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Nissan to launch the “LEAF to Home” V2H power supply system with Nichicon “EV Power Station” in June

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The Nichicon EV Power Station unit enables electricity stored in the lithium-ion batteries onboard a Nissan LEAF to be sent to an ordinary home by connecting the car to the home’s electricity distribution panel with a connector linked to the LEAF’s quick charging port. Conversion efficiency: 90% or more (at rated output).

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Ideal Power, developer of new indirect power conversion technology, prices IPO

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the developer of a new approach to electric power conversion ( earlier post ), has priced its initial public offering (IPO) of 3,000,000 shares of common stock at an offering price of $5.00 has developed a novel, patented power conversion technology it calls Power Packet Switching Architecture (PPSA). Ideal Power Inc., Ideal Power Inc.

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HYBRIT produces hydrogen-reduced sponge iron on pilot scale

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The technological breakthrough within the HYBRIT ( earlier post ) initiative cuts about 90% of the emissions in connection with steel production and is a decisive step on the road to fossil-free steel. With SSAB’s conversion, we will reduce carbon dioxide emissions by 10 percent in Sweden and 7 percent in Finland.

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Israeli team develops decoupled PEC water-splitting system for centralized production of H2

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The highest reported solar to hydrogen (STH) conversion efficiency for such a system composed of polymer electrolyte membrane (PEM) electrolyzers powered by an InGaP/GaAs/GaInNAsSb triple-junction solar cell was 30%, tested over 48 h. Landman et al.

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Georgia Tech team develops conversion-type iron-fluoride Li battery cathode with solid polymer electrolyte

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Researchers at Georgia Tech have developed a promising new conversion-type cathode and electrolyte system that replaces expensive metals and traditional liquid electrolyte with lower cost transition metal fluorides and a solid polymer electrolyte. A paper on their work is published in the journal Nature Materials.

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New stable Fe3O4/C composite material for conversion electrode in solid-state Li-ion batteries

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Researchers in Europe, with colleagues from Samsung R&D Institute in Japan, have developed a highly stable Fe 3 O 4 /C composite for use as a conversion electrode in all-solid-state Li-ion batteries. In addition, recently a new chemistry has surfaced, allowing to store more Li + by the so-called conversion mechanism.

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Researchers develop wave-energy-driven CO2 reduction system for production of carbon-based liquid fuels

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Moreover, it features a higher wave energy conversion efficiency and power output as compared to previous TENG designs and is able to float on the water’s surface, which minimizes both the environmental impact and simplifies operation and these features are essential for the practical use of TENGs on ocean wave energy harvesting application.

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