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Fukushima Hydrogen Energy Research Field (FH2R) completed in Japan; aiming for low-cost green hydrogen production; P2G

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Japan’s New Energy and Industrial Technology Development Organization (NEDO), Toshiba Energy Systems & Solutions Corporation (Toshiba ESS), Tohoku Electric Power Co., The FH2R can produce as much as 1,200 Nm 3 of hydrogen per hour (rated power operation) using renewable energy.

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Gravity Batteries, Green Hydrogen, and a Thorium Reactor for China

Cars That Think

2021 was a big year for energy-related news, what with the ongoing hunt for new forms of energy storage and cleaner if not carbon-free electricity and events and research that spotlighted the weak links in our power grid. No battery is perfect, however, so engineers keep pushing for new and improved ways to store those electrons.

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OptiFuel to repower Argentina’s 400 freight locomotive fleet from diesel-power to CNG and/or RNG

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It is OptiFuel’s position that RNG and green hydrogen are the most feasible zero-emission solutions for switcher locomotives, with RNG leading from a cost and accessibility perspective. times the volume to store energy versus diesel, and hydrogen requires 11 times the volume, while lithium batteries require 50 to 75 times.

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Toyota & Honda partner on fuel cell bus mobile power generation system to supply electricity in disasters

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will create a mobile power generation/output system—Moving e—that comprises a fuel cell bus that can carry a large amount of hydrogen; portable external power output devices; and portable batteries. The Moving e mobile power generation/output system will comprise: Toyota’s CHARGING STATION fuel cell bus.

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Wind-to-Hydrogen Tech Goes to Sea

Cars That Think

They are highly automated production islands that directly convert wind energy to hydrogen, with a few of them processing the gas into fuels and other goods. In these clusters, the wind turbines are integrated with electrolyzers that generate hydrogen from desalinated seawater. US $5 PER KILOGRAM Cost of green hydrogen today.

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Audi unveils e-gas project: synthetic methane from the methanation of green hydrogen; series production of CNG models in 2013 powered by e-gas

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Starting in 2013, Audi will begin series production of TCNG models whose engines—derived from TFSI units—will be powered by e-gas: synthetic methane produced via the methanation of hydrogen produced by electrolysis using renewable electricity. achieving a neutral CO 2 balance across the entire mobility chain.

Audi 370
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SoCalGas & UC Irvine show power-to-gas technology able to boost use of intermittent renewable energy significantly

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With power-to-gas technology, you don’t need to stop renewable power generation when demand is low. Instead, the excess electricity can be used to make hydrogen that can be integrated into existing natural gas pipeline infrastructure and stored for later use.

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