...
首页> 外文期刊>Journal of CO2 Utilization >CaO-based CO2 sorbents: A review on screening, enhancement, cyclic stability, regeneration and kinetics modelling
【24h】

CaO-based CO2 sorbents: A review on screening, enhancement, cyclic stability, regeneration and kinetics modelling

机译:基于CAO的二氧化碳吸附剂:筛选,增强,循环稳定性,再生和动力学建模综述

获取原文
获取原文并翻译 | 示例
           

摘要

This article reviews current developments in metal-based sorbents for carbon capture with emphasis on calcium oxide. A broad overview of carbon dioxide capture with metals in various forms including oxides, hydroxides, carbonates and zirconates is presented. Based on the findings from comparative assessments of these sorbents, CaO appears to be the best solid sorbent for CO2 capture at high temperatures, and its numerous advantages are discussed in this work. For this reason, a detailed review has been conducted for calcium oxide, which works as a sorbent at temperatures up to 700 degrees C through carbonation, and desorbs CO2 above 700 degrees C by calcination of CaCO3 at atmospheric pressure. A review of studies on kinetics modelling of CO2 capture with CaO-based sorbents is also included in this work. Decay in activity caused by sintering and attrition is identified as the greatest challenge with CaO-based sorbents. This work also focuses on the available techniques for enhancing performance and cyclic stability. Reactivation of the sorbents by hydration and reduction in decay rate by doping with inert supports and synthetic sorbents are reviewed. Additionally, the use of biomass resources (waste animal shells) as competitive sources of CaCO3 is discussed in this work. The review concludes with recommendations for future studies in carbon capture and sequestration.
机译:本文审查了随着氧化钙的强调碳捕获的基于金属的吸附剂的当前发展。提出了一种广泛的二氧化碳捕获,以各种形式的金属捕获,包括氧化物,氢氧化物,碳酸盐和锆酸盐。基于这些吸附剂的比较评估的结果,CaO似乎是高温下的CO2捕获的最佳固体吸附剂,并且在这项工作中讨论了其许多优点。因此,已经对氧化钙进行了详细的审查,该氧化钙通过碳酸化在高达700℃的温度下用吸附剂,并通过在大气压下煅烧CaCO 3,以700℃以上的索取CO 2。在这项工作中还包括CO2吸附剂的CO2捕获的动力学建模研究综述。烧结和磨损引起的活动衰减被确定为曹族吸附剂的最大挑战。这项工作还专注于可用的技术,以提高性能和循环稳定性。综述了通过掺杂惰性载体和合成吸附剂通过水化和衰减率降低的吸附剂的再活化。此外,在这项工作中讨论了使用生物质资源(废物动物壳)作为Caco3的竞争来源。审查结束了碳捕获和封存未来研究的建议。

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