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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.

Grid 290
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ExxonMobil invests $15M in University of Texas at Austin Energy Institute; renewable energy, battery technologies and power grid modeling

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ExxonMobil will invest $15 million as a leadership member of the University of Texas at Austin Energy Institute to pursue technologies to help meet growing energy demand while reducing environmental impacts and the risk of climate change. This research will complement ExxonMobil’s recently announced partnership with FuelCell Energy, Inc.

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Arizona State University Professor’s Work to Stabilize the Grid Pays Off

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Whenever new technologies are introduced into the power grid, there’s always a chance they could disrupt the system, possibly even leading to blackouts. Finding ways to deal with the impact on the grid caused by incorporating renewable energy has been the focus of Vijay Vittal ’s research for nearly 20 years.

Arizona 89
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Japan team evaluates battery-assisted low-cost hydrogen production from solar energy

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Researchers from Japan’s NIMS (National Institute for Materials Science), the University of Tokyo and Hiroshima University have jointly conducted a techno-economic analysis for hydrogen production from photovoltaic power generation (PV) utilizing a battery-assisted electrolyzer.

Low Cost 403
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FREYR to collaborate with Honeywell on battery manufacturing, deploying energy storage solutions

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The battery cells produced through this project can be utilized by “behind-the-meter” or industrial locations, as well as “front-of-the-meter” locations such as large solar and wind renewable power generation sites. Battery storage will play a crucial role as organizations transition to clean power generation.

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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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(SoCalGas) announced that new research on power-to-gas technology shows the technique holds the ability to significantly increase the use of intermittent renewable energy. The finding came out of ongoing research conducted at the University of California, Irvine (UCI) and funded by SoCalGas.

Renewable 150
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Study IDs two compressed air energy storage methods, sites for the Northwest

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The PNNL-BPA study examined a different approach: using natural, porous rock reservoirs that are deep underground to store renewable energy. Interest in the technology has increased greatly in the past decade as utilities and others seek better ways to integrate renewable energy onto the power grid.