首页> 中文期刊> 《天然气化学(英文版)》 >Highly-efficient and autocatalytic reduction of NaHCO3 into formate by in situ hydrogen from water splitting with metal/metal oxide redox cycle

Highly-efficient and autocatalytic reduction of NaHCO3 into formate by in situ hydrogen from water splitting with metal/metal oxide redox cycle

         

摘要

The Earth's sustainable development is threatened by the increasing atmospheric CO2 level which can be attributed to the imbalance of CO2 due to the rapid consumption of fossil fuels caused by human activities and the slow absorption and conversion of CO2 by nature.One of the efficient methods for reconstructing the balance of CO2 should involve the rapid conversion of CO2 into fuels and chemicals.The hydrogenation of CO2 with gaseous hydrogen is currently considered to be the most commercially feasible synthetic route,however,the supply of safe and economical hydrogen sources poses a significant challenge to up-scaling application.Direct utilization of hydrogen from dissociation of water,the most abundant,cheap and clean hydrogen resource,for the reduction of CO2 would be one of the most promising approaches for CO2 utilization.This paper provides an overview of the current advances in research on highly efficient reduction of CO2 or NaHCO3,a representative compound of CO2,into formic acid/formate by in situ hydrogen from water dissociation with a metal/metal oxide redox cycle under mild hydrothermal conditions.

著录项

  • 来源
    《天然气化学(英文版)》 |2017年第5期|881-890|共10页
  • 作者单位

    School of Environmental Science and Engineering, State Key Lab of Metal Matrix Composites, Shanghai Jiao Tong University, 800 Dongchuan Road,Shanghai 200240, China;

    School of Environmental Science and Engineering, State Key Lab of Metal Matrix Composites, Shanghai Jiao Tong University, 800 Dongchuan Road,Shanghai 200240, China;

    School of Environmental Science and Engineering, State Key Lab of Metal Matrix Composites, Shanghai Jiao Tong University, 800 Dongchuan Road,Shanghai 200240, China;

    Research Institute for Chemical Process Technology, National Institute of Advanced Industrial Science and Technology(AIST), Nigatake 4-2-1, Miyagino-ku,Sendai 983-8551, Japan;

    School of Environmental Science and Engineering, State Key Lab of Metal Matrix Composites, Shanghai Jiao Tong University, 800 Dongchuan Road,Shanghai 200240, China;

    School of Environmental Science and Engineering, State Key Lab of Metal Matrix Composites, Shanghai Jiao Tong University, 800 Dongchuan Road,Shanghai 200240, China;

    School of Environmental Science and Engineering, State Key Lab of Metal Matrix Composites, Shanghai Jiao Tong University, 800 Dongchuan Road,Shanghai 200240, China;

    Graduate School of Environmental Studies, Tohoku University, Aoba-ku, Sendai 980-8579, Japan;

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  • 正文语种 eng
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