Friday, 10 November 2017

Renewable energy can be in next round of climate negotiations



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Countries have an opportunity to significantly increase renewable energy ambition within
Nationally Determined Contributions (NDCs), and to accelerate its deployment in line with climate objectives under the Paris Agreement, according to a new report by the International Renewable Energy Agency (IRENA).
Released today at the UN Climate Change Conference in Bonn, Germany, the report found that current NDCs and energy strategies can be substantially enhanced to meet global climate objectives. Entitled ‘Untapped Potential for Climate Action: Renewable Energy in Nationally Determined Contributions’, the report also identifies that renewable energy already targeted within national energy strategies often exceeds renewable energy capacity currently envisaged under NDCs.
Renewable energy deployment levels under current NDCs would bring online 80GW of renewable energy capacity globally each year, between 2015 – 2030. However, the current pace of deployment has seen countries install 125GW of new renewable energy capacity on average annually between 2010 and 2016, suggesting that NDCs can better reflect the global energy transition. The report highlights that a more integrated approach would send a clearer message to the global investment community willing to invest in this sector.
“The case for renewable energy has strengthened considerably since parties first quantified the renewable energy components of their nationally determined contributions,” said Adnan Z. Amin, IRENA Director-General at a press conference for the Global Climate Action energy, water and agriculture thematic segment. “Since then, the increasing attractiveness of renewables as the lowest-cost source of new energy supply in countries around the world has fuelled unprecedented levels of deployment.
“As the global community prepares for a new round of climate negotiations under the Paris Agreement, it is critical we go in with a clear understanding of the trajectory required to avoid the worst effects of climate change,” continued Mr. Amin. “Our analysis finds that the convergence of innovation, falling costs and positive socioeconomic impacts of renewable energy – together with the climate imperative – make a compelling case for accelerating action.”
As part of a mechanism built into the Paris Agreement, countries are required to update or submit new NDCs over time, each of which is designed to be progressively more ambitious than the last. With the second round of NDCs due in 2020, a ‘Facilitative Dialogue’ is set to start in 2018, during which Parties will take stock of initial progress toward the collective goals in the Agreement.
Furthermore, while the power sector emissions are addressed in most NDCs, significant carbon reductions in end uses of energy (mobility, heating and cooling) are needed to meet the objectives of the Paris Agreement. The use of renewable energy in other sectors of the economy such as transport, industry and residential buildings can also support increased ambition.
IRENA also used the platform of the UN Climate Change Conference to announce the establishment of a new facility focused on providing strategic planning and technical support to countries to raise achievable renewable energy ambitions under their NDCs.
“Given the gap we have found that exists between what countries are pledging to do under the Paris Agreement and actual progress and potential on the ground, it is clear that there is an opportunity to work with countries in a targeted fashion to ramp up both implementation and ambition,” added Mr. Amin.
Key findings of the report, are:
Substantial scope exists for countries to increase their renewable energy ambitions in a cost-effective way under NDCs.
In Africa, NDCs could cost-effectively target 310 gigawatts (GW) of renewable energy by 2030, almost four and a half times the capacity outlined currently in NDCs on the continent and more than twice the capacity envisaged in NDCs and national plans.
  • Only ten G20 countries currently include quantified renewable energy targets in their NDCs, while all of them have set targets as part of their national energy plans and strategies.
  • NDCs of G20 countries – responsible for 80 per cent of the global energy-related CO2 emission reductions needed by 2050 – could aim for an installed renewable energy capacity of 4.6 terrawatts (TW) by 2030, 60 per cent more than would be achieved though the combined implementation of national energy targets and current NDCs.
  • Greater alignment of renewable energy targets under NDCs and in national energy plans would facilitate the mobilisation of the investments required to accelerate the energy transition and advance progress towards achieving global climate objectives.
  • Achieving power sector renewable energy targets under current NDCs, requires almost USD 1.7 trillion by 2030 - USD 1.2 trillion of which is required for unconditional targets, and USD 500 billion will be needed to support targets conditional upon international support.
source:
https://www.solarserver.com

Thursday, 13 April 2017

Aquila Capital completes and sells second solar PV project in Japan

Aquila Capital reference PV plant
Aquila Capital (Hamburg, Germany) has completed the development of a photovoltaic (PV) project in Japan with an installed capacity of 38.4 MW and has sold it to a local institutional investor, the company announced on April 12th, 2017.
Aquila Capital will manage the solar park for the duration of the term.

This is Aquila Capital’s second PV project since establishing a presence in Japan in 2012 and it underlines the company’s continuing commitment to this promising market. Aquila Capital focuses on acquiring PV projects at an early stage of development and further developing them from full approval or construction phase to sale.
“This investment reflects the current outlook in the Japanese photovoltaic market;” comments Boris Beltermann, responsible for Aquila Capital’s solar business in Japan.
Market-ready projects are particularly interesting for local institutional investors, so developing projects that already have secured feed-in tariffs is an attractive strategy for our investors.”

