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Sustainable technologies for the reclamation of greenhouse gas CO2

机译:温室气体CO2回收的可持续技术

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The reclamation of greenhouse gas CO2 which brings the new opportunity in the area of Cl chemistry will become a new hot topic in the research frontier of green catalysis. The topics on the reclamation of CO2 discussed in the review are as follows: (i) hydrogenation to methanol, dimethyl ether, methane, alkene, formic acid, etc. (ii) reaction with hydrocarbons, including CO2 reforming of methane to syngas; hydrocarbons oxidation to alkene, aldehyde, and carboxylic acid; C-1-C-3 hydrocarbons and aromatics carboxylation. (iii) reaction with oxy-organics, such as methanol, propylene glycol and epoxide, to obtain valuable chemicals and materials. (iv) Reaction of CO2 with others. In this review, the performance of the catalysts involved was evaluated, and the underlying reaction mechanisms of CO2 activation by catalysis were analyzed. In addition, opportunities and prospects in the other utilization of carbon dioxide were introduced, such as conversion of carbon dioxide to biodiesel and biogas by biological microalgae technologies, progress of CO2 utilization as new hydrogen storage materials. Carbon dioxide has good chemical stability, and the activation of CO2 is believed to be the key of the whole utilization process. It is necessary to develop suitable catalysts with high activity and selectivity in the further work. The exploitation of homogeneous catalyst may greatly enhance the conversion and selectivity of the reaction. Multi-functional catalysts with desirable adsorption-catalysis activity also need to be developed in order to directly use carbon dioxide emitted from different practical sources. Moreover, the investigation of metal ligand coordination catalysis, photocatalysis and biological biomimetic catalysis is beneficial to both the utilization of new energy and the mitigation of greenhouse gas. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在Cl化学领域带来新机遇的温室气体CO 2的回收将成为绿色催化研究前沿的新热点。综述中讨论的有关CO2回收的主题如下:(i)加氢成甲醇,二甲醚,甲烷,烯烃,甲酸等。(ii)与烃反应,包括将CO2甲烷重整为合成气;烃氧化为烯烃,醛和羧酸; C-1-C-3烃与芳烃羧基化。 (iii)与含氧有机物(例如甲醇,丙二醇和环氧化物)反应,以获得有价值的化学品和材料。 (iv)二氧化碳与他人的反应。在这篇综述中,评估了所涉及的催化剂的性能,并分析了通过催化活化CO 2的潜在反应机理。此外,还介绍了其他利用二氧化碳的机会和前景,例如通过生物微藻技术将二氧化碳转化为生物柴油和沼气,利用二氧化碳作为新型储氢材料的进展。二氧化碳具有良好的化学稳定性,并且二氧化碳的活化被认为是整个利用过程的关键。在进一步的工作中必须开发具有高活性和选择性的合适的催化剂。均相催化剂的开发可以大大提高反应的转化率和选择性。为了直接使用从不同实际来源排放的二氧化碳,还需要开发具有所需吸附催化活性的多功能催化剂。此外,对金属配体配位催化,光催化和生物仿生催化的研究,对于新能源的利用和温室气体的减排均有利。 (C)2014 Elsevier Ltd.保留所有权利。

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