...
首页> 外文期刊>Renewable & Sustainable Energy Reviews >Conversion of the greenhouse gas CO_2 to the fuel gas CO via the Boudouard reaction: A review
【24h】

Conversion of the greenhouse gas CO_2 to the fuel gas CO via the Boudouard reaction: A review

机译:通过Boudouard反应将温室气体CO_2转化为燃料气体CO的研究进展

获取原文
获取原文并翻译 | 示例
           

摘要

The remediation of carbon dioxide emitted into the atmosphere has become the topic of the day due to the enormous contribution of CO_2 to the devastating global warming. The Boudouard reaction, in which solid carbon (char) reacts with CO_2 to produce carbon monoxide (CO_2 (g)+C(s)↔CO (g)), is a straightforward route for the CO_2 emission mitigation. Through this reaction, the CO_2 coming from variety of combustion plants, including exhaust/flue gas and synthesis gas, can be upgraded to the fuel gas, CO. This work presents a review on the CO_2 gasification of char, from coal, biomass, municipal solid wastes, sewage sludge or any co-utilized blend of them, to produce CO through the Boudouard reaction. An outline of the most effective parameters on the char gasification rate is presented. The parameters which affect the char reactivity are reviewed as those related to the char and its structural features (surface area and porosity, active sites, mineral content, structural evolution of char during gasification, pyrolysis condition and carbon source) and operation parameters (use of catalyst, gasification temperature, gasification pressure and CO_2 partial pressure, char particle size and gasification heat source). The kinetics of the char gasification reaction is studied and several theoretical or semi-empirical kinetic models used to interpret the reaction rate data and calculation of kinetic parameters, specifically activation energy, are reviewed and discussed.
机译:由于CO_2对毁灭性全球变暖的巨大贡献,向大气中排放的二氧化碳的修复已成为当今的话题。 Boudouard反应是固体碳(char)与CO_2反应生成一氧化碳(CO_2(g)+ C(s)↔CO(g))的简单方法,是减少CO_2排放的直接途径。通过该反应,可以将来自各种燃烧工厂的CO_2(包括废气/烟气和合成气)升级为燃料气CO。这项工作对煤,生物质,市政焦炭的CO_2气化进行了综述。固体废物,污水污泥或它们的任何联合利用,以通过Boudouard反应产生CO。介绍了关于焦炭气化速率的最有效参数的概述。影响炭反应性的参数包括与炭及其结构特征(表面积和孔隙率,活性部位,矿物质含量,气化过程中炭的结构演变,热解条件和碳源)以及操作参数(使用催化剂,气化温度,气化压力和CO_2分压,焦炭粒径和气化热源)。研究了焦炭气化反应的动力学,并审查和讨论了几种用于解释反应速率数据和动力学参数(特别是活化能)的理论或半经验动力学模型。

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