More investments planned in Japan
The Japanese photovoltaic market remains active. Aquila Capital has built up resources and expertise in the country over the past few years and it will continue expanding its commitment.
The company’s strategy is to acquire early-stage PV projects with a volume of more than 150 MW and develop them until they are sufficiently mature for sale.
Even though a new feed-in tariff (FIT) system will come into effect as of April 2017, high remuneration levels remain valid for numerous projects that have already received prior approval. Regarding the latest project, Aquila Capital secured an attractive FIT of 40 Yen per kilowatt-hour through the earlier acquisition of the property area on which the PV system was developed. 
source: http://www.solarserver.com


Dubai Future Accelerators concludes 2nd round including solar-powered seawater desalination

HH Sheikha Hamdan bin Mohammed Al Maktoum, Crown Prince of Dubai, during the closing ceremony
The Dubai Future Foundation (DFF, UAE) concluded the second round of the Dubai Future Accelerators (DFA) with 28 Memorandums of Understanding (MoU) signed between Dubai government departments and innovative companies from around the world.
Twelve entities took part in the successful second round of the DFA program, which connects emerging technology companies with Dubai government bodies to test new approaches at the city- scale.
Amongst others, the Dubai Electricity and Water Authority (DEWA) signed an MoU with Desolinator to test a household desalination plant that uses solar energy to turn seawater into drinking water; other MoU's were signed with Mulk holding and SolarBanks. 
source: http://www.solarserver.com

Canadian Solar sells two PV plants in China totaling approximately 69.5 MW to Shenzhen Energy

Canadian Solar reference PV plant in China
Canadian Solar Inc. (Guelph, Ontario) on April 12th, 2017 announced that its wholly-owned subsidiary, CSI New Energy Holding Co., Ltd. has completed the sale of two solar photovoltaic (PV) plants in China, totaling approximately 69.5 MW to Shenzhen Energy Nanjing Holding Co., Ltd., a subsidiary of Shenzhen Energy Group Co., Ltd., for approximately RMB687.1 million (USD 99.8 million).
The transaction was closed in March 2017 and the Company expects to recognize revenue from the sale of the plants when all revenue recognition criteria have been met.
"We are pleased to have closed the sale of two additional solar power plants in China to Shenzhen Energy," commented Dr. Shawn Qu, Chairman and Chief Executive Officer of Canadian Solar.
"We are well on track to monetize our operating solar power plants in China and other countries. Shenzhen Energy is an important strategic partner of Canadian Solar and we look forward to further expanding our strong partnership with them for more opportunities in the future." 
source: http://www.solarserver.com

Tuesday, 11 April 2017

Mercom Capital Group: Total corporate funding in solar sector rises to USD 3.2 billion in Q1, 2017

Solar Corporate Funding Q1 2016 – Q1 2017
Mercom Capital Group (Austin, TX, U.S.) on April 10th, 2017 released its report on funding and merger and acquisition (M&A) activity for the solar sector in the first quarter of 2017.
Total corporate funding (including venture capital funding, public market and debt financing) into the solar sector in Q1, 2017 doubled with USD 3.2 billion compared to USD 1.6 billion in Q4, 2016.
Year-over-year (YoY) funding in Q1, 2017 was about 15 percent higher compared to the USD 2.8 billion raised in Q1, 2016. 


Increased debt financing activity
“Q1 funding levels were up in the solar sector from the 2016 lows, largely due to increased debt financing activity. Corporate funding never reached USD 3 billion in any of the quarters in 2016. M&A activity was also strong with several large deals. Solar public companies also had a good first quarter,” commented Raj Prabhu, CEO of Mercom Capital Group.
Global VC funding (venture capital, private equity, and corporate venture capital) for the solar sector saw a 78 percent rise this quarter with USD 585 million in 22 deals compared to USD 329 million raised in the same number of deals in Q4, 2016. The amount raised was also higher YoY compared to the USD 406 million raised in 23 deals in Q1 2016. 
A large part of the VC funding in Q1 2017 went to solar downstream companies; USD 548 million was raised in nine deals.


ReNew Power Ventures raised USD 200 million
Top VC deals included the USD 200 million raised by ReNew Power Ventures followed by the USD 155 million raised by Greenko Energy Holdings, the USD 125 million secured by Hero Future Energies, and then Silicon Ranch’s USD 55 million. A total of 23 VC investors participated in Q1 2017.
Solar public market financing came to USD 461 million in 13 deals in Q1, 2017, slightly lower compared to the USD 615 million (also in 13 deals) in Q4, 2016, but significantly higher compared to the same quarter of last year when USD 94 million was raised in four deals. There was one IPO in Q1 2017 by Clenergy compared to two in Q4 2016. 
Announced debt financing came in strong with USD 2.2 billion raised in 25 deals. In comparison, there were 10 deals in Q4, 2016 for a total of USD 610 million. YoY, USD 2.3 billion was raised in 19 deals in Q1, 2016. Most of the debt was raised by solar downstream companies.

