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S. Korean researchers develop new catalytic pathway for direct conversion of CO2 to liquid hydrocarbon fuels

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A team led by Professor Jae Sung Lee at Ulsan National Institute of Science and Technology (UNIST), with colleagues at Pohang University of Science and Technology (POSTECH), have developed a new pathway for the direct conversion of CO 2 to liquid transportation fuels by reaction with renewable hydrogen produced by solar water splitting.

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Naysayer Alert – the hydrogen red herring

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Hence its supply would not be cheap, renewable nor sustainable in the long term. Every time there is a conversion of energy from one form to another there are efficiency losses – a concept known as ‘energy vector transition’.

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Researchers develop new non-catalytic process for converting lipids from sewage sludge to biodiesel; high yield and economic production

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Illustration of non-catalytic biodiesel conversion Credit: ACS, Kwon et al. conversion efficiency to FAME (fatty acid methyl ester) within 1 minute in a temperature range of 350–500 °C. Biodiesel conversion at various temperatures (a) and various volumetric ratios of MeOH to oil at 380 °C (b). Click to enlarge. Click to enlarge.

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