Solar Refinery: Difference between revisions
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Liquid hydrocarbon fuels from the sun and air. | Liquid hydrocarbon fuels from the sun and air. Point: with liquid fuels being 20-60 more energy dense, it is likely that liquid hydrocarbon fuels will be with us for ever. Unless we go to hydrogen. | ||
At 2:02 in the video, there is an excellent animation of the basic chemistry of Cerium Oxide. Cerium is more electropositive than the co2 and h20 it reacts with - so the oxygen is stripped from the reactants to make carbon monoxide and hydrogen. Which can then be turned to fuels. | At 2:02 in the video, there is an excellent animation of the basic chemistry of Cerium Oxide. Cerium is more electropositive than the co2 and h20 it reacts with - so the oxygen is stripped from the reactants to make carbon monoxide and hydrogen. Which can then be turned to fuels. | ||
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Revision as of 17:59, 8 August 2019
Liquid hydrocarbon fuels from the sun and air. Point: with liquid fuels being 20-60 more energy dense, it is likely that liquid hydrocarbon fuels will be with us for ever. Unless we go to hydrogen.
At 2:02 in the video, there is an excellent animation of the basic chemistry of Cerium Oxide. Cerium is more electropositive than the co2 and h20 it reacts with - so the oxygen is stripped from the reactants to make carbon monoxide and hydrogen. Which can then be turned to fuels.
eyJpIjoiTnpRMlltVTNZakJoWTJWaiIsInQiOiJaVnljTTRDa3ZCMlVzeVwvSVplU281Z1pcL2t6eTdzXC9vNUNheE1rdjZyaVUyUVlOSnBiaGhadjJUVElYbmVFbDFWRjUwNFNGOFwvUnk2Sk5wMmdLbDdudXJPNnR3TUtvMk50ZHRHK3lKOWJkV3hCSERVeCtNdU9LSStMTFBmUnNuZGkifQ