A novel combined process for enhancing soluble salt recovery and reducing pollutant diffusion in municipal solid waste incineration fly ash

粉煤灰 碳化作用 化学 污染物 废物管理 城市固体废物 环境化学 资源回收 环境科学 制浆造纸工业 环境工程 废水 有机化学 工程类
作者
Xiaofan Huang,Lei Wang,Xiaotao Bi,Dahai Yan,Jonathan W.C. Wong,Yuezhao Zhu
出处
期刊:Journal of Cleaner Production [Elsevier BV]
卷期号:450: 141892-141892 被引量:12
标识
DOI:10.1016/j.jclepro.2024.141892
摘要

There is a limited body of research on the recovery of soluble salts from fly ash from municipal solid wastes (MSWI-FA), with challenges stemming from the effective management of residual heavy metals and dioxins. In this investigation, we propose using water-washing treatment for fly ash dechlorination and using CO2 aeration carbonation combined with ceramic membrane filtration to recover soluble salt resources from fly ash. This study investigated the impact of combined processes on fly ash soluble salt recovery, carbon dioxide capture and sequestration, heavy metal removal, and dioxin diffusion reduction. The findings revealed that the combined process can significantly enhance the rate of carbonation and the removal of heavy metals. Specifically, the removal rates of Pb and Zn reach 100%. The resulting CaCO3 precipitation particle size is smaller, averaging only approximately 4 μm, with greater surface porosity, higher heavy metal and dioxin content, and dioxin toxic equivalents as high as 8.11 ng TEQ/kg. Moreover, the dioxin content in the recovered mixed salt decreased, and its dioxin toxic equivalent was only 3.228.11 ng TEQ/kg. Consequently, the combined process of CO2 aeration combined with ceramic membrane filtration was used in conjunction to significantly reduce pollutants (heavy metals and dioxins) in the MSWI-FA recovered salt. This approach enhances the recyclable resource utilization of MSWI-FA and reduces the risk of pollution dispersal during MSWI-FA disposal and resource utilization.
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