Announced large-scale project funding in remained steady
In Q1, 2017, Solar Mosaic raised USD 139 million through the first securitization of its residential solar loan portfolio at a 4.45 percent interest rate. 
Announced large-scale project funding in Q1, 2017 remained steady with USD 2.6 billion in 33 deals compared to USD 3 billion in 38 deals in Q4, 2016. In a YoY comparison, USD 1.4 billion was raised in 24 deals in Q1, 2016.
Residential and commercial solar funds announced in Q1, 2017 dropped to USD 630 million in six deals compared to USD 1.5 billion in eight deals in Q4, 2016.
During the same quarter last year (Q1 2016), USD 1 billion was raised in six deals. Of the USD 630 million announced this quarter, USD 500 million went towards the lease/PPA model and USD 130 million went to loan funds. A total of more than USD 23 billion has now gone into residential and commercial funds since 2009.
There were 29 solar M&A transactions in Q1, 2017 compared to 20 transactions in Q4, 2016 and 14 transactions in Q1, 2016. Of the 29 total transactions in Q1, 2017, 20 involved solar downstream companies.

About 7.4 GW of solar projects acquired in Q1, 2017
There were 49 large-scale solar project acquisitions (18 disclosed for USD 1.9 billion) in Q1, 2017 compared to 73 transactions (23 disclosed for USD 2.1 billion) in Q4, 2016.
In a YoY comparison, there were 50 transactions (22 disclosed for USD 1.2 billion) in Q1, 2016. About 7.4 GW of solar projects were acquired in Q1, 2017 compared to 5 GW in Q4, 2016.
Investment firms and funds were the most active acquirers Q1, 2017, picking up about 21 projects totaling 2.8 GW, followed by project developers with nine transactions for 3.3 GW. Yieldcos had four transactions for 962 MW.
Mercom tracked 233 new large-scale project announcements worldwide in Q1, 2017 totaling 12.7 GW. 
source: http://www.solarserver.com

8.79 MW SunPower solar PV installation underway at New Toyota North America's headquarters

 Installation of an 8.79-megawatt SunPower solar energy system is underway at Toyota Motor North America’s new headquarters in Plano, Texas.
SunPower Corporation (San Jose, CA, U.S.) on April 10th, 2017 announced that construction has begun on an 8.79 MW solar photovoltaic (PV) system at Toyota Motor North America's new headquarters in Plano, Texas, which the auto maker plans to occupy this year.
Close to one megawatt larger than originally planned, it is expected to be the Lone Star State's largest corporate office on-site solar installation among non-utility companies.
When complete, more than 20,000 PV panels will cover the area equal to 10 football fields, offering shade and protection to vehicles underneath.
The system is expected to generate enough solar power to offset approximately 33 percent of the headquarters' energy needs, reducing Toyota's reliance on traditional electricity from the grid.
Toyota is financing the SunPower solar PV project installed at its Plano, Texas, location through a power purchase agreement (PPA) arranged by SunPower. Toyota will own the renewable energy credits associated with the system. 
source:http://www.solarserver.com

Monday, 10 April 2017

Sembcorp wins wind power project in TN


 
Sembcorp’s renewable energy business in India has won a bid for a new wind power project of close to 250 megawatts capacity.
According to an official statement, Sembcorp Green Infra received a letter of award for the project following the country’s first national wind power tender, conducted by Solar Energy Corp of India,
The project will be located in Tamil Nadu and connected to the Central Transmission Utility. The project’s entire output will be sold to Power Trading Corporation under a 25-year long-term power purchase agreement.
The project is expected to be developed in phases and fully commissioned in the second half of the financial year ending March 31, 2019. The total project cost is estimated to be around Rs 1,900 crore (approximately S$405 million). This is expected to be funded through a mix of internal funds and debt, an official statement said. 
source: http://www.thehindubusinessline.com

ET Energy starts construction of a 19 MW solar PV project for Astronergy in Turkey

