USA: Solar America Corp. has completed initial testing of its revolutionary Solar Power Station.
The Solar Power Station connects to almost any type of commercially available solar panel and provides all necessary systems to convert the power of the sun into clean, environmentally friendly AC power that can be either utilized locally or sold back into the power grid. For those interested in being completely “off-grid,” an optional battery pack system easily connects to the Solar Power Station in order to provide hours of uninterrupted AC power.
The Solar Power Station, which is designed to work with existing products from major solar industry players including SunPower Corp., Suntech Power Holdings Co. Ltd and Enphase Energy Inc. is intended to bring a new level of solar product integration previously unavailable to the average homeowner.
"We believe the Solar Power Station is the must-have addition to any home solar power project," stated Robert Bludorn, chairman and CEO.
"The ease of installation and integration will help bring the solar power revolution home to the average American family. The coming months will be an exciting time for Solar America as we begin the process of bringing our American solar solutions to market.”
Tuesday, February 19, 2013
EMCORE solar panels power the Orbital-built LDCM satellite
USA: EMCORE Corp. announced that EMCORE solar panels are powering the Landsat Data Continuity Mission (LDCM) satellite that was successfully launched on February 11, 2013 from Vandenberg Air Force Base in California.
LDCM was designed, built and tested by Orbital Sciences Corp. for NASA to support the Landsat Earth observation program that began over four decades ago. The LDCM satellite continues a 40-year legacy of seven previous satellites that have collected vital data and images of the Earth's surface and environment.
NASA and the US Geological Survey (USGS) share responsibility for the LDCM program. NASA's Goddard Space Flight Center oversaw development of the flight systems including the LDCM spacecraft and the onboard instruments, and is responsible for mission operations, launch, and in-orbit checkout.
The USGS will operate the satellite and the Landsat ground network, image-processing and archive facilities. The data collected constitutes the longest ongoing record of the Earth's surface as seen from space and benefits many industries including agriculture, geology, forestry, regional planning, education, mapping, emergency response and disaster relief.
The knowledge gained contributes to research on climate, carbon cycle, water cycle, ecosystems, biogeochemistry and changes to Earth's surface, as well as our understanding of visible human effects on land surfaces.
LDCM joins Landsat 7, which is currently in orbit. Once the spacecraft completes in-orbit testing and is operated by the USGS, it will be renamed Landsat 8, reflecting its place in a distinguished legacy of highly-productive spacecraft. The satellite has two new spectral bands that will allow it to detect clouds on coastal zones. In addition, it will produce more than twice as many images per day than the Landsat 7.
LDCM is approximately 20 feet tall with a 9-foot diameter at its widest point. The solar array has four EMCORE solar panels that will extend 32 feet from the satellite when deployed and feature high-efficiency BTJ triple-junction solar cells delivering 3,750 watts of power at End-Of-Life (EOL).
LDCM was designed, built and tested by Orbital Sciences Corp. for NASA to support the Landsat Earth observation program that began over four decades ago. The LDCM satellite continues a 40-year legacy of seven previous satellites that have collected vital data and images of the Earth's surface and environment.
NASA and the US Geological Survey (USGS) share responsibility for the LDCM program. NASA's Goddard Space Flight Center oversaw development of the flight systems including the LDCM spacecraft and the onboard instruments, and is responsible for mission operations, launch, and in-orbit checkout.
The USGS will operate the satellite and the Landsat ground network, image-processing and archive facilities. The data collected constitutes the longest ongoing record of the Earth's surface as seen from space and benefits many industries including agriculture, geology, forestry, regional planning, education, mapping, emergency response and disaster relief.
The knowledge gained contributes to research on climate, carbon cycle, water cycle, ecosystems, biogeochemistry and changes to Earth's surface, as well as our understanding of visible human effects on land surfaces.
LDCM joins Landsat 7, which is currently in orbit. Once the spacecraft completes in-orbit testing and is operated by the USGS, it will be renamed Landsat 8, reflecting its place in a distinguished legacy of highly-productive spacecraft. The satellite has two new spectral bands that will allow it to detect clouds on coastal zones. In addition, it will produce more than twice as many images per day than the Landsat 7.
