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Recent advances in CO_2 hydrogenation to value-added products - Current challenges and future directions

机译:Co_2氢化对增值产品的最新进展 - 当前挑战和未来方向

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摘要

Climate change, global warming, fossil fuel depletion and rising fuel prices have created great incentives to seek alternative fuel production technologies. CO2 transformation to value-added products using renewable H2 has proven to be an emerging solution to enable this goal. In this regard, three different promising processes, namely methane, methanol and hydrocarbon synthesis via CO2 hydrogenation are thoroughly discussed. In addition, the influential factors affecting process efficiencies such as catalyst design and mechanistic insight, operating conditions as well as reactor types are investigated, with key pathways that dictate catalyst activity and selectivity of the most promising materials described. Furthermore, a brief overview of the reactor configuration and its crucial role in the improving process viability is analyzed. Accordingly, fixed-bed, fluidized-bed, annular and spherical reactors along with H2O/H2 perm-selective membrane reactors are disscussed for hydrocarbon production. In addition, different reactor configurations are compared to assess the best one that is adjustable depending on the reaction mechanism. Consequently, a corrugated-wall dual-type membrane reactor is proposed as an emerging alternative for CO2 hydrogenation to value-added products.
机译:气候变化,全球变暖,化石燃料耗尽和燃料价格上涨创造了备受促销燃料生产技术的伟大激励措施。使用可再生H2的CO2转换为使用可再生H2的增值产品已被证明是一种新兴的解决方案,以实现这一目标。在这方面,彻彻讨论了三种不同的有希望的方法,即甲烷,甲醇和烃基合成的CO 2氢化。此外,研究了影响催化剂设计和机械洞察,操作条件以及反应器类型等过程效率的影响因素,其具有指示催化剂活性的关键途径和最有前途的材料的选择性。此外,分析了反应器配置的简要概述及其在改善过程生存能力中的其至关重要的作用。因此,固定床,流化床,环形和球面反应器以及H 2 O / H 2渗透剂选择性膜反应器被拆分用于烃生产。此外,比较不同的反应器配置,以评估根据反应机制可调的最佳原料。因此,提出了一种波纹壁双型膜反应器作为对增值产物的CO 2氢化的新出现替代方案。

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  • 来源
    《Progress in Energy and Combustion Science》 |2021年第7期|100905.1-100905.64|共64页
  • 作者单位

    Institute of Energy and Process Systems Engineering Technische Universität Braunschweig Franz-Liszt-Str. 35 38106 Braunschweig Germany;

    Department of Energy Engineering Faculty of Mechanical Engineering Budapest University of Technology and Economics Budapest Hungary;

    School of Chemical Engineering and Advanced Materials University of Adelaide Adelaide 5005 Australia;

    Centre for Applied Materials and Industrial Chemistry (CAMIC) School of Science RMIT University Melbourne VIC 3000 Australia;

    Institute of Chemical Reaction Engineering Hamburg University of Technology Hamburg D-21073 Germany;

    Instituto de Tecnología Química Universitat Politècnica de València-Consejo Superior de Investigaciones Científicas (UPV-CSIC) Av. de los Naranjos s/n 46022 Valencia Spain;

    Department of Chemistry University of Connecticut 55 North Eagleville Road Storrs CT 06269-3060 United States;

    Laboratory of Separation and Reaction Engineering – Laboratory of Catalysis and Materials (LSRE-LCM) Associate Laboratory LSRE-LCM Faculdade de Engenharia Universidade do Porto Rua Dr. Roberto Frias 4200-465 Porto Portugal;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Catalysts development; CO2 hydrogenation; Mechanism studies; Membrane reactor; Operating conditions; Reactor configuration; Value-added products;

    机译:催化剂发育;CO2氢化;机制研究;膜反应器;操作条件;反应器配置;增值产品;
  • 入库时间 2022-08-19 03:08:49

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