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Study finds total greenhouse gas footprint of blue hydrogen “quite high” due to fugitive methane

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“Blue” hydrogen—produced through steam methane reforming (SMR) of natural gas or coal gasification, but with CO 2 capture and storage—is being described as having low or zero carbon emissions. Our analysis assumes that captured carbon dioxide can be stored indefinitely, an optimistic and unproven assumption.

Hydrogen 414
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Rystad Energy expects strong growth in hydrogen pipelines through 2035

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Independent research and business intelligence company Rystad Energy estimates that there are about 91 planned hydrogen pipeline projects in the world, totaling 30,300 kilometers and due to come online by around 2035. New hydrogen infrastructure is starting to materialize as the world seeks to accelerate its path to net zero.

Hydrogen 531
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Purem by Eberspaecher to start using CO2-reduced stainless steel in commercial vehicle exhaust systems

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This sustainable stainless steel has an up to 92% lower carbon footprint compared to the industry average of 6.1 Towards zero emissions, stainless steel plays a major role in our current products as well as future innovations for new drive technologies like the hydrogen engine. tons of CO 2 per ton of stainless steel.

Exhaust 195
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TECO 2030 aims to build hydrogen fuel cell gigafactory in Norway

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TECO 2030 ( earlier post ) is aiming to establish Norway’s first large-scale production of fuel cells, optimized to be the heart of hydrogen-powered ships and other heavy-duty installations. This will be the first volume production of fuel cells in Norway and a hub for the Norwegian hydrogen industry. gigawatt, per year.

Norway 468
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Tenneco Powertrain adds hydrogen to its engine testing capabilities

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Tenneco has established new test facilities for hydrogen-powered internal combustion engines at its Powertrain test centers in Burscheid, Germany, and Ann Arbor, Michigan. Preparation of an H 2 ICE test cell. We support a pragmatic approach of complementary technologies that provide solutions for different transportation sectors.

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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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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. of hydrogen is currently produced via water electrolysis and only a fraction of this production is powered by renewable energy.

Solar 459
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Hydrogen Opposed Piston Engine Working Group formed

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Several organizations, encompassing companies, research labs, and academia, have formed the Hydrogen Opposed Piston Engine Working Group. The Working Group consists of members undertaking research and development in the field of hydrogen combustion in an opposed-piston engine. If hydrogen combustion is sufficiently lean—i.e.,

Hydrogen 353