ET Energy reference PV plant
ET Solutions AG (Munich, Germany), a subsidiary of ET Energy, announced that it had started the construction of a 19 MW solar photovoltaic (PV) project in Turkey for Astronergy (Hangzhou, China), a PV module and smart energy provider.
Situated in Kahramanmaras, Osmaniye and Ankara, Turkey, 71,064 Astronergy PV modules will be installed on 29 hectares.
The project will be commissioned by the end of October, 2017, and its annual solar power generation will reach 37,000 MWh, reads the press release.
Acting as turn-key solar energy solutions provider, ET Energy has also signed a 2-year O&M services contract to secure a performance ratio of 80% and stable power generation for over 25 years, which gives rise to the reinforcement of local grid infrastructures.
"Our German engineering and expertise has once again helped us obtain the trust of customers and secure the grid-connection within a tight time frame," Dennis She, President and CEO of ET Energy said.
"Like we did in the past in Antalya projects, the highly delivered results is expected to surpass the targeted performance ratio."
"Astronergy is quite glad to work with ET Energy on this project. The high reliability of Astronergy's PV modules and the expertise of ET Energy will ensure the successful operation in the future. We have strong ambition to develop more solar power plants around the world," commented Dr. Chuan Lu, the CEO of Astronergy. 
source: http://www.solarserver.com

PV inverter manufacturer KACO new energy significantly upgrades its forecast for 2017

KACO new energy’s order books are well-stocked, the company emphasizes
As of the end of March 2017, KACO new energy (Neckarsulm, Germany) had booked in orders for inverter capacity totaling 600 megawatts, the company announced on April 7th, 2017.
According to KACO, the main reason for this excellent start to the year is the market launch of a new technology driver in the field of inverter technology, the blueplanet 50.0 TL3 INT, which has led to significant growth in the Middle East, Turkey and India.
“We laid the foundation for this strong first quarter back in 2016 with our technology, sales and marketing activities. We were very keen to establish long-term partnerships. The best example of this is the framework contracts that we have put in place both in Asia and in Turkey,” said managing partner Ralf Hofmann.

The total order quantity represents double what the company had booked in at the same point in 2016. In light of this, the annual forecast for the group as a whole is now approaching 2.5 gigawatts.

The head office in Neckarsulm is profiting from the continuously increasing demand for string inverters “Made in Germany”.
KACO new energy has been able to reap the benefits of this development primarily owing to the blueplanet 50.0 TL3 INT, which the company launched in mid-2016.


“Our equipment consistently meets the stringent requirements of European standards in respect of both electromagnetic interference and safety. This protects our customers from costly judicial and economic consequences that would otherwise occur when using considerably cheaper devices from other manufacturers,” managing partner Ralf Hofmann explained.

Nedret Ünlü, General Manager of KACO new energy Turkey, highlighted that: “Here, in the booming photovoltaics market in Turkey, we have been able to achieve a market share of 40 per cent through our strategy of consistent quality together with outstanding service.”
In the USA, the company is focusing primarily on central inverter solutions. Most in demand in this regard is the Integrated Power Station (IPS), which has all the accessories required for utility-scale power plant projects. The IPS is supplied from the factory in San Antonio, Texas.
source:http://www.solarserver.com


Tuesday, 4 April 2017

EIB confirms EUR 200 million long-term loan to State Bank of India to support Indian large-scale solar projects

The EUR 200 million 20 year long-term European Investment Bank loan will support individual solar projects following technical and financial due diligence
The European Investment Bank on March 31st, 2017 confirmed new support for solar power generation in India in partnership with the State Bank of India.
The EUR 200 million (INR1,400 Crores) long-term loan will support total investment of EUR 650 million in five different large-scale photo-voltaic solar power projects and contribute to India’s National Solar mission and reduce dependence on fossil fuel power generation.
Four schemes across the country, with a generation capacity of 530 MWac, have already been identified.
The loan agreement was formally announced in New Delhi ahead of the inauguration of the first permanent presence in India of the European Investment Bank by Finance Minister Jaitley, European Investment Bank President Werner Hoyer and Vice President Andrew McDowell, responsible operations in India and South Asia.

The EUR 200 million 20 year long-term European Investment Bank loan will support individual projects following technical and financial due diligence.
It is expected that projects in Telangana and Tamil Nadu states, and elsewhere in the country, will be backed by the new initiative. The European Investment Bank will support investment in individual solar projects alongside financing from Indian banks and project promoters. 
source: http://www.solarserver.com


Canadian Solar raises USD 47.0 million with green PV project bond in Japan

Canadian Solar PV project in Japan
Canadian Solar Inc. (Guelph, Ontario) on April 3rd, 2017 announced completion of its second green project bond placement with Goldman Sachs Japan Co., Ltd.
The JPY5.4 billion (USD 47.0 million) innovative dual-tenor green project bond was issued to finance Canadian Solar's 19.05 MW Gunma Aramaki solar PV plant in Gunma Prefecture, Japan.
The Gunma Aramaki Solar Power Plant is expected to reach commercial operations in December 2017. The electricity generated from this solar power plant will be purchased by the Tokyo Electric Power Co., Inc. (TEPCO) under a 20-year feed-in-tariff contract at the rate of JPY36.00 (USD 0.32) per kWh.
The Gunma Aramaki green project bond is the first of its kind with dual-tenor maturity of 1.5 years and 20.3 years, representing the initial and extended tenor respectively, within a single-tranche of bond.
This innovative tenor mechanism provides Canadian Solar with options to maximize the value of its investment while preserving long-term financing support for its solar power project.

