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Renewable energy storage via efficient reversible hydrogenation of piperidine captured CO2

机译:通过高效可逆氢化哌啶捕获CO2的可再生能量储存

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摘要

The storage of renewable energy is the major hurdle during the transition of fossil resources to renewables. A possible solution is to convert renewable electricity to chemical energy carriers such as hydrogen for storage. Herein, a highly efficient formate-piperidine-adduct (FPA) based hydrogen storage system was developed. This system has shown rapid reaction kinetics of both hydrogenation of piperidine-captured CO2 and dehydrogenation of the FPA over a carbon-supported palladium nano-catalyst under mild operating conditions. Moreover, the FPA solution based hydrogen storage system is advantageous owing to the generation of high-purity hydrogen, which is free of carbon monoxide and ammonia. In situ ATR-FTIR characterization was performed in order to provide insight into the reaction mechanisms involved. By integrating this breakthrough hydrogen storage system with renewable hydrogen and polymer electrolyte membrane fuel cells (PEMFC), in-demand cost-effective rechargeable hydrogen batteries could be realized for renewable energy storage.
机译:可再生能源的存储是化石资源转换为可再生能源期间的主要障碍。可能的解决方案是将可再生电力转换为化学能量载体,例如氢气储存。这里,开发了一种高效的甲酸哌啶 - 加合物(FPA)基储氢系统。该系统在温和的操作条件下,在碳负载钯纳米催化剂上显示了哌啶捕获的CO2的氢化和FPA脱氢的快速反应动力学。此外,由于高纯度氢的产生,基于FPA溶液的储氢系统是有利的,其不含一氧化碳和氨。在原位ATR-FTIR表征中进行,以便提供参与反应机制的洞察力。通过将该突破性储氢系统与可再生氢气和聚合物电解质膜燃料电池(PEMFC)集成,可以实现可再生能量储存的需求成本效益的可充电氢电池。

著录项

  • 来源
    《Green chemistry》 |2018年第18期|共7页
  • 作者单位

    Washington State Univ Gene &

    Linda Voiland Sch Chem Engn &

    Bioengn Pullman WA 99164 USA;

    Washington State Univ Gene &

    Linda Voiland Sch Chem Engn &

    Bioengn Pullman WA 99164 USA;

    Washington State Univ Gene &

    Linda Voiland Sch Chem Engn &

    Bioengn Pullman WA 99164 USA;

    Washington State Univ Gene &

    Linda Voiland Sch Chem Engn &

    Bioengn Pullman WA 99164 USA;

    Washington State Univ Gene &

    Linda Voiland Sch Chem Engn &

    Bioengn Pullman WA 99164 USA;

    Washington State Univ Gene &

    Linda Voiland Sch Chem Engn &

    Bioengn Pullman WA 99164 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;数理科学和化学;化学工业废物处理与综合利用;
  • 关键词

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