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Assessing long-term stability of cadmium and lead in a soil washing residue amended with MgO-based binders using quantitative accelerated ageing

机译:使用定量加速老化法评估用MgO基粘合剂修正的土壤洗涤残渣中镉和铅的长期稳定性

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A soil washing residue (SWR) (containing 90% clay, cadmium (Cd2+) of 132 mg/kg, lead (Pb2+) of 3410 mg/kg) was stabilized with MgO (M) and MgO + bioapatite (MB) respectively at a dosage of 5% in w/w. The stability of the metals in original and amended SWRs was assessed after immediate treatment and using a laboratory accelerated ageing method simulating 26, 52, 78 and 104 years in field conditions. The dissolved Cd2+ and Pb2+ from the SWR in Toxicity Characteristic Leaching Procedure (TCLP) leachates significantly reduced (by 96.84-99.06%) by both amendments after immediate treatment. The stabilization remained effective within simulated 26 years as the TCLP leached Cd2+ and Pb2+ kept below regulatory levels. This immobilization was mainly due to the increased non-bioavailable Cd2+ and Pb2+ from sequential extraction tests in SWR by the amendments. At simulated 52 years, the TCLP leached Cd2+ from M and MB exceeded regulatory level by 106% and 1% respectively. Large amounts of Cd2+ and Pb2+ were leached out by 36.74-48.18% regardless of the treatments at simulated 104 years. Although bioapatite can significantly aid the stabilization of metals by MgO, the stabilization effectiveness for both treatments diminished at simulated 52 years and from 52 to 104 years. (C) 2018 Elsevier B.V. All rights reserved.
机译:用MgO(M)和MgO +生物磷灰石(MB)分别稳定土壤洗涤残留物(SWR)(包含90%粘土,132 mg / kg的镉(Cd2 +),3410 mg / kg的铅(Pb2 +))。 w / w的5%剂量。立即处理后,采用实验室加速老化方法,模拟现场条件下26、52、78和104年的金属,对原始和修订的SWR中金属的稳定性进行了评估。在立即处理后,通过两种修正方法从SWR中溶解的Cd2 +和Pb2 +从SWR中的溶出物均显着降低(降低了96.84-99.06%)。在TCLP浸出的Cd2 +和Pb2 +保持低于监管水平的情况下,稳定在模拟的26年内仍然有效。这种固定化主要是由于修正案中SWR顺序提取试验中非生物利用性Cd2 +和Pb2 +的增加。在模拟的52年中,TCLP从M和MB中浸出的Cd2 +分别超过了法规水平106%和1%。不管模拟104年的处理方式如何,大量Cd2 +和Pb2 +的浸出率为36.74-48.18%。尽管生物磷灰石可以通过MgO大大有助于金属的稳定化,但是在模拟的52年和52年至104年间,两种处理的稳定化效果均下降了。 (C)2018 Elsevier B.V.保留所有权利。

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