The Japan Credit Rating Agency, Ltd. (JCR) has assigned the investment grade rating of "A" to the Gunma Aramaki project, which is in line with the highest rating in the Japan PV sector.
Further, Japan Research Institution, Limited (JRI) provided an independent certification for the designation as green bond in accordance with the Green Bond Principles 2016 published by the International Capital Market Association (ICMA).
The asset-backed non-recourse bond has been issued at par and pays a fixed coupon of 1.2875% per annum during the initial tenor and, if extended at the option of Canadian Solar, 1.3588% per annum thereafter. 
source: http://www.solarserver.com



Thursday, 30 March 2017

World's biggest solar PV and energy storage project to be built in South Australia

Artist’s rendering of the solar and battery storage plant in South Australia’s mining heartland, known as the Kingfisher Project
A USD 1 billion solar and battery storage project - the largest on the planet - will open in South Australia later this year, the Lyon Group of companies (Sydney) announced.
Lyon Partner David Green said construction on Riverland Solar Storage, north-east of Adelaide, would begin in June.
“Riverland Solar Storage’s 330 MW solar PV generation and 100 MW battery storage system will be Australia’s biggest solar farm with 3.4 million solar panels and will also include 1.1 million batteries,” said Green.
The Lyon Group expects the facility to be operational by December.
Green was joined by South Australian Premier Jay Weatherill for the announcement at Parliament House in Adelaide.

Kingfisher Solar Storage to be built first
Lyon had previously announced another solar storage project – Kingfisher Solar Storage – near Roxby Downs in the north of the state, however Green said Riverland Solar Storage would be built first because the land was secured and the grid connection was “further advanced”.
Lyon expects construction to begin on the Kingfisher project in September, and for the project to be operational by mid-2018.
Green said both the Riverland and Kingfisher projects would feature battery storage systems larger than any currently operating on Earth.

4.7 million solar PV  panels
“If the 4.7 million solar panels at Riverland and Kingfisher were placed end to end, they would reach from Adelaide to Brisbane and back, and then all the way to Melbourne,” he said.
Energy Minister Tom Koutsantonis added if Lyon was successful in its bid to build the Government’s battery, the Government would write contracts for the facility to be available at peak times. He said if the company was not successful, there would not be any State Government subsidy to the project. 
source: http://www.solarserver.com

