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Lux Research: cost of electrofuels remains far from viable

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Production costs per barrel of oil equivalent. The cost of electrofuels—fuels produced by catalyst-based systems for light capture, water electrolysis, and catalytic conversion of carbon dioxide and hydrogen to liquid fuels—remains far away from viable, according to a new analysis by Lux Research. Source: Lux Research.

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Huge Tesla Megapack project breaks ground in Queensland

Teslarati

Another Tesla Megapack project in Australia has broken ground, set to replace a former coal plant as part of a sustainable energy hub in Queensland. Now, we’ve started converting it into one of the state’s first Clean Energy Hubs,” said Mick de Brenni, Queensland Minister for Energy and Clean Economy Jobs.

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DOE to award up to $6.7M to projects to convert captured CO2 to useful products, including fuels

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million in federal funding for cost-shared projects that will develop technologies that utilize CO 2 from coal-fired power plants to produce useful products. Research has shown that CO 2 can be converted to a variety of commodities, but because of the low energy state of CO 2 , the production costs would be prohibitive in many cases.

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DOE awards $7M to eight oxy-combustion coal technology projects; carbon capture, utilization and storage

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The US Department of Energy (DOE) selected eight projects to advance the development of transformational oxy-combustion technologies capable of high-efficiency, low-cost carbon dioxide capture from coal-fired power plants. DOE Investment: $1,000,000; Recipient Cost-Share: $391,000. University of Kentucky Research Foundation.

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Study finds that dry-feed gasification for coal-to-liquids is more efficient, lower-emitting and cheaper than slurry-feed; CCS cost-effective for reduction of CO2

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Comparison of coal consumption and CO 2 emissions for co-production and separate production of liquids and power. Conventional CTL plant gasifies coal to produce a syngas which is then converted in a Fischer-Tropsch reactor to products. The liquids output capacity of CTL plants is 50,000 barrels/day. Click to enlarge.

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PNNL, NETL and Chinese Academy Begin Cooperative Work on Coal Conversion, Emissions Capture and Carbon Storage

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Researchers from the Department of Energy’s Pacific Northwest National Laboratory (PNNL), the National Energy Technology Laboratory (NETL) and the Chinese Academy of Sciences (CAS) have formed the Clean Energy Partnership to accelerate the development and deployment of coal conversion, emissions capture and carbon storage technologies.

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Tunable high-yield catalytic approach converts pyrolysis oil to bio-hydrocarbon chemical feedstocks including fuel additives

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The zeolite catalyst then converts these hydrogenated products into light olefins and aromatic hydrocarbons in a yield as much as three times higher than that produced with the pure pyrolysis oil. Zeolite catalysts convert the biomass feedstocks into aromatics and olefins, which can fit easily into the existing infrastructure.

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