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CPKC orders 3.6MW of Ballard fuel cells for expansion of hydrogen locomotive program

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MW total) are planned for delivery in 2023 and will support the expansion of CPKC’s Hydrogen Locomotive Program. These locomotives have been undergoing field testing in 2022 and early 2023 with successful tests, proving the capabilities of Ballard’s hydrogen fuel cell technology in locomotive applications.

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SoCalGas, partners developing technology to make carbon fiber during hydrogen production from methane; reducing the cost of H2 and cutting GHG

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(SoCalGas) is partnering with a development team to advance a new process that converts natural gas to hydrogen, carbon fiber, and carbon nanotubes. In addition, this technology will virtually eliminate CO 2 emissions from the methane-to-hydrogen process. The CRADA will fund PNNL and WVU to develop the technology.

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Virginia Tech team engineers optimized synthetic enzymatic pathway for high-yield production of H2 directly from biomass

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A team of Virginia Tech researchers and colleagues has demonstrated the complete conversion of glucose and xylose from pretreated plant biomass to H 2 and CO 2 based on an in vitro synthetic enzymatic pathway crafted from more than 10 purified enzymes. Pathway depicting the enzymatic conversion of biomass to hydrogen and CO 2.

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Enzymatic Process Converts Cellulosic Materials and Water into Hydrogen at Low Temperature; Close to Theoretical Yield of H2 From Glucose

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Hydrogen production from cellodextrin and water by a synthetic enzymatic pathway. Researchers at Virginia Tech, Oak Ridge National Laboratory (ORNL), and the University of Georgia have produced hydrogen gas in a spontaneous, “one-pot” process using an enzyme cocktail, cellulosic materials from non-food sources, and water.

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Virginia Tech professor proposes simple biomass-to-wheel efficiency analysis to inform decisions on biomass/biofuel/powertrain combinations; the advantage of sugar fuel cell vehicles

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However, notes Virginia Tech Prof. fertilizers, pesticides, farm machinery), energy conversion coefficients among different energy forms and sources, system boundaries, and so on. Numerous life cycle analyses (LCAs) have attempted—and continue to—gauge the potential sustainability and impacts of these possible pairings.

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WVU, NETL partner with Pitt, Shell to develop process to transform stranded natural gas into marketable products

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Researchers at West Virginia University will lead a team that will investigate ways to convert stranded gas resources into value-added liquid products that could reduce the United States’ demand for crude oil by up to 20%. He noted that microwave upgrading of fossil fuels has been an active research area at NETL.

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DOE awards $34M to 19 projects to advance clean hydrogen

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The US Department of Energy (DOE) awarded nearly $34 million to 19 industry- and university-led research projects that will advance technology solutions to make clean hydrogen a more available and affordable fuel for electricity generation, industrial decarbonization, and transportation. Earlier post.)

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