Wednesday, 29 March 2017

Cornell University Moving Forward with Geothermal Energy Plan

 file
Cornell's Senior Leaders Climate Action Group presented its findings Tuesday night regarding the school's stated goal of becoming a carbon neutral campus within 20 years and the use of an "unproven" but intriguing new method of heat production that could greatly reduce the school's carbon footprint by nearly 40 percent.
The report, titled Options for Achieving a Carbon Neutral Campus by 2035, detailed the group's work to determine the viability of six different potential routes forward in the school's quest for carbon neutrality. In the end, the group chose option one, a combination of Earth Source Heat, wind, water, solar and biomass. The plan would require drilling between two and four miles into the ground in order to find a depth that would properly warm the circulating water to the point that it can be used to heat the campus' buildings.
SLCAG, a 17 member group of faculty and officials from Cornell, was asked in March 2016 by Provost Michael Kotlikoff to analyze options for the Ithaca campus to reach carbon neutrality by 2035. Cost for the project was not fully discussed, though early reports have suggested $12-15 million for the initial two-well, limited operation test process and the research needed to complete that.
Lance Collins, the school's Dean of Engineering, said Phase 1 will take a year, to find the acceptable spot to drill, then Phase 2 of Drilling will take 3-5 years. If the project is not working at that point, Collins said they would attempt to re-adjust, either stopping the project or examining a heat pump alternative option. That would leave as much as a six year period before the initial success of the project is determined, though it was noted that is a rough estimate and most of the time would be spent acquiring the necessary permits and moving through the city's bureaucratic processes, not actually drilling. The report itself sets a hard deadline of finding a final course of action before 2025 if the university is to meet its 2035 goal.
"It's going to require a bunch of hybrid solutions that work on both sides of the equation," said Bill Sitzabee, a SLCAG member and interim VP for Infrastructure, Properties and Planning, referring to how the school planned to reduce energy demand and increase renewable energy supply.
Some more minor changes were also mentioned, including that the school is also looking to change from about 700 gas vehicles to hybrid or electric vehicles, and expand access to electric car chargers around campus.
Collins explained the unique challenges that the region itself presents to this sort of geothermal system-- out near the West Coast, where projects similar to this are a bit more common, the natural rate of earthquakes actually makes it easier to access the high temperatures necessary to heat the water. Lava isn't as far underground, so drilling for heat is much less rigorous. In the east, however, more drilling is necessary, though that obstacle could make the project that much more innovative.
"What we're doing is more challenging, we'll have to drill deeper, but what's interesting about it is that if we are successful, it would allow this to be deployed much more widely and for us to create a new industry," Collins said. "That's an important aspect of this for us."
While Earth Source Heat is certainly the most eyebrow-raising element of the plan, it would not be carrying the weight of carbon neutrality on its own. Wind, water and solar energy will be utilized to cover electricity needs, while biomass (which is energy produced from organic waste like crop materials) will be implemented during peak times to help lower the burden on the heating system-- another strategy to employ a renewable resource.
Collins also pledged that the system will be designed to not disturb the Marcellus shale reservation that is located beneath the region, using multi-layer encased piping to lower the risk of some sort of leak or blowout. That aspect has become a point of interest, particularly among local environmental activists that allege the project borders on fracking, which would carry with it the risk of seismic disturbances like earthquakes. It should be noted, there is plenty of contention nationally surrounding the benefits and dangers of fracking for energy harvesting. Collins, perhaps aware of the nervousness, made a point to emphasize the differences between actual fracking and what the school is planning-- essentially,  that there is much less pressure involved for the pipes being used as opposed to the extremely high pressures used in fracking, and also that the system is closed and used to heat, unlike fracking's open system for energy cultivation.
For their part, "fracktivists" that spoke at the meeting seemed cautiously hesitant to embrace the idea, though somewhat satisfied.
"What we're doing here is providing that pathway forward, a non-carbon based way," Collins said. "We're talking about a limitless source of energy, if we're able to extract it. That's a challenge, but we're taking the challenge."
The proposal so far still includes building two wells at first, essentially as a test case, in order to measure the effectiveness while attempting to only heat certain targeted areas of campus. If all goes well with that, the project would continue. The report listed several reasons for its findings, including that "Earth Source Heat is the most promising technology for heating the campus in our climate," and a statement of dedication to "continue to review other renewable options as technologies and cost feasibilities change over time."
When the question was raised during the panel session, sustainable energy systems professor Jeff Tester said Cornell does not predict any problems regarding area property values, claiming they currently believe the drilling would be done on Cornell's campus and thus not disturb off-campus residences in a significant way.
source:http://www.ithaca.com

Renewable Energy and Power, Inc. Completes Restructuring and Secures New Funding


a diversified corporation with markets in energy-saving technologies of both solar and wind energy, and LED lighting, is pleased to announce that the Company has completed a significant capital restructuring, brought its financial filings current, and is now prepared to move the company forward.
In conjunction with the restructuring, the company is also pleased to announce it has obtained commitments from an institutional investor for new equity capital.
In the past, RBNW's inefficient inventory procurement limitations have yielded unacceptable gross profits. The ability to order and stock large inventories in advance should greatly improve gross margins.
"The company is pleased that this new funding will allow RBNW to stock more inventory in its distribution centers nationwide to meet the needs of its customers on a timely basis," said CEO Donald MacIntyre. "The Company will also be increasing its dedicated sales force with the new funding. Installation and on-going maintenance at the lowest possible price gives our customers the easiest, most effective means for upgrading their lighting and power needs. Altogether, the changes will lower costs and increase profit margins."
Renewable Energy and Power, Inc.'s website, www.reappower.com, illustrates the important services and products Renewable Energy and Power, Inc. (RBNW) provides to the Green Energy market to make it competitive with fossil fuels by employing proprietary new technologies in combination with existing solar and wind-power electric generation and LED lighting. RBNW functions in both domestic and international markets that are in vigorous growth stages with long-term prospects. Federal and state legislation in the United States, including many tax incentives, are driving businesses and consumers to replace older technologies with the new solar and LED alternatives offered by RBNW.
Safe Harbor Act: Forward-Looking Statements are included within the meaning of Section 27A of the Securities Act of 1933, and Section 21E of the Securities Exchange Act of 1934, as amended. All statements regarding our expected future financial position, results of operations, cash flows, financing plans, business strategy, products and services, competitive positions, growth opportunities, plans and objectives of management for future operations, including words such as "anticipate," "if," "believe," "plan," "estimate," "expect," "intend," "may," "could," "should," "will," and other similar expressions are forward-looking statements and involve risks, uncertainties and contingencies, many of which are beyond our control, which may cause actual results, performance, or achievements to differ materially from anticipated results, performance, or achievements. We are under no obligation to (and expressly disclaim any such obligation to) update or alter our forward-looking statements, whether as a result of new information, future events or otherwise.
source: https://www.benzinga.com

FRV reaches financial close for two solar PV projects in Jordan totaling 133 M

Both solar PV projects will start construction in the region of Mafraq, a premium location with high solar irradiation
Fotowatio Renewable Ventures (FRV, Madrid, Spain), an independent solar power producer, on March 28th, 2017 announced the financial close of two of the four projects awarded in the second round of Jordan’s solar independent power producer (IPP) tender.
Both solar photovoltaic (PV) projects represent a combined investment of USD 180 million and will start construction in the region of Mafraq, a premium location with high solar irradiation in the north of the country.
Once construction is completed, the PV plants – called Mafraq I and Mafraq II – will generate 133.4 MW. This represents approximately 2% of Jordan’s total generation capacity, sufficient energy to supply more than 80,000 Jordanian households per year.