LDCM is approximately 20 feet tall with a 9-foot diameter at its widest point. The solar array has four EMCORE solar panels that will extend 32 feet from the satellite when deployed and feature high-efficiency BTJ triple-junction solar cells delivering 3,750 watts of power at End-Of-Life (EOL).
Impact of anti-dumping and/or countervailing measures on imports of solar modules, cells and wafers from China on EU
GERMANY: On September 6th 2012, the European Commission started an anti-dumping proceeding against China in order to investigate if the prices of Chinese manufactured crystalline photovoltaic wafers, cells and modules are dumped. On November 8th 2012, it also commenced a parallel anti-subsidy proceeding.
In its study, Prognos sets forth the effect that anti-dumping and / or countervailing duties would have on the demand for solar installations and, as a consequence, on employment and value added along the photovoltaic (“PV”) value chain in the EU. We have concluded that, if anti-dumping and / or countervailing duties were imposed, these would increase the market price of Chinese PV modules, cells and wafers.
This price increase would result in increased costs of installations. As a result, the viability of installing PV modules in many markets will be negatively impacted, in other words, the European PV market will shrink.
This reduction in market size will cause a commensurate decrease in installation, engineering and other related services. Moreover, upstream operators in the EU, such as production equipment producers or suppliers of raw materials and components, would suffer due to the decrease in demand from Chinese producers. EU producers of PV modules, cells and wafers might increase production and sales in certain areas, but any increased employment or value added would be significantly outweighed by the much larger decrease in employment and value added that would be suffered by upstream and downstream operators.
On the basis of the market size, the estimation of employment effects of anti-dumping and / or countervailing duties on the imports of solar panels from China leads to four main findings.
1. Employment in the solar sector in Europe decreases because the demand for PV products decreases which results in less value added, i.e. less solar installations and less demand of BOS components.
2. Employment and value added are also affected by the decrease of exports of raw materials and machinery from EU Member States to China.
3. Moreover, all other segments of the EU economy such as the supply of engineering or other services are suffering from the decrease in demand for solar products.
4. Employment and value added in the EU may be somewhat positively affected by a limited increase of production of solar products in the EU.
We use dynamic Input-Output-Tables (IO-Tables) to calculate the employment effects and additional value added reductions in the European economies as a whole. Our analysis is conducted in detail for the five major EU-countries named above. To cover the European market as a whole, the employment effect on the aggregate of the EU-27 is estimated in addition.
Impact on EU employment and value added
The anti-dumping and / or countervailing duties cause a reduction in demand, which is directly followed, on the one hand, by a shrinking demand for installations and services and thereby results in less value added in the crafts sector. On the other hand, the supply of intermediate inputs (including raw materials, components, production equipment) from Europe to China decrease. Additionally, the IO-Tables account for the (indirect) value added reductions in the European economies as a whole (i.e., the impact on other sectors of the EU economy that will suffer from spill-over effects of the decreased demand for solar installations).
In our calculations, in an optimistic view, only anti-dumping and / or countervailing duties of 35 percent and above, may have have some positive effect on the production of solar products in the EU as their relative position in the market improves. In case the EU producers gain some market share and augment their outputs, this will lead to some increase of employment and value added in the EU. However, this positive impact is dwarfed by the impact of the loss of demand for solar products and the spill-over effects this has for the EU solar value chain and the other branches of the EU economy linked thereto.
This study demonstrates that anti-dumping and / or countervailing duties would have a negative impact on employment in the EU with 115,600 (scenario 1) to 193,700 (scenario 3) jobs being lost within the first 12 months. However, in the third year, the total job losses would range between 175,500 (scenario 1) and 242,000 (scenario 3). As these job losses have to be interpreted as an average over the three year we conclude that 218,200 jobs are at risk in the EU Member States.
The job increases as a result of increased production of EU solar products represent at the very most 17-20 percent of the jobs lost along the PV value chain due to the imposition of anti-dumping duties.
Losses in value added in the EU would be also be very significant. These would range between € 4,740 million and € 7,500 million (scenario 1) and € 7,860 million and € 10,220 million (scenario 3) from the first to the third year of implementation of the duties. In total over three years € 18.4 billion would be lost in scenario 1 and € 27.2 billion in scenario 3.
If, as mentioned above, in an optimistic view EU producers can somewhat increase their production, the additional value added might be between 10 percent to not more than 20 percent of the loss in value added along the PV value chain.
