after reaching 80 per cent in only three.
“I’m fiercely proud of what we set out to do and the fact that it’s working validates the ideas that went in to the beginning of it,” said town councillor Ed Sands.
When the community first opened in September 2007 homeowner Robert Pugh was the second resident to move in.
“The house itself has totally lived up to my expectations. There’s no disappointments, no regrets, so it’s been a great decision,” he said.
Okotoks may have the first solar community of this kind but general director for Natural Resources Canada Gilles Jean said it won’t be the last.
“I think it’s quite clear that we’re not on a sustainable path the way we produce and use energy, so solar energy is going to be a huge contribution,” he said.
Source - Metro News
Drake Landing, a solar community of 52 homes, is well on its way to achieving a goal of 90 per cent space heating over five years after reaching 80 per cent in only three.
“I’m fiercely proud of what we set out to do and the fact that it’s working validates the ideas that went in to the beginning of it,” said town councillor Ed Sands.
When the community first opened in September 2007 homeowner Robert Pugh was the second resident to move in.
“The house itself has totally lived up to my expectations. There’s no disappointments, no regrets, so it’s been a great decision,” he said.
Okotoks may have the first solar community of this kind but general director for Natural Resources Canada Gilles Jean said it won’t be the last.
“I think it’s quite clear that we’re not on a sustainable path the way we produce and use energy, so solar energy is going to be a huge contribution,” he said.
Source - Metro News
Green property: solar thermal systems
Tony Dunn had solar water heating panels installed on the roof of his home in 2006 at a cost of £7,125. “When the installer’s salesman pitched to us, he promised wildly optimistic savings,” says Tony, who lives near Braintree in rural Essex. “I knew his figures were unrealistic, and told him so, but the money wasn’t important to us; our main reason for installing the panels was to be less reliant on fossil fuels for our energy needs.”
Although the Dunns did not expect enormous savings, they did expect to save slightly more than the £2 over three years that their solar thermal system has actually delivered.
Their story highlights findings from the consumer organisation Which? that the majority of solar thermal companies exaggerate the potential savings of installing these systems. Last year the Office of Fair Trading received more than 1,000 complaints about the solar panel industry. With a Government target of 800,000 such installations by 2020, consumers need to be able to trust this potentially vital technology.
So how did Tony Dunn’s system end up giving him such poor return on his investment? The installer, Smart Energy, now bust, sent one hard-pressed workman to install the system over one day. “He worked for nearly 12 hours in hot, cramped conditions in our roof,” says Tony, who runs a holiday cottage on his two-acre property. “I asked him to spread the work over two days but he made it clear his orders were to finish the job in one day so he could be free to do another one the next. But it’s evident now that corners were cut and the workmanship was not of a good enough standard.”
Shortly after the 12-month guarantee period expired, a thermocouple developed a fault, pumping cold water into the shower, then last July, Smart Energy went into administration and at about the same time some of the water pipes in the roof started to leak. A firm recommended by the administrator sent out an engineer who serviced the system and fixed the leak, for which they charged £250.
“The savings from the panels amount to 8kW per day for seven months a year, which makes £84 per year. After three years that means we have saved £252 off our heating bills,” Tony says. “If you subtract the service charge that means we have saved £2 on our £7,125 investment. Not great, is it?”
The Which? investigation found that 10 out of 14 solar installers exaggerated the savings home owners could make and not one of the companies tested warned potential clients about the technical challenges involved in installing a solar system.
“Complex plumbing and electrical work is required for these systems, plus it’s all in the roof, a vital part of any house,” Tony says. “We now have stains on our bathroom ceiling because of the leak. You’ve got to have a well-regulated system with well-trained and accountable technicians, otherwise people are going to turn their backs on renewable technologies,” he adds.
Cathy Debenham, of renewable energy users website YouGen, says: “I’m a great fan of solar thermal. We turned off our boiler last week and are showering solely in solar heated water. But both my father and uncle have been on the receiving end of pushy solar salesmen, who over-quote, offer discounts if you sign up today and claim too much for the product.”
In a statement the industry body said: “The Solar Trade Association (STA) takes the issues highlighted by Which? seriously. The solar industry is growing exponentially and as a new industry it is not immune from 'rogue traders’. We will do everything within our power to eradicate such companies.”
STA board member Peter Creasey added that if home owners are to take advantage of the financial incentives of the Government’s Renewable Heat Incentive, which comes into force next April, they must use installers accredited through the Microgeneration Certification Scheme (MCS).
HOW TO SOLAR ON
* www.yougen.co.uk
* www.which.co.uk/solar
* www.microgenerationcertification.org
* www.solar-trade.org
Source - The Telegraph
Although the Dunns did not expect enormous savings, they did expect to save slightly more than the £2 over three years that their solar thermal system has actually delivered.
Their story highlights findings from the consumer organisation Which? that the majority of solar thermal companies exaggerate the potential savings of installing these systems. Last year the Office of Fair Trading received more than 1,000 complaints about the solar panel industry. With a Government target of 800,000 such installations by 2020, consumers need to be able to trust this potentially vital technology.
