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Monitoring the stabilization of municipal solid waste incineration fly ash by phosphation: mineralogical and balance approach

机译:通过磷化监测城市固体废物焚烧飞灰的稳定性:矿物学和平衡法

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摘要

The application of a micro-characterization protocol coupled with a balance approach has allowed the relevant monitoring of a phosphation process for fly ash produced by municipal solid waste incineration. The three main steps of this process consist in removing the salts (chlorides, sulfates) by dissolution at basic pH, phosphation of the residue to trap metals, and its calcination to destroy dioxin-like compounds. The chemical and mineralogical balances compiled on the samples after each step of the process validate these main objectives and highlight the wide phosphorus distribution throughout the sample during the phosphation process, as well as the formation of apatite-type crystallized phosphates. During calcination, the increase in the proportion of crystallized phosphates apatite and whitlockite is largely attributable to the presence of an available calcium source, corresponding to the calcite formed during washing. The metals Pb and Zn, initially distributed in the silicate and carbonate phases, are broadly redistributed in the phosphate neoformations after carbonate dissolution, thus guaranteeing a more permanent stabilization.
机译:微特征化方案与平衡方法的结合使用,可以对市政固体废物焚烧产生的粉煤灰的磷化过程进行相关监控。该方法的三个主要步骤包括通过在碱性pH值下溶解除去盐(氯化物,硫酸盐),将残留物磷酸化以捕获金属,以及煅烧以破坏二恶英样化合物。在该过程的每个步骤之后,在样品上编制的化学和矿物学平衡证明了这些主要目的,并突出了磷化过程中整个样品中磷的广泛分布以及磷灰石型结晶磷酸盐的形成。在煅烧期间,结晶磷酸盐磷灰石和菱锰矿比例的增加主要归因于存在可用的钙源,其对应于洗涤期间形成的方解石。最初分布在硅酸盐和碳酸盐相中的金属Pb和Zn在碳酸盐溶解后在磷酸盐新形成物中广泛地重新分布,从而确保了更持久的稳定性。

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