Irrespective of the three scenarios which are given for illustration purposes, we conclude that, any imposition of a duty at whatever level will cause demand for solar installations to decrease thereby triggering important losses of jobs and value added.
In its study, Prognos sets forth the effect that anti-dumping and / or countervailing duties would have on the demand for solar installations and, as a consequence, on employment and value added along the photovoltaic (“PV”) value chain in the EU. We have concluded that, if anti-dumping and / or countervailing duties were imposed, these would increase the market price of Chinese PV modules, cells and wafers.
This price increase would result in increased costs of installations. As a result, the viability of installing PV modules in many markets will be negatively impacted, in other words, the European PV market will shrink.
This reduction in market size will cause a commensurate decrease in installation, engineering and other related services. Moreover, upstream operators in the EU, such as production equipment producers or suppliers of raw materials and components, would suffer due to the decrease in demand from Chinese producers. EU producers of PV modules, cells and wafers might increase production and sales in certain areas, but any increased employment or value added would be significantly outweighed by the much larger decrease in employment and value added that would be suffered by upstream and downstream operators.
On the basis of the market size, the estimation of employment effects of anti-dumping and / or countervailing duties on the imports of solar panels from China leads to four main findings.
1. Employment in the solar sector in Europe decreases because the demand for PV products decreases which results in less value added, i.e. less solar installations and less demand of BOS components.
2. Employment and value added are also affected by the decrease of exports of raw materials and machinery from EU Member States to China.
3. Moreover, all other segments of the EU economy such as the supply of engineering or other services are suffering from the decrease in demand for solar products.
4. Employment and value added in the EU may be somewhat positively affected by a limited increase of production of solar products in the EU.
We use dynamic Input-Output-Tables (IO-Tables) to calculate the employment effects and additional value added reductions in the European economies as a whole. Our analysis is conducted in detail for the five major EU-countries named above. To cover the European market as a whole, the employment effect on the aggregate of the EU-27 is estimated in addition.
Impact on EU employment and value added
The anti-dumping and / or countervailing duties cause a reduction in demand, which is directly followed, on the one hand, by a shrinking demand for installations and services and thereby results in less value added in the crafts sector. On the other hand, the supply of intermediate inputs (including raw materials, components, production equipment) from Europe to China decrease. Additionally, the IO-Tables account for the (indirect) value added reductions in the European economies as a whole (i.e., the impact on other sectors of the EU economy that will suffer from spill-over effects of the decreased demand for solar installations).
In our calculations, in an optimistic view, only anti-dumping and / or countervailing duties of 35 percent and above, may have have some positive effect on the production of solar products in the EU as their relative position in the market improves. In case the EU producers gain some market share and augment their outputs, this will lead to some increase of employment and value added in the EU. However, this positive impact is dwarfed by the impact of the loss of demand for solar products and the spill-over effects this has for the EU solar value chain and the other branches of the EU economy linked thereto.
This study demonstrates that anti-dumping and / or countervailing duties would have a negative impact on employment in the EU with 115,600 (scenario 1) to 193,700 (scenario 3) jobs being lost within the first 12 months. However, in the third year, the total job losses would range between 175,500 (scenario 1) and 242,000 (scenario 3). As these job losses have to be interpreted as an average over the three year we conclude that 218,200 jobs are at risk in the EU Member States.
The job increases as a result of increased production of EU solar products represent at the very most 17-20 percent of the jobs lost along the PV value chain due to the imposition of anti-dumping duties.
Losses in value added in the EU would be also be very significant. These would range between € 4,740 million and € 7,500 million (scenario 1) and € 7,860 million and € 10,220 million (scenario 3) from the first to the third year of implementation of the duties. In total over three years € 18.4 billion would be lost in scenario 1 and € 27.2 billion in scenario 3.
If, as mentioned above, in an optimistic view EU producers can somewhat increase their production, the additional value added might be between 10 percent to not more than 20 percent of the loss in value added along the PV value chain.
Irrespective of the three scenarios which are given for illustration purposes, we conclude that, any imposition of a duty at whatever level will cause demand for solar installations to decrease thereby triggering important losses of jobs and value added.
IdeemaSun energy realises 2 MW PV power plant in Romania
GERMANY & ROMANIA: IdeemaSun energy GmbH has successfully entered the Eastern European market following the connection of a 2 MW solar farm to the grid. As the EPC partner for a Romanian investor, the company completed the installation 20 km north of Bucharest.
