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Monash study on solar-driven electrolysis for green hydrogen production cautions on life-cycle emissions and EROI

Green Car Congress

Researchers at Monash University in Australia have conducted a lifecycle analysis and net energy analysis (LCA/NEA) of a hypothetical large-scale solar-electrolysis plant for the production of green hydrogen. solar generation exceeding electrolyzer capacity). Process flow diagram and construction phase boundary. Palmer et al.

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DOE to award $60M to advance clean hydrogen technologies and decarbonize grid

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To further decarbonize the grid, DOE is also launching a $20-million university research consortium to help states and Tribal communities successfully implement grid resilience programs and achieve decarbonization goals. ( DE-FOA-0002792 ). Materials-based H2 Storage Demonstrations.

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DOE awards $2.7M to U Florida, Synhelion to support production of hydrogen from concentrated solar

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Synhelion and its partner the University of Florida announced that their joint project has been awarded US$2.7 million from the US Department of Energy Solar Energy Technologies Office (SETO). Close-up of Synhelion’s proprietary solar receiver, which delivers high-temperature process heat beyond 1,500 °C.

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Study finds GWP of electrolyzed hydrogen to meet ORD’s fuel needs would be 2.5x that of fossil fuels with 2020 grid mix

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Phil Ansell, an aerospace engineer at the University of Illinois Urbana-Champaign, modeled the life cycle carbon dioxide equivalent emissions of liquid hydrogen production required to meet the fuel needs of Chicago’s O’Hare International Airport (ORD) with today’s electric grid mix.

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Sandia team develops GaN diode that is significant step toward protecting grid from EMPs

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Scientists from Sandia National Laboratories have developed a new gallium-nitride (GaN) diode that can shunt excess electricity within a few billionths of a second while operating at a record-breaking 6,400 volts—a significant step towards protecting the nation’s electric grid from an electromagnetic pulse (EMP). —Bob Kaplar.

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Two EVs at Plymouth State University delivered 1 MWh over 6 months with Fermata Energy bidirectional charging platform

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Two Nissan LEAF electric vehicles (EVs) at the Plymouth State University (PSU) provided 1 MWh of energy to the PSU’s ALLWell Center, offsetting some of the building’s electricity needs, over a six-month period. The university controls whether to discharge by parking the EVs and plugging them into the Fermata Energy bidirectional charger.

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Introducing the Pebble Flow: An all-electric travel trailer RV with propulsion assist, solar panels

Electrek

This ultra-aerodynamic trailer features active propulsion assist, universal charging, and solar panels on its roof, enabling extended stays off the electrical grid. more… The post Introducing the Pebble Flow: An all-electric travel trailer RV with propulsion assist, solar panels appeared first on Electrek. Check it out.

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