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首页> 外文期刊>Soil & Sediment Contamination >Counter-Current Attrition Process (CCAP) to Remove Metals, Pentachlorophenol (PCP), Dioxins and Furans (PCDDF) from the 1-4-mm Fraction of Contaminated Soil
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Counter-Current Attrition Process (CCAP) to Remove Metals, Pentachlorophenol (PCP), Dioxins and Furans (PCDDF) from the 1-4-mm Fraction of Contaminated Soil

机译:反电流磨损过程(CCAP)从1-4毫米的污染土壤中除去金属,五氯苯酚(PCP),二恶英和呋喃(PCDDF)

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The objective of this study was to evaluate the potential of a counter-current attrition process (CCAP) over 15 cycles for removing metals, pentachlorophenol (PCP) and polychlorinated dibenzo-p-dioxins and -furans (PCDDF) from contaminated soil. The CCAP, applied to the 1-4-mm fraction of a contaminated soil, included five attrition steps (pulp density (PD) = 40% (w w(-1)), surfactant [BW] = 2% (w w(-1)), t = 20min, T = 20 degrees C) followed by one rinsing step. The water emerging from the first attrition step was treated using flocculation in the presence of 0.04g CMX 123 (commercial flocculent) L-1 before being reintroduced into the CCAP. The CCAP including the treatment of attrition wastewater (ATW) by flocculation achieved a removal of 44 +/- 5% As, 26 +/- 6% Cr, 24 +/- 5% Cu, 49 +/- 4% PCP and 45 +/- 3% PCDDF. Moreover, the CCAP enabled a significant reduction (78%) in the amount of water required (around 14.5m(3) of water per ton of the 1-4-mm soil fraction). The high removal yields obtained after 15 attrition cycles of the CCAP for PCP and PCDDF and the significant reduction of water consumption confirm that this CCAP can be considered for industrial applications.
机译:本研究的目的是评估逆流磨损过程(CCAP)超过15个循环的潜力,用于从受污染的土壤中除去金属,五氯苯酚(PCP)和多氯二苯甲苯-P-二恶英和 - 呋喃(PCDDF)。施加到1-4毫米的污染土壤部分的CCAP,包括五个磨损步骤(纸浆密度(PD)= 40%(WW(-1)),表面活性剂[BW] = 2%(WW( - 1 )),T = 20min,T = 20摄氏度)随后是一个漂洗步骤。在将0.04g CMX 123(商业絮凝剂)L-1的存在下,在重新引入CCAP之前,使用絮凝在第一磨损步骤中涌出的水。 CCAP包括絮凝处理磨损废水(ATW),取出44 +/- 5%,26 +/- 6%Cr,24 +/- 5%Cu,49 +/- 4%PCP和45 +/- 3%pcddf。此外,CCAP在所需的水量(每吨1-4毫米土壤部分的每吨约14.5米(3)水)中,CCAP使得大幅减少(78%)。在PCP和PCDDF的CCAP的15次磨削循环后获得的高除去产率和耗水量的显着降低证实该CCAP可以考虑工业应用。

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