Solar power at 6.9 and 7.6 USD cents per kWh
Mafraq I and Mafraq II will supply solar power at 6.9 and 7.6 USD cents per kWh respectively, prices below the average cost of electricity in Jordan, FRV notes.
Mafraq I, the first FRV project in Jordan, received a financing package from the International Finance Corporation (IFC), the Dutch Development Bank (FMO) and the Europe Arab Bank, as part of the government’s program to promote renewable energies in the country.
The IFC, a member of the World Bank Group, acted as lead arranger and has syndicated part of the loan to the other two entities. Likewise, it has also promoted the financing of the Finnish development financier FinnFund and the IFC-Canada Climate Change Program.
Mafraq II has received financial support from the European Bank for Reconstruction and Development (EBRD) and the Society for the Promotion and Participation for Economic Cooperation (PROPARCO).
source: http://www.solarserver.com

Azure Power commissions 130 MW solar PV plant in Karnataka, India

Azure Power is now the largest operator of solar power plants in Karnataka, the company notes

Azure Power India Pvt. Ltd. (New Delhi), an independent power producer in the solar sector in India, on March 28th, 2017 announced that it has commissioned a 130 MW solar photovoltaic (PV) project in Chitradurga district, Karnataka under the Karnataka Solar Policy 2014-2021.
With this commissioning, Azure Power is now the largest operator of solar power plants in Karnataka, the company notes.
Azure Power has a contract to supply solar power for 25 years to Chamundeshwari Electricity Supply Company Limited, Hubli Electricity Supply Company Limited and Gulbarga Electricity Supply Company Limited at a tariff of INR 6.51 (approx. USD 10.0 cents) per kWh.
The project is divided in three sub-projects of 50MW, 40MW and 40MW each and is spread across approximately 668 acres of land. 
source: http://www.solarserver.com

Tuesday, 28 March 2017

EDF Renewable Services reports 10 GW under contract in North America

EDF RS will release TRUalytics for solar PV plants later this year
EDF Renewable Services (EDF RS, San Diego, CA, U.S.), a provider of renewable operations and maintenance (O&M) services in North America, on March 27th, 2017 introduced the new renewable asset intelligence platform TRUalytics 2.0 at the Operations and Maintenance (O&M) Summit hosted by EDF RS last week in San Antonio, Texas.


TRUalytics for solar PV plants to be released later this year
The TRUalytics platform delivers automated, actionable reports that make tracking renewable plant performance easier and more efficient. In addition to TRUalytics 1.0 for wind plants, which is now commercially available, attendees were shown an advanced preview of TRUalytics 2.0 for wind plants and TRUalytics for solar PV plants, which are both in development for release later this year.

13.5 GW of wind, solar PV, bioenergy and energy storage under contract globally
With 13.5 gigawatts of wind, solar photovoltaic (PV), bioenergy and energy storage under contract globally, EDF EN Services is a leading provider of O&M services, the company emphasizes.
Specifically in North America, the EDF RS team has 10 GW under contract employing over 500 people in 27 U.S. states, four Canadian provinces, and in both Mexico and Chile. In the past 5 years, EDF RS has doubled its megawatts under contract. 2017 will bring about additional solutions as the EDF RS team focuses on innovation. 
source: http://www.solarserver.com

Astronergy completes a 16.5 MW solar PV plant in Jeju Island, Korea

Astronergy reference solar PV plant
Astronergy (Hangzhou, China) on March 27th, 2017 announced the successful completion of a solar photovoltaic (PV) plant with an installed capacity of 16.5 MW located in Jeju Island, Republic of Korea.
Jeju Island is located 82km south of the Korean peninsula and is the warmest place with the best irradiation conditions in Republic of Korea.

