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TU Bergakademie Freiberg launches OTTO-R project with VW Group, Shell, OMV as partners; P2X for green gasoline

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million OTTO-R project for the production of gasoline from “green” methanol produced from CO 2 , water and renewable electricity. STF first converts natural gas-based synthesis gas to methanol in an isothermal reactor; the methanol is then transformed into high-octane gasoline via the intermediate methanol.

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Study shows gasoline pre-blending in ethanol production could cut energy requirements of separation by 17-40%

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Researchers at the University of Witwatersrand and the University of South Africa are proposing replacing the final purification steps of conventional bio-ethanol production with a simple gasoline-blending step. For bioethanol to be used as a fuel, this water must be eliminated.

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Oyster Wave Power Machine Generates Electricity Onshore; Sea Trials Begin This Autumn

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In contrast to many other wave power devices, Oyster uses hydraulic technology to transfer wave power to shore, where it is then converted into electricity. Oyster is fitted with an 18m-wide oscillator based on fundamental research at Queen’s University Belfast led by Professor Trevor Whittaker. The Oyster prototype. Click to enlarge.

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Researchers Propose New F-T Process for Synfuels; Less Work Required Could Result in 15% Reduction in CO2 Emissions Compared to Conventional Route

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Researchers from the University of the Witwatersrand (Wits), South Africa and Rutgers University are proposing new Fischer-Tropsch (F-T) reaction chemistry and process designs that they say could increase F-T process efficiency and reduce CO 2 emissions by 15% compared to the conventional process. Credit: Adapted by P.

Emissions 170
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Sasol and UCT researchers collaborate on the use of commercial iron catalysts to convert hydrogen and CO2 into green jet fuel and chemicals

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This development is a significant step towards the implementation of CO 2 hydrogenation technology in South Africa. For decades, Sasol has been using its Fischer-Tropsch (FT) technology to convert low-grade coal and gas into synthetic fuels and chemicals.

Convert 186
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SwRI, UTSA seek to combine reverse water-gas shift and Fischer Tropsch synthesis in single reactor to produce low-carbon hydrocarbon fuels

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Southwest Research Institute and The University of Texas at San Antonio (USTA) are collaborating to combine two catalytic processes into a single reactor, with the overall goal of recycling carbon from COCO 2 2 to produce low-cost hydrocarbon fuels.

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