首页> 外文期刊>Renewable & Sustainable Energy Reviews >Catalytic methane decomposition to boost the energy transition: Scientific and technological advancements
【24h】

Catalytic methane decomposition to boost the energy transition: Scientific and technological advancements

机译:催化甲烷分解促进能源转型:科技进步

获取原文
获取原文并翻译 | 示例
       

摘要

Decarbonization of the energy sector is a topic of paramount importance to avoid irreversible global warming. Hydrogen has been considered as the most suitable option to replace fossil fuels in industrial, residential and transport applications. However, hydrogen production has been almost limited to the reforming of hydrocarbons, which release large amounts of CO2, thus requiring several downstream purification processes.Catalytic methane decomposition consists of the low-temperature cracking of methane, producing only COx-free hydrogen and solid carbon. This process has the unique potential to make the swift transition for a fully decarbonized economy and beyond: the methane decomposition of biomethane removes CO2 from the atmo-sphere at competitive costs. Yet, industrialization of catalytic methane decomposition has been hindered by the insufficient stability assigned to catalyst deactivation due to carbon clogging.This article reviews not only the main accomplishments on methane decomposition since it was firstly reported, but also addresses technical barriers that have hindered its industrialization. Unlike other previous reviews that focused mainly on catalysts, more attention was put on the reactor design, catalyst regeneration strategies and processing of products (hydrogen purification and economic overview). The goal is to identify challenges and provide solutions for the industrialization paradigm that methane decomposition has faced up to now.
机译:能源部门的脱碳是重要的重要性,以避免不可逆转的全球变暖。氢被认为是更适合替代工业,住宅和运输应用中的化石燃料的最佳选择。然而,氢气产生几乎限于烃的重整,其释放大量二氧化碳,因此需要几种下游净化过程。催化甲烷分解包括甲烷的低温裂缝,仅生产不含Cox的氢和固体碳。该过程具有独特的潜力,使SWIFT转变为全脱碳的经济性和超越:Biomethane的甲烷分解以竞争力的成本从大气中移除CO2。然而,催化甲烷分解的产业化因碳堵塞而分配给催化剂失活的不足稳定性受到阻碍。本文审查不仅是首先报道的甲烷分解的主要成果,而且还解决了阻碍了其工业化的技术障碍。与前面的其他重点集中在催化剂上的评论不同,更加关注反应堆设计,催化剂再生策略和产品加工(氢气净化和经济概述)。目标是识别挑战并为工业化范例提供甲烷分解所面临的挑战。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号