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Researchers report one-pot catalytic conversion of cellulose to methanol

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Methanol—a bio-based platform molecule that can be used directly as a fuel or fuel additive, and can also be used to produce bulk chemicals and drop-in fuels—is currently mainly produced from methane and coal via an indirect syngas route. wt% during catalytic conversion of cellulose at 250 °C and 1Mpa H 2 for 10 h.

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New catalyst opens door to CO2 capture in coal-to-liquids process

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World energy consumption projections expect coal to stay one of the world’s main energy sources in the coming decades, and a growing share of it will be used in CT—the conversion of coal to liquid fuels (CTL). By 2020, CTL is expected to account for 15% of the coal use in China. —Wang et al.

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CSIRO and partners to test Direct Injection Carbon Engine to reduce brown coal emissions by up to 50%

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DICE involves converting coal or biomass into a water-based slurry (called micronised refined carbon, MRC) that is directly injected into a large, specially adapted diesel engine. The process has very high conversion efficiency >97% (LCA); he fuel choice determines the carbon footprint. DICE development network.

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DOE awards $56.5M to 32 coal technology projects

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million in federal funding to 32 cost-shared research and development (R&D) projects for advanced coal technologies and research under six separate funding opportunity announcements (FOAs). The first funding opportunity award is for $10 million for ten projects under DE-FOA-0001992, Maximizing the Coal Value Chain.

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MIT study concludes that absent climate policy, coal-to-liquids could account for around a third of global liquid fuels by 2050

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A new assessment of the viability of coal-to-liquids (CTL) technology by researchers from the MIT Joint Program on the Science and Policy of Global Change (JPSPGC) found that without climate policy, CTL has the potential to account for around a third of global liquid fuels by 2050. Credit: Chen et al., 2011 Click to enlarge.

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DOE to award $28.35M for R&D on advanced processing of rare earth elements and critical minerals from coal-based resources

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Phase 1 applications for two areas of interest (AOI) are being sought at this time: AOI 1: Advanced Process Development for Production of Rare Earth Metals (REM) and Co-Production of Critical Minerals (CM) from Coal-Based and Alternate Resources.

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B9 Coal Assembles Consortium to Combine Underground Coal Gasification, Alkaline Fuel Cells and Carbon Capture and Storage

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UK-based B9 Coal, established in 2009 with the objective of developing projects combining Underground Coal Gasification (UCG) with Carbon Capture and Storage (CCS) and alkaline hydrogen fuel cells, is bringing together a consortium including WSP Group, AFC Energy and Linc Energy to develop such a project.

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