Leaching characteristics of the fine fraction from an excavated landfill: physico-chemical characterization

被引:0
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作者
Fabio Kaczala
Mohammad Hadi Mehdinejad
Allar Lääne
Kaja Orupõld
Amit Bhatnagar
Mait Kriipsalu
William Hogland
机构
[1] Linnaeus University,Department of Biology and Environmental Sciences, Faculty of Health and Life Sciences, School of Natural Sciences
[2] LNU,Environmental Health Research Center, Faculty of Health
[3] Golestan University of Medical Sciences,Department of Environmental Sciences
[4] Estonian University of Life Sciences,Department of Water Management
[5] Institute of Agricultural and Environmental Sciences,undefined
[6] University of Eastern Finland,undefined
[7] Estonian University of Life Sciences,undefined
[8] Institute of Forestry and Rural Engineering,undefined
关键词
Landfill mining; Leachate; Heavy metals; TOC; DOC;
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摘要
Leaching of fine fraction (<10 mm) obtained from landfill mining activities in an Estonian landfill was done. On-site excavation was carried out in four test pits (TP1, TP2, TP3, TP4) that were further divided in four layers (L1, L2, L3, L4). Total chemical oxygen demand (CODt), dissolved chemical oxygen demand (CODd), total organic carbon (TOC), dissolved organic carbon (DOC) and metals (Zn, Cu, Pb and Cd) were analyzed. The results showed that approximately 70 % of CODt were in particulate/colloidal state. The TOC released ranged between 2326 and 3530-mg/kg dry matter for test pits suggesting spatial differences in the studied landfill. DOC ranged between 365–874 and 317–940 mg/kg for different test pits and sampling layers, respectively. Low average leaching rates of metals were observed (0.2–1.5 %). Pb had a significantly higher average leaching rate (1.0 %) compared to Zn (0.70 %) and Cu (0.35 %). The potential use of CODt as a surrogate indicator of TOC, DOC and Zn on the basis of high correlation coefficients was observed. To conclude, the implementation of adequate strategies to manage fine-grained fractions obtained from excavated waste relies on physico-chemical characterization of both the fine fractions itself and the leachate generated during storage and use.
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页码:294 / 304
页数:10
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