According to Astronergy, the PV plant station, which occupies an area of 680,000m2, can generate 20,476 MWh of solar power per year and will obviously reduce the pressure of energy production in Jeju Island.
The total investment comes to KRW 29.7 billion, the company notes. As the investor of the project, Astronergy also undertook the engineering, procurement and construction as well as the maintenance of the solar power station. 
source: http://www.solarserver.com

Intersolar Europe sheds light on the potential of tenant solar power models


Wirsol tenant solar power project in Germany. Image: WIRSOL
Today, it is primarily homeowners who benefit from installing solar photovoltaic (PV) systems on their roofs. New models, however, intend for tenants to also share in what is known as the direct power concept and, in turn, take part in the urban energy transition.
This topic will therefore be under the spotlight at Intersolar Europe, the world’s leading exhibition for the solar industry and its partners, which will be held from May 31–June 2, 2017 in Munich.
Urban areas, in particular, are seen as having significant potential for PV expansion, potential that has remained unexploited thus far due to a lack of framework conditions and unanswered questions regarding the economic viability of tenant power. That said, the development of business models for tenant power projects is increasingly picking up speed.
According to a study commissioned by the German Federal Ministry for Economic Affairs and Energy (BMWi), 3.8 million apartments could be supplied with tenant power.
The German Solar Association (BSW-Solar) also estimates that three to four million apartments in multi-family dwellings and commercial multiple occupancy properties could be part of tenant power projects and, in the medium-term, produce some four billion kilowatt hours to be consumed on site.
The market potential of tenant power using PV systems is therefore huge, especially since it has remained largely unexploited. The Federal Ministry for Economic Affairs and Energy has recognized this and recently published a key issues paper to also lend political support to tenant power.
The tenant power subsidy aims at ensuring that both suppliers and consumers benefit from the model in the future. The ministry is currently working on draft legislation for a direct subsidy, which is due to be passed in this legislative period. A subsidy of between 2.2 and 3.8 euro cents per kilowatt hour should be possible according to this legislation.

From niche to norm – tenant power is big business
Tenant power refers to the decentralized electricity produced on the roof of a multi-family dwelling and consumed directly on site in rented and owner-occupied apartments. This is an appealing opportunity for tenants and landlords alike.
The model can not only help to relieve power grids and reduce costs associated with the energy transition, but also creates attractive business opportunities for the energy world, both new and old.
Various stakeholders are involved in the new business model, with diverse arrangements possible between municipal utilities, energy suppliers, tenants, landlords as well as real estate companies, whose collaboration must pay off. Those involved in previous projects have already successfully shown how they can help shape the energy market with in line with the energy transition.
The advantages offered by this model are clear: Tenants and property owners can enjoy low energy prices, property values are boosted in the long term and all stakeholders play an active role in helping to protect the environment. Municipal utilities and energy suppliers can also bolster their image and benefit from customer loyalty by providing balancing power when the energy produced on site does not meet demand.
Some German states already recognize the potential offered by the model, with Hessen, North Rhine-Westphalia and Thuringia having introduced incentive programs for the new business model.
 source:http://www.solarserver.com

New research highlights solar jobs expansion in local U.S. communities; Boom adds tens of billions of dollars to the U.S. economy annually


U.S. solar capacity additions and solar jobs 2010 -2017E
The Solar Foundation (Washington, DC, U.S.) on March 289th, 2017 released data on the number of solar jobs in every U.S. state, metropolitan area, county, and congressional district, revealing the impact of the nation’s historic solar jobs boom down to the local level.
This data can be found on an interactive Solar Jobs Map available at SolarStates.org.
The new Solar Jobs Map is part of the data collection effort for The Solar Foundation’s Solar Jobs Census 2016, the seventh annual report on solar employment in the United States.
In addition to the map, The Solar Foundation produced 50 state-level fact sheets and released an analysis of the economic impact of the solar labor market nationwide and in five states: California, Florida, New York, Ohio, and Texas.

260,077 solar workers in the U.S.; USD 62.5 billion in direct sales
The Solar Jobs Census 2016 found that employment increased by a historic 25 percent nationwide from 2015 to 2016, for a total of 260,077 solar workers.
This growth occurred across all regions of the country -- the number of solar jobs increased in 44 of the 50 states from 2015 to 2016. In 21 of the 50 states, solar jobs grew by 50 percent or more.
Metropolitan areas across the nation also saw historic solar jobs growth from 2015 to 2016, as the data in the Solar Jobs Map shows.

Solar energy boom adds tens of billions of dollars to the U.S. economy annually
“The solar industry is generating well-paying jobs everywhere from Detroit to Miami to Salt Lake City, and in states from Ohio to Texas to South Carolina,” said Andrea Luecke, President and Executive Director of The Solar Foundation.
“America’s solar energy boom adds tens of billions of dollars to our economy each year, all while providing an affordable, reliable, and local energy source.”
The Solar Foundation found that with 260,077 solar workers nationwide, the solar industry produced USD 62.5 billion in direct sales. The solar industry’s broader labor impact that includes direct, indirect, and induced jobs amounted to nearly 789,000 U.S. jobs.
These jobs paid more than USD 50 billion in salaries, wages, and benefits and produced USD 154 billion in total economic activity for the United States in 2016.
State-based economic impact data for California, Florida, New York, Ohio, and Texas are available via fact sheets at SolarStates.org.
 source:http://www.solarserver.com