So how did Tony Dunn’s system end up giving him such poor return on his investment? The installer, Smart Energy, now bust, sent one hard-pressed workman to install the system over one day. “He worked for nearly 12 hours in hot, cramped conditions in our roof,” says Tony, who runs a holiday cottage on his two-acre property. “I asked him to spread the work over two days but he made it clear his orders were to finish the job in one day so he could be free to do another one the next. But it’s evident now that corners were cut and the workmanship was not of a good enough standard.”
Shortly after the 12-month guarantee period expired, a thermocouple developed a fault, pumping cold water into the shower, then last July, Smart Energy went into administration and at about the same time some of the water pipes in the roof started to leak. A firm recommended by the administrator sent out an engineer who serviced the system and fixed the leak, for which they charged £250.
“The savings from the panels amount to 8kW per day for seven months a year, which makes £84 per year. After three years that means we have saved £252 off our heating bills,” Tony says. “If you subtract the service charge that means we have saved £2 on our £7,125 investment. Not great, is it?”
The Which? investigation found that 10 out of 14 solar installers exaggerated the savings home owners could make and not one of the companies tested warned potential clients about the technical challenges involved in installing a solar system.
“Complex plumbing and electrical work is required for these systems, plus it’s all in the roof, a vital part of any house,” Tony says. “We now have stains on our bathroom ceiling because of the leak. You’ve got to have a well-regulated system with well-trained and accountable technicians, otherwise people are going to turn their backs on renewable technologies,” he adds.
Cathy Debenham, of renewable energy users website YouGen, says: “I’m a great fan of solar thermal. We turned off our boiler last week and are showering solely in solar heated water. But both my father and uncle have been on the receiving end of pushy solar salesmen, who over-quote, offer discounts if you sign up today and claim too much for the product.”
In a statement the industry body said: “The Solar Trade Association (STA) takes the issues highlighted by Which? seriously. The solar industry is growing exponentially and as a new industry it is not immune from 'rogue traders’. We will do everything within our power to eradicate such companies.”
STA board member Peter Creasey added that if home owners are to take advantage of the financial incentives of the Government’s Renewable Heat Incentive, which comes into force next April, they must use installers accredited through the Microgeneration Certification Scheme (MCS).
HOW TO SOLAR ON
* www.yougen.co.uk
* www.which.co.uk/solar
* www.microgenerationcertification.org
* www.solar-trade.org
Source - The Telegraph
The global popularity of solar panels
PV solar panels are expected to provide almost a quarter of the globes electricity supplies by 2050, according to a report published by the International Energy Agency (IEA). With the right policies in place, the IEA says that Photovoltaic solar panels on domestic and commercial buildings could compete with fossil fuel electricity supplies by 2020. By 2030 the IEA anticipate pv solar panels will provide about five percent of global electricity.
In April this year, the UK Government introduced the Feed in Tariffs Scheme (FITs) to stimulate growth in the UK PV solar panel market. The scheme promises cash rewards to homeowners, businesses and communities who install solar technologies, and the Renewable Heat Incentive Scheme which begins next April, promises to pay householders to a guaranteed income from installing solar heating panels too.
11% of total supplies are predicted to come from solar panels on homes and offices while a further 11 percent will be provided by central solar power stations feeding clean electricity to populous areas.
Stuart Lovatt from Heat my Home believes that solar power is a viable combination with fossil fuels.
“Realistically, I think solar power has quite a bright future. I’ve seen predictions before and they are becoming more and more bullish as the technology develops. Countries like Germany, Spain and Belgium have embraced PV solar panels and are already reaping the rewards, but solar panels perform very well in the British climate too so there’s no reason why UK home-owners shouldn’t benefits of solar”.
“Solar power’s time is starting to come, and we are seeing the begins of a new solar powered century”, Lovatt adds.
Whilst the benefits of solar Photovoltaic s are well documented, the opportunity extends far beyond the market for household systems.
The FITs also provide opportunities for integrating PV into buildings, as a way for building owners to generate their own power, utility companies to meet their ‘Renewable Obligation’, and for not-for-profit organisations to help cut fuel poverty. However, to boost solar PV in the UK it’s essential to create new ‘green’ jobs along the supply chain and build the infrastructure to support the growing low carbon economy.
The UK’s solar industry is still in it’s infancy, but with these new incentives and rewards in place, the growth of the solar industry is expected to sharply rise and give our country a fighting chance not only with global trade in green technologies but also with environmental issue’s.
Source - Heatmyhome
In April this year, the UK Government introduced the Feed in Tariffs Scheme (FITs) to stimulate growth in the UK PV solar panel market. The scheme promises cash rewards to homeowners, businesses and communities who install solar technologies, and the Renewable Heat Incentive Scheme which begins next April, promises to pay householders to a guaranteed income from installing solar heating panels too.
