In other news, Toyota unveiled plans to roll out light-duty hydrogen fuel-cell trucks for the Japanese market next year and the UK has launched a contract for difference scheme for large scale hydrogen projects. Furthermore, Japanese scientists have designed a ruthenium complex with a nitrogen-containing organic compound to improve high-temperature proton conduction in fuel cells.
The European Investment Bank has agreed to provide €400 million ($406.5 million) in funds for the €2.8 billion project. Construction on the infrastructure should begin by the end of this year.
US startup New Use Energy Solutions has launched a new line of portable PV systems built with a module technology provided by Merlin Solar. The modules are assembled in the system via a custom vinyl tarp.
Researchers in Hungary have found that a high tilt angle may increase power forecast errors in a PV installation by up to 49%. They also ascertained that
undersizing the inverters by a sizing factor of 1.5 may reduce forecast errors by up to 25%.
Swiss scientists have built a 4T tandem perovskite/CIGS mini-panel with a geometric fill factor of over 93%. It combines a 10.8%-efficient mini perovskite module and a 15.1%-efficient CIGS device.
Canyon Solar has unveiled a prefabricated solar PV shade structure for commercial carport applications that it claims can be installed at least three times faster than traditional systems and outcompetes rooftop solar PV on a dollar-per-watt basis.
A new report from the Taiwanese market research company shows growth in the production of modules over 600 W and increased format size. Cells and wafers are getting larger as well.
The results of the study by Wells Fargo Foundation and NREL initiative showed that PV-coated windows can appreciably lower the solar heat gain coefficient.
Estonian startup Solarstone has developed two solar tiles with an efficiency of up to 19.5% and an operating temperature coefficient of -0.41% per C. It recently secured €10 million in funds to expand sales across Europe.
Spanish scientists developed a proton exchange membrane fuel cell with a bipolar plate based on a nature-inspired structure. This architecture, according to its creators, shows remarkable performance when operating at high relative humidity values of 90%.
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