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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. Or is it better to liquefy it on site at the airport?

Grid 290
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Naturgy and Enagás studying production of green hydrogen from 350 MW of wind power in Asturias

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Naturgy and Enagás are studying the production of green hydrogen from a 250MW floating offshore wind farm and another 100MW onshore wind farm in Asturias (Spain) for industrial consumption in this Autonomous Region. The electrolyzer will be supplied by Hydrogenics, which is part of the Cummins Group.

Wind 315
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Mercedes-Benz to source CO2-free electricity in Germany from solar, wind and hydropower from 2022 onwards

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The CO 2 -free electricity from solar, wind and hydro sources is generated in various power plants, most of which are located in Germany. These include a part of a solar park with the size of 60 football pitches near Ingolstadt and 24 wind farms with a total of more than 200 wind turbines.

Wind 418
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New long-duration, extended capacity Na-Al battery design for grid storage

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The new battery design could help ease integration of renewable energy into the electrical grid at lower cost, using Earth-abundant metals, according to a study just published in Energy Storage Materials. Compared with a seasonal battery, this new design is especially adept at short- to medium-term grid energy storage over 12 to 24 hours.

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Wind-to-Hydrogen Tech Goes to Sea

Cars That Think

Wind and solar parks produce a large portion of their energy. Then, as now, wind farms are operating off the world’s coasts—but not all of these offshore sites are connected to the mainland via underwater power cables. Some of the wind farms instead sit in clusters more than 100 kilometers out at sea.

Wind 93
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thyssenkrupp’s water electrolysis technology qualified as primary control reserve in Germany; hydrogen production for the electricity market

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thyssenkrupp’s proprietary water electrolysis technology for the production of. In the future thyssenkrupp’s electrolysis plants will be able to act as large-scale buffers to stabilize the power grid and compensate fluctuations quickly and flexibly. In the following year the production of ammonia succeeded. thyssenkrupp and E.ON

Water 337
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BMW Group plants stepping up activities in balancing-power market to contribute to grid stability

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Together with other highly-flexible controllable systems in the BMW Group production network, they will contribute to the stability of the public grid outside of the plant. Electricity generation from variable renewable electricity sources (VRE) such as wind and solar power has grown rapidly and is expected to continue to do so.

Grid 191