...
首页> 外文期刊>Environmental Monitoring and Assessment >Current status and perspectives of accelerated carbonation processes on municipal waste combustion residues
【24h】

Current status and perspectives of accelerated carbonation processes on municipal waste combustion residues

机译:城市垃圾燃烧残余物加速碳化过程的现状与展望

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The increasing volumes of municipal solid waste produced worldwide are encouraging the development of processes to reduce the environmental impact of this waste stream. Combustion technology can facilitate volume reduction of up to 90%, with the inorganic contaminants being captured in furnace bottom ash, and fly ash/APC residues. The disposal or reuse of these residues is however governed by the potential release of constituent contaminants into the environment. Accelerated carbonation has been shown to have a potential for improving the chemical stability and leaching behaviour of both bottom ash and fly ash/APC residues. However, the efficacy of carbonation depends on whether the method of gas application is direct or indirect. Also important are the mineralogy, chemistry and physical properties of the fresh ash, the carbonation reaction conditions such as temperature, contact time, CO_2 partial pressure and relative humidity. This paper reviews the main issues pertaining to the application of accelerated carbonation to municipal waste combustion residues to elucidate the potential benefits on the stabilization of such residues and for reducing CO_2 emissions. In particular, the modification of ash properties that occur upon carbonation and the CO_2 sequestration potential possible under different conditions are discussed. Although accelerated carbonation is a developing technology, it could be introduced in new incinerator facilities as a "finishing step" for both ash treatment and reduction of CO_2 emissions.
机译:世界范围内产生的城市固体废物数量不断增加,鼓励人们开发减少该废物流对环境影响的方法。燃烧技术可将体积减少多达90%,而无机污染物则被捕获在炉底灰和飞灰/ APC残留物中。但是,这些残留物的处置或再利用取决于构成污染物向环境中的潜在释放。加速碳酸化已显示具有改善底灰和粉煤灰/ APC残留物的化学稳定性和浸出行为的潜力。但是,碳酸化的功效取决于气体施加方法是直接还是间接。新鲜灰分的矿物学,化学和物理特性,碳化反应条件(例如温度,接触时间,CO_2分压和相对湿度)也很重要。本文回顾了与加速碳化应用于城市垃圾燃烧残留物有关的主要问题,以阐明稳定此类残留物并减少CO_2排放的潜在益处。特别地,讨论了在碳酸化时发生的灰分性质的改变和在不同条件下可能的CO 2螯合潜力。尽管加速碳化是一项发展中的技术,但可以将其引入新的焚化炉设施中,作为灰分处理和减少CO_2排放的“完成步骤”。

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