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Heavy metal speciation and leaching behaviors in cement based solidified/stabilized waste materials

机译:水泥基固化/稳定废料中的重金属形态和浸出行为

摘要

A circuit board printing factory sludge containing high concentrations of copper, zinc and lead was stabilized and solidified (S/S) with different portions of ordinary Portland cement (OPC) and pulverized fly ash (PFA). The chemical speciation and leaching behavior of heavy metals in these cement-based waste materials were studied by different sequential extraction procedures, standard toxicity characteristic leaching procedure (TCLP) and progressive TCLP tests. The sequential extraction results showed that more than 80% of Cu, Pb and Zn were associated with Fraction 2 (weak acid soluble, extracted with 1M NaOAc at pH 5.0 with a solid to liquid ratio of 1:60). This indicated that the heavy metals could exist in the S/S matrix as metal hydrated phases or metal hydroxides precipitating on the surface of calcium silicate hydrates (C=S=H), PFA and sludge particles. The progressive TCLP test results and MINTEQA2 calculation also showed the importance of Cu and Zn oxides during the leaching process. The leaching behaviors of these metals in the S/S waste materials were mainly controlled by the alkaline nature and acid buffering capacity of the S/S matrix. During the progressive TCLP tests, the alkaline conditions and acid buffering capacity of the matrix decreased with the dissolution of calcium hydroxide and C=S=H, therefore, the leaching of heavy metals in the S/S waste materials increased. The leaching of heavy metals in the S/S materials can be considered as a pH dependent and corresponding metal hydroxide solubility controlled process.
机译:使用不同比例的普通硅酸盐水泥(OPC)和粉煤灰(PFA)对含有高浓度铜,锌和铅的电路板印刷厂污泥进行稳定和固化(S / S)。通过不同的顺序萃取程序,标准毒性特征浸出程序(TCLP)和渐进式TCLP测试,研究了这些水泥基废料中重金属的化学形态和浸出行为。顺序提取结果表明,超过80%的Cu,Pb和Zn与馏分2相关联(弱酸溶性,用1M NaOAc在pH 5.0下提取,固液比为1:60)。这表明重金属可能以金属水合相或金属氢氧化物形式沉淀在水合硅酸钙水合物(C = S = H),PFA和污泥颗粒表面,作为金属水合物相存在。逐步的TCLP测试结果和MINTEQA2计算也表明了在浸出过程中铜和锌氧化物的重要性。这些金属在S / S废料中的浸出行为主要受S / S基质的碱性和酸缓冲能力控制。在渐进式TCLP测试中,基质的碱性条件和酸缓冲能力随氢氧化钙的溶解和C = S = H的增加而降低,因此,S / S废料中重金属的浸出增加。 S / S材料中重金属的浸出可被认为是pH值依赖性和相应的金属氢氧化物溶解度控制过程。

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