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Oxford Catalysts in $5.9M Fischer-Tropsch Demonstration and Commercialization Agreement; Focus on Biomass- and Waste-to-Liquids Applications

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SGCE) for the demonstration and commercialization of the Group’s Fischer-Tropsch (FT) technology, primarily for Biomass-to-Liquids (BTL) and Waste-to-Liquids (WTL) applications. Under the terms of the JDA, SGCE will have lead responsibility for commercializing the Group’s FT technology for BTL, WTL and Coal-to-Liquids applications.

Waste 262
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Oxford Catalysts raises £21M to accelerate commercialization of synthetic fuels technology

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As a result, microchannel Fischer Tropsch (FT) processes can operate economically when producing just 500 barrels per day of oil equivalent (boe) from a wide variety of carbon-containing wastes, while achieving greater productivities than for conventional FT reactors ( earlier post ).

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International study identifies 14 key measures to reduce methane and black carbon emissions; reduction in projected global mean warming of ~0.5 °C by 2050

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Methane is both a potent greenhouse gas and an important precursor to ground-level ozone. Ozone, a key component of smog and also a greenhouse gas, damages crops and human health. In addition, they darken ice and snow, reducing their reflectivity and hastening global warming. —Shindell et al.

Carbon 257