The power plant was completed within the short construction period of only three weeks. Approximately 8,300 Hanwha SolarOne modules as well as 66 Power-One inverters were used in construction. The power plant near Bucharest will produce 2,700 MWh of solar power annually, which will be fed into energy supplier ENEL's grid.
"We see big potential for growth in the Romanian market, and our internationalisation strategy has gotten to a very good start with this quick and successful project," reports Meik Rekowski, MD of IdeemaSun energy. "Our project pipeline currently amounts to about 30 MW. In order to better meet customer needs on site, we will set up a new subsidiary in Bucharest within the next two months."
Financing in Romania is based on a quote model with emissions credits. The new power plant with its power of 2 megawatts is one of the largest PV projects in the country and will receive six CO2 credits for a period of 15 years. These credits can be used by energy suppliers or manufacturing companies which consume large amounts of electric current in order to meet the requirement of 14 percent electric current from renewable energies stipulated by the government.
The power plant was completed within the short construction period of only three weeks. Approximately 8,300 Hanwha SolarOne modules as well as 66 Power-One inverters were used in construction. The power plant near Bucharest will produce 2,700 MWh of solar power annually, which will be fed into energy supplier ENEL's grid.
"We see big potential for growth in the Romanian market, and our internationalisation strategy has gotten to a very good start with this quick and successful project," reports Meik Rekowski, MD of IdeemaSun energy. "Our project pipeline currently amounts to about 30 MW. In order to better meet customer needs on site, we will set up a new subsidiary in Bucharest within the next two months."
Financing in Romania is based on a quote model with emissions credits. The new power plant with its power of 2 megawatts is one of the largest PV projects in the country and will receive six CO2 credits for a period of 15 years. These credits can be used by energy suppliers or manufacturing companies which consume large amounts of electric current in order to meet the requirement of 14 percent electric current from renewable energies stipulated by the government.
Solar industry impressing investors with gains in 2013 after dismal 2012
USA: After struggling through most of 2012, the solar industry has started 2013 on an impressive run. Both the Market Vectors Solar Energy ETF (KWT) and the Guggenheim Solar ETF (TAN) have gained nearly 20 percent year-to-date. Research Driven Investing examines investing opportunities in the Solar Industry and provides equity research on LDK Solar Co. Ltd and JinkoSolar Holding Co. Ltd.
Solar companies received a boost last week after analysts from Citigroup's global solar sector research team initiated coverage on several companies in the industry. First Solar, Inc. and SunPower Corp. were the biggest gainers after receiving an initial "buy" rating from Citi, while Trina Solar Ltd. and Yingli Green Energy Holding Co. Ltd. benefited from a "neutral" rating.
"The upstream segment of the solar value chain is going through a permanent structural shift - mainly the commoditization of the panel manufacturing business," wrote Citigroup analyst Shahriar Pourreza.
Research Driven Investing releases regular market updates on the Solar Industry so investors can stay ahead of the crowd and make the best investment decisions to maximize their returns. Take a few minutes to register with us free at www.RDInvesting.com and get exclusive access to our numerous stock reports and industry newsletters.
LDK Solar is a leading vertically integrated manufacturer of photovoltaic (PV) products. The company manufactures polysilicon, mono and multicrystalline ingots, wafers, cells, modules, systems, power projects and solutions. The company reported its net loss shrunk to $136.9 million in the third quarter, compared to a net loss of $254.3 million in the previous quarter. Shares of LDK Solar have gained over 35 percent year-to-date.
JinkoSolar has built a vertically integrated solar product value chain with an integrated annual capacity of approximately 1.2 GW each for silicon wafers, solar cells and solar modules as of September30, 2012. The company is scheduled to release results for the fourth quarter of 2013 on Tuesday, March 5th. Shares of JinkoSolar have gained over 55 percent year-to-date.
Solar companies received a boost last week after analysts from Citigroup's global solar sector research team initiated coverage on several companies in the industry. First Solar, Inc. and SunPower Corp. were the biggest gainers after receiving an initial "buy" rating from Citi, while Trina Solar Ltd. and Yingli Green Energy Holding Co. Ltd. benefited from a "neutral" rating.