11% of total supplies are predicted to come from solar panels on homes and offices while a further 11 percent will be provided by central solar power stations feeding clean electricity to populous areas.
Stuart Lovatt from Heat my Home believes that solar power is a viable combination with fossil fuels.
“Realistically, I think solar power has quite a bright future. I’ve seen predictions before and they are becoming more and more bullish as the technology develops. Countries like Germany, Spain and Belgium have embraced PV solar panels and are already reaping the rewards, but solar panels perform very well in the British climate too so there’s no reason why UK home-owners shouldn’t benefits of solar”.
“Solar power’s time is starting to come, and we are seeing the begins of a new solar powered century”, Lovatt adds.
Whilst the benefits of solar Photovoltaic s are well documented, the opportunity extends far beyond the market for household systems.
The FITs also provide opportunities for integrating PV into buildings, as a way for building owners to generate their own power, utility companies to meet their ‘Renewable Obligation’, and for not-for-profit organisations to help cut fuel poverty. However, to boost solar PV in the UK it’s essential to create new ‘green’ jobs along the supply chain and build the infrastructure to support the growing low carbon economy.
The UK’s solar industry is still in it’s infancy, but with these new incentives and rewards in place, the growth of the solar industry is expected to sharply rise and give our country a fighting chance not only with global trade in green technologies but also with environmental issue’s.
Source - Heatmyhome
Solar Industry Poised To Create 200,000 Jobs With Key Tax Policies
The Solar Energy Industries Association, joined by Senator Maria Cantwell (D-WA) and industry leaders, has released an independent study projecting the positive economic impact of the Deparent of Treasury Grant Program and the Solar Manufacturing Invesent Tax Credit.
The study found that extending the TGP by two years and including solar manufacturing in the industry's existing tax credit would add 200,000 new domestic jobs to the solar workforce and supporting industries in the U.S. Additionally, it would result in 10 gigawatts (GW) of new solar installations by 2016 - enough to power 2 million homes.
"Extension of the Treasury Grant program is essential to continuing our nascent economic recovery and moving to a cleaner, more distributed 21st Century energy system," said Senator Cantwell. "Tens of thousands of jobs hinge on continuing this successful program, including thousands of new solar jobs in Washington State in the next two years."
"Unemployment across the country remains near 10 percent, while the construction industry is suffering at nearly 22 percent unemployment," said Rhone Resch, President and CEO of SEIA.
"But last year, the solar industry was one of the bright spots in our economy with the creation of 17,000 new jobs."
New solar jobs by State include: California (60,000); Michigan (24,000); Ohio, Oregon and Texas (13,000+ each); Arizona, Colorado, and Florida (10,000 each); Massachusetts, New Mexico, New York, North Carolina, Pennsylvania, and Washington (about 5,000 each); Nevada, New Jersey, and Tennessee (3,000+ each); and Connecticut and Hawaii (1,500+ each).
New solar installations through 2016 by State include: California over 4,400 MW; Arizona over 1,400 MW; Colorado, Connecticut, Florida, Nevada, and New Jersey 300 MW each; and Hawaii, New York, North Carolina, Oregon and Texas 100+ MW each. Every 100 MW can power 25,000 average American homes.
"We need to support these workers with stable, common-sense policies like an extension of the Treasury Grant Program that provides new opportunity for American workers while saving the taxpayer money," added Resch.
Source - Solar Daily
The study found that extending the TGP by two years and including solar manufacturing in the industry's existing tax credit would add 200,000 new domestic jobs to the solar workforce and supporting industries in the U.S. Additionally, it would result in 10 gigawatts (GW) of new solar installations by 2016 - enough to power 2 million homes.
"Extension of the Treasury Grant program is essential to continuing our nascent economic recovery and moving to a cleaner, more distributed 21st Century energy system," said Senator Cantwell. "Tens of thousands of jobs hinge on continuing this successful program, including thousands of new solar jobs in Washington State in the next two years."
"Unemployment across the country remains near 10 percent, while the construction industry is suffering at nearly 22 percent unemployment," said Rhone Resch, President and CEO of SEIA.
"But last year, the solar industry was one of the bright spots in our economy with the creation of 17,000 new jobs."
New solar jobs by State include: California (60,000); Michigan (24,000); Ohio, Oregon and Texas (13,000+ each); Arizona, Colorado, and Florida (10,000 each); Massachusetts, New Mexico, New York, North Carolina, Pennsylvania, and Washington (about 5,000 each); Nevada, New Jersey, and Tennessee (3,000+ each); and Connecticut and Hawaii (1,500+ each).
New solar installations through 2016 by State include: California over 4,400 MW; Arizona over 1,400 MW; Colorado, Connecticut, Florida, Nevada, and New Jersey 300 MW each; and Hawaii, New York, North Carolina, Oregon and Texas 100+ MW each. Every 100 MW can power 25,000 average American homes.
"We need to support these workers with stable, common-sense policies like an extension of the Treasury Grant Program that provides new opportunity for American workers while saving the taxpayer money," added Resch.
Source - Solar Daily
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