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Researchers develop large-scale, economical method to extract hydrogen from oil sands and oil fields

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Canadian researchers have developed a large-scale economical method to extract hydrogen from oil sands (natural bitumen) and oil fields. This can be used to power hydrogen-powered vehicles, which are already marketed in some countries, as well as to generate electricity.

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Argonne study finds BEVs can have lowest scheduled maintenance costs, but highest cost of driving

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Researchers at Argonne National Laboratory, with colleagues from Lawrence Berkeley, Oak Ridge, and National Renewable Energy labs, and the University of Tennessee, have published a comprehensive analysis of the total cost of ownership (TCO) for 12 sizes of vehicles ranging from compact sedans up to Class 8 tractors with sleeper cabs.

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SOFC-maker Bloom Energy announces initial strategy for hydrogen market entry; partnership with SK

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Solid-oxide-fuel-cell manufacturer Bloom Energy is entering the commercial hydrogen market by introducing hydrogen-powered fuel cells and electrolyzers that produce renewable hydrogen. Bloom’s technologies can be critical in enabling South Korea to execute on its government-mandated Hydrogen Economy Roadmap.

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Big Oil Betting On Electric Vehicles

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Oil demand for transportation fuel see its “ demand will flatten out ,” after 2030, Couse said. Colin McKerracher, head of advanced transport analysis at Bloomberg New Energy Finance, sees Couse’s forecast as the highest EV sales margin yet to be forecasted by a major company in the oil sector. Maybe even decline. ”.

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UK to invest £200M in fleet of zero-emission heavy-duty trucks

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The 3-year comparative programme will begin later this year to help decarbonize the UK’s freight industry with initial competitions for battery-electric and hydrogen-fuel-cell technology launching shortly. This will begin with demonstrations of battery electric and hydrogen fuel cell heavy-duty trucks.

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US DRIVE releases comprehensive cradle-to-grave analysis of light-duty vehicle GHGs, cost of driving and cost of avoided GHGs

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The study provides a comprehensive lifecycle analysis (LCA), or cradle-to-grave (C2G) analysis, of the cost and greenhouse gas (GHG) emissions of a variety of vehicle-fuel pathways, as well as the levelized cost of driving (LCD) and cost of avoided GHG emissions. Levelized cost of driving (LCD). no scenario analysis.

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Porsche, Siemens Energy and partners advance climate-neutral eFuels development; Haru Oni pilot in Chile

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Electrolyzers will use wind power to produce green hydrogen. In a second step, plans call for filtering CO 2 out of the air and then combining it with the green hydrogen to form synthetic methanol. Part of the e-Methanol will be converted to e-Gasoline (130,000 liters per year). —Christian Bruch, CEO Siemens Energy.

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