"The upstream segment of the solar value chain is going through a permanent structural shift - mainly the commoditization of the panel manufacturing business," wrote Citigroup analyst Shahriar Pourreza.
Research Driven Investing releases regular market updates on the Solar Industry so investors can stay ahead of the crowd and make the best investment decisions to maximize their returns. Take a few minutes to register with us free at www.RDInvesting.com and get exclusive access to our numerous stock reports and industry newsletters.
LDK Solar is a leading vertically integrated manufacturer of photovoltaic (PV) products. The company manufactures polysilicon, mono and multicrystalline ingots, wafers, cells, modules, systems, power projects and solutions. The company reported its net loss shrunk to $136.9 million in the third quarter, compared to a net loss of $254.3 million in the previous quarter. Shares of LDK Solar have gained over 35 percent year-to-date.
JinkoSolar has built a vertically integrated solar product value chain with an integrated annual capacity of approximately 1.2 GW each for silicon wafers, solar cells and solar modules as of September30, 2012. The company is scheduled to release results for the fourth quarter of 2013 on Tuesday, March 5th. Shares of JinkoSolar have gained over 55 percent year-to-date.
Solar Flow-Through applies for 126 solar contracts with Ontario Power Authority
CANADA: Solar Flow-Through Ltd Partners, a limited partnership with offices in Vancouver and Toronto, reports that it raised $2,857,000 in Q4 2012 through a private placement.
The funds will be used to develop and operate solar power generation projects in the Province of Ontario under the Ontario Power Authority's (OPA) Feed-in-Tariff (FIT) program. FIT contracts provide fixed purchase rates for solar power and are guaranteed by the OPA for 20 years.
Together with its solar developer partners, Solar Flow-Through submitted 126 project applications for OPA contracts in January 2013. The applications totaled approximately 37 MW DC. FIT contracts are awarded by the OPA based on the OPA's Priority Points system for each project application. In order to increase the number of Priority Points for its projects, Solar Flow-Through partnered with two First Nation bands as well as one of Ontario's largest community co-ops.
All projects submitted were commercial rooftops and were 600 kW DC or less ("Small FIT"), which is the limit set by the OPA for this round. The OPA has stated that its objective is to issue contracts by the end of March 2013. Solar Flow-Through intends to develop all projects submitted to the OPA that receive contracts using 20 percent equity and 80 percent debt.
In addition to the 126 projects submitted by its partners, Solar Flow-Through intends to obtain economic interest in other solar developers' Small FIT projects that receive contracts from the OPA in this round.
The OPA has stated that submissions for contracts for projects in excess of 600 kW DC ("Large FIT") will occur later in 2013. Contracts will be awarded for these projects based on Priority Points again. Solar Flow-Through intends to leverage its existing strategic partner network of solar developers, First Nation bands and community co-ops to apply for contracts in the Large FIT round later this year.
As a result of the success of its initial private placement in 2012, the number of project application submissions under Small FIT, and the opportunity to participate in the upcoming Large FIT program, Solar Flow-Through intends to conduct a second private placement in Q2 2013 for up to $10,000,000.
The funds will be used to develop and operate solar power generation projects in the Province of Ontario under the Ontario Power Authority's (OPA) Feed-in-Tariff (FIT) program. FIT contracts provide fixed purchase rates for solar power and are guaranteed by the OPA for 20 years.
Together with its solar developer partners, Solar Flow-Through submitted 126 project applications for OPA contracts in January 2013. The applications totaled approximately 37 MW DC. FIT contracts are awarded by the OPA based on the OPA's Priority Points system for each project application. In order to increase the number of Priority Points for its projects, Solar Flow-Through partnered with two First Nation bands as well as one of Ontario's largest community co-ops.
All projects submitted were commercial rooftops and were 600 kW DC or less ("Small FIT"), which is the limit set by the OPA for this round. The OPA has stated that its objective is to issue contracts by the end of March 2013. Solar Flow-Through intends to develop all projects submitted to the OPA that receive contracts using 20 percent equity and 80 percent debt.
In addition to the 126 projects submitted by its partners, Solar Flow-Through intends to obtain economic interest in other solar developers' Small FIT projects that receive contracts from the OPA in this round.
