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- W2016387902 abstract "A natural gas-based power plant design with onsite methanation of CO2 incorporated has been proposed for an option of mitigation technology of CO2 emissions. CO2 and NOx in the flue gas at 330°C are adsorbed/separated from the main constituent N2 gas by oxygen-deficient Ni(II) ferrite reactor and simultaneously decomposed to carbon and gaseous N2 at the same temperature. Then, carbon is hydrogenated to form CH4 at 330°C and recycled to the natural gas boiler along with the process heat. This system can be applied easily to existing power plants and will contribute to mitigation of CO2 emissions at a minimum additional cost and will be important when H2 gas would be supplied cheaply and sufficiently. A thermochemical water-splitting to form H2 gas using a tailor-made ceramics and degraded thermal energy at 300°C was described for an efficient utilization of fossil energy." @default.
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- W2016387902 title "Integrated carbon recycling system for mitigation of CO2 emissions utilizing degraded thermal energy" @default.
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- W2016387902 doi "https://doi.org/10.1016/0196-8904(95)00342-8" @default.
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