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

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The open-access paper on the study is published in the RSC journal Energy & Environmental Science. Along with hydrogen production and use, an energy transition will involve the synchronous upscaling of renewable electricity, batteries, and energy use technologies. Process flow diagram and construction phase boundary. Palmer et al.

Solar 459
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ICCT LCA study finds only battery and hydrogen fuel-cell EVs have potential to be very low-GHG passenger vehicle pathways

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In addition to its regional and temporal scope, this study is distinct from earlier LCA literature in four key aspects: This study considers the lifetime average carbon intensity of the fuel and electricity mixes, including biofuels and biogas. This is especially important for assessing the GHG emissions of PHEVs.

Hydrogen 418
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Baker Institute report: China has positioned itself as a gatekeeper to the energy transition; nickel case study

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The global push to convert the world to electric vehicles will cause supply chain complexities that could undermine the alternative energy transition in the United States, according to a new report from Rice University’s Baker Institute for Public Policy. The detailed report— Need Nickel?

China 416
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Independent study confirms cost savings & emissions advantages for heavy-duty trucks running ClearFlame’s engine technology

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ClearFlame Engine Technologies, a startup developing net-zero engine technology ( earlier post ), announced the publication of an independent study that finds ClearFlame’s technology could help fleet owners and other heavy-duty truck operators lower total costs while meeting sustainability goals sooner than currently available alternatives.

Emissions 370
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Commercially operated Wärtsilä engine runs on 25 vol% hydrogen blend

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The Wärtsilä 50SG is a four-stroke, spark-ignited gas engine generating set. Throughout the testing period, the Wärtsilä engine continued to supply power to the grid. The Electric Power Research Institute (EPRI) also participated in the tests and led the assessment of the engine’s performance during the testing.

Hydrogen 307
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Stanford study quantifies energetic costs of grid-scale energy storage over time; current batteries the worst performers; the need to improve cycle life by 3-10x

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A plot of ESOI for 7 potential grid-scale energy storage technologies. A new study by Charles J. Benson from Stanford University and Stanford’s Global Climate and Energy Project (GCEP) has quantified the energetic costs of 7 different grid-scale energy storage technologies over time. Credit: Barnhart and Benson, 2013.

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STEAG and thyssenkrupp planning joint green hydrogen project

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Essen-based energy company STEAG, Duisburg-based steel producer thyssenkrupp Steel and Dortmund-based thyssenkrupp Uhde Chlorine Engineers, specializing in electrolysis technology, are working on a joint feasibility study. The study will lay the basis for the subsequent project development. ©euroluftbild.de/Hans Hans Blossey.

Hydrogen 482