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首页> 外文期刊>Progress in Energy and Combustion Science >The current status of high temperature electrochemistry-based CO_2 transport membranes and reactors for direct CO_2 capture and conversion
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The current status of high temperature electrochemistry-based CO_2 transport membranes and reactors for direct CO_2 capture and conversion

机译:基于高温电化学的CO_2传输膜和反应器的当前状态用于直接CO_2捕获和转换

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摘要

The concept of direct CO2 capture and conversion has attracted significant interest from industries and academia in recent decades due to its potential to address the current grand challenge of global warming/climate change, rapid depletion of fossil fuels and realization of a future carbon neutral ecosystem. The incumbent benchmark technology for CO2 capture is the post-combustion flue-gas "amine washing", which is energy intensive and costly for large-scale commercial implementation. The CO2 conversion technologies, on the other hand, are still at their infancy with many technical challenges to overcome, but primarily being explored in laboratory-scale, low-temperature, solution-based and high-temperature, solid-oxide-based electrochemical cells with renewable electricity perceived as the energy input. In this article, we provide a comprehensive overview on an emergent class of high-temperature electrochemical CO2 transport membranes that can capture and convert CO2 into valuable chemicals in single catalytic reactor fashion. The review starts with the chemistry and transport theory of three basic types of membranes purposely designed for different CO2 feedstocks and downstream conversions. A range of key functional materials used in these membranes and their microstructural/electrochemical properties important to the CO2 transport are then thoroughly discussed in conjunction with the effects of surface modifications and operating conditions. Several types of combined CO2 capture and conversion catalytic reactors based on these membranes are also assessed with a focus on their working principles, system configurations and performance demonstrations. Finally, challenges and prospective of these electrochemical CO2 transport membranes and their associated conversion reactors are candidly discussed for future development. (C) 2020 Elsevier Ltd. All rights reserved.
机译:直接二氧化碳捕获和转换的概念引起了近几十年来引起行业和学术界的重要兴趣,因为它可能解决全球变暖/气候变化,化石燃料的快速消耗以及未来碳中性生态系统的迅速消耗。二氧化碳捕获的现任基准技术是燃烧后烟气“胺洗涤”,其用于大规模商业实施的能源密集型且昂贵。另一方面,二氧化碳转换技术仍然是克服许多技术挑战的阶段,而且在实验室规模,低温,基于溶液和高温,基于氧化物基电化学电池中探索的许多技术挑战可再生电力被认为是能量输入。在本文中,我们在高温电化学二氧化碳转运膜上提供全面的概述,可在单一催化反应器时尚中捕获和转化为有价值的化学品。审查开始于三种基本类型的膜的化学和运输理论,专为不同的二氧化碳原料和下游转换设计。然后,结合表面修饰和操作条件的影响,然后彻底讨论这些膜中使用的一系列关键官能材料及其微观结构/电化学性能。还通过关注其工作原理,系统配置和性能演示,评估了几种类型的基于这些膜的组合CO 2捕获和转化催化反应器。最后,对未来的发展讨论了这些电化学二氧化碳转运膜的挑战和前瞻性及其相关转化反应器。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Progress in Energy and Combustion Science》 |2021年第1期|100888.1-100888.30|共30页
  • 作者单位

    Chinese Acad Sci Dalian Inst Chem Phys State Key Lab Catalysis 457 Zhongshan Rd Dalian 116023 Peoples R China;

    Dalian Maritime Univ Coll Transportat Engn 1 Linghai Rd Dalian 116026 Peoples R China;

    Univ South Carolina Dept Mech Engn 541 Main St Columbia SC 29201 USA;

    Chinese Acad Sci Dalian Inst Chem Phys State Key Lab Catalysis 457 Zhongshan Rd Dalian 116023 Peoples R China|Chinese Acad Sci Dalian Natl Lab Clean Energy Dalian 116023 Peoples R China;

    Chinese Acad Sci Dalian Inst Chem Phys State Key Lab Catalysis 457 Zhongshan Rd Dalian 116023 Peoples R China;

  • 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

    Carbon capture; Membrane; Electrochemical; Catalytic; Reactor;

    机译:碳捕获;膜;电化学;催化;反应堆;

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