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Interaction of Fe~(3+), Ca~(2+), and SO_4~(2-) at the jrosite/alkaline coal fly ash interface

机译:Fe〜(3+),Ca〜(2+)和SO_4〜(2-)在JROSE /碱性煤粉煤灰界面的相互作用

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Radio tracer diffusion experiments have been carried out to study sell-sealing/healing isolation and immobilization of two chemically contrasting wastes: acidic jarosite and alkaline coal fly ash. Precipitation of iron oxyhydroxide FeO(OH) and gypsum CaSO4-2H2O occurs at the interface between jarosite and fly ash due to diffusion and interaction among the principal reacting solutes Fe3+, SO42-, Ca^"1, and Oil". A layer with low permeability is formed at this interface because of pore filling by such precipitates causing a change in the transport properties of the bulk system. Precipitation at the interface between jarosite and fly ash affects also the mobility of chemical constituents including contaminants from the wastes. Co-disposal of chemically contrasting wastes may therefore lead to a self-forming barrier layer between them, which, next to isolating the wastes, also immobilizes contaminants from their leachates. Such systems will have a wide application in waste management.
机译:已经进行了无线电示踪剂扩散实验,以研究销售 - 密封/愈合分离和固定两种化学对比废物:酸性杂种和碱性煤粉煤灰。铁羟基氧化铁的沉淀Feo(OH)和石膏CasO4-2H2O在术语和粉煤灰之间的界面中发生,由于本国反应溶质Fe3 +,SO42-,Ca ^“1和油”中的分散和相互作用。在该界面处形成具有低渗透性的层,因为通过这种沉淀物填充物引起散装系统的运输性能的变化。罐装和粉煤灰之间的界面处的沉淀也影响了包括废物中的污染物的化学成分的迁移率。因此,将化学对比废物的共同处理可能导致它们之间的自成形阻挡层,其在隔离废物之外,还将污染物从其渗滤液中固定。这种系统将在废物管理中具有广泛的应用。

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