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Utilization of air pollution control residues for the stabilization/solidification of trace element contaminated soil

机译:利用空气污染控制残留物稳定/固化微量元素污染的土壤

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The aim of this study was to evaluate the stabilization/solidification (S/S) of trace element-contaminated soil using air pollution control residues (APCRs) prior to disposal in landfill sites. Two soil samples (with low and moderate concentrations of organic matter) were stabilized using three APCRs that originated from the incineration of municipal solid waste, bio-fuels and a mixture of coal and crushed olive kernels. Two APCR/soil mixtures were tested: 30 % APCR/70 % soil and 50 % APCR/50 % soil. A batch leaching test was used to study immobilization of As and co-occurring metals Cr, Cu, Pb and Zn. Solidification was evaluated by measuring the unconfined compression strength (UCS). Leaching of As was reduced by 39-93 % in APCR/soil mixtures and decreased with increased amounts of added APCR. Immobilization of As positively correlated with the amount of Ca in the APCR and negatively with the amount of soil organic matter. According to geochemical modelling, the precipitation of calcium arsenate (Ca-3(AsO4)(2)/4H(2)O) and incorporation of As in ettringite (Ca6Al2(SO4)(3)(OH)(12)center dot 26H(2)O) in soil/APCR mixtures might explain the reduced leaching of As. A negative effect of the treatment was an increased leaching of Cu, Cr and dissolved organic carbon. Solidification of APCR/soil was considerably weakened by soil organic matter.
机译:这项研究的目的是在将空气污染控制残留物(APCR)丢弃到垃圾填埋场之前,评估痕量元素污染土壤的稳定/固化(S / S)。使用三个APCR稳定了两个土壤样品(有机物浓度较低和中等),这三个APCR源自焚化城市固体废物,生物燃料以及煤和碎的橄榄核的混合物。测试了两种APCR /土壤混合物:30%APCR / 70%土壤和50%APCR / 50%土壤。分批浸出测试用于研究As和共生金属Cr,Cu,Pb和Zn的固定化。通过测量无侧限抗压强度(UCS)评估固化。在APCR /土壤混合物中,As的浸出减少了39-93%,并且随着APCR添加量的增加而减少。 As的固定化与APCR中的Ca含量呈正相关,与土壤有机质的含量呈负相关。根据地球化学模型,砷酸钙(Ca-3(AsO4)(2)/ 4H(2)O)的沉淀和砷在钙矾石中的掺入(Ca6Al2(SO4)(3)(OH)(12)中心点26H (2)O)在土壤/ APCR混合物中可能解释了As的浸出减少。该处理的负面影响是增加了铜,铬和溶解有机碳的浸出。土壤有机质大大削弱了APCR /土壤的固化。

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