The OPA has stated that submissions for contracts for projects in excess of 600 kW DC ("Large FIT") will occur later in 2013. Contracts will be awarded for these projects based on Priority Points again. Solar Flow-Through intends to leverage its existing strategic partner network of solar developers, First Nation bands and community co-ops to apply for contracts in the Large FIT round later this year.
As a result of the success of its initial private placement in 2012, the number of project application submissions under Small FIT, and the opportunity to participate in the upcoming Large FIT program, Solar Flow-Through intends to conduct a second private placement in Q2 2013 for up to $10,000,000.
Monday, February 18, 2013
Diehl Controls transfers PV business to mutares Solar
GERMANY: Diehl Controls, subgroup of Diehl Group, Nuremberg, will sell the business unit photovoltaics with effect from 1April 2013 to mutares Solar GmbH, a 100 percent subsidiary of mutares AG, Munich. mutares AG will strategically develop the photovoltaics business located in Wangen.
All 82 employees will be taken over by the new owner. The manufacturing of the photovoltaics products remains with Diehl Controls. The business areas Appliance and Smart Home are not affected by this transaction. Diehl Controls refocuses with this transaction on its core competencies in the OEM business.
In 2005, Diehl Controls entered the pholtovoltaics business with the development and manufacturing of solar inverters as well as the related communication equipment branded Platinum. The brand Platinum reached Sales of EUR 50 million in 2012. Diehl Controls transfers its photovoltaics activities to a competent partner as part of a corporate refocusing program.
Strong partner
'Since mid-2012 we've been searching intensively for a partner, who can strategically develop the photovoltaics business and has a strong sales expertise', explains Dieter Neugebauer, member of the Corporate Division Board of Diehl Controls.
'After constructive negotiations, we are glad to have won mutares AG as a partner that is interested in a successful expansion of this business unit and that will further develop the photovoltaics activities at this location. Particularly the technologically outstanding products together with the highly qualified and motivated employees are very important for mutares. Dr. Axel Geuer, executive and founder of mutares AG, evaluates the potential of the photovoltaics business positively:
"'The brand Platinum is well established in the market, the new product range R3 has great potential and has received positive customer feedback shortly after its introduction to the market. This is an important basis to develop the business towards long term profitability. However, in this know-how driven business the employees remain the most important potential for growth. Their creative ideas and designs will be a competitive advantage in the market.'
The collaboration in the photovoltaics business is not the first joint project of mutares AG and Diehl Group. In 2009 mutares AG acquired Diehl Elastomertechnik GmbH; the now called Elastomer Solutions Group has been growing continuously over the past years. Latest figures show a sales increase of +35 percent vs. 2009; also the number of employee has grown significantly.
All 82 employees will be taken over by the new owner. The manufacturing of the photovoltaics products remains with Diehl Controls. The business areas Appliance and Smart Home are not affected by this transaction. Diehl Controls refocuses with this transaction on its core competencies in the OEM business.
In 2005, Diehl Controls entered the pholtovoltaics business with the development and manufacturing of solar inverters as well as the related communication equipment branded Platinum. The brand Platinum reached Sales of EUR 50 million in 2012. Diehl Controls transfers its photovoltaics activities to a competent partner as part of a corporate refocusing program.
Strong partner
'Since mid-2012 we've been searching intensively for a partner, who can strategically develop the photovoltaics business and has a strong sales expertise', explains Dieter Neugebauer, member of the Corporate Division Board of Diehl Controls.
'After constructive negotiations, we are glad to have won mutares AG as a partner that is interested in a successful expansion of this business unit and that will further develop the photovoltaics activities at this location. Particularly the technologically outstanding products together with the highly qualified and motivated employees are very important for mutares. Dr. Axel Geuer, executive and founder of mutares AG, evaluates the potential of the photovoltaics business positively:
"'The brand Platinum is well established in the market, the new product range R3 has great potential and has received positive customer feedback shortly after its introduction to the market. This is an important basis to develop the business towards long term profitability. However, in this know-how driven business the employees remain the most important potential for growth. Their creative ideas and designs will be a competitive advantage in the market.'
The collaboration in the photovoltaics business is not the first joint project of mutares AG and Diehl Group. In 2009 mutares AG acquired Diehl Elastomertechnik GmbH; the now called Elastomer Solutions Group has been growing continuously over the past years. Latest figures show a sales increase of +35 percent vs. 2009; also the number of employee has grown significantly.
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