Philipp Scholz , Christian Vogel , Götz Schuck , Franz-Georg Simon
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In contrast, the majority (approx. 50–70%) of Zn in all IBA is elemental zinc, which originates from brass or other alloys and galvanized metals with a large content of zinc in the waste. The FA contain higher mass fraction on Zn and other toxic elements, but similar Cu and Zn species. Additional performed selective extraction at a pH of 4 with an organic acid of some IBA showed that the ecotoxic Zn fraction is mainly elemental zinc and zinc oxide. In contrast, for the ecotoxic Cu fraction within the IBA no specific compound could be identified. Furthermore, the XANES analysis showed that the HP14 properties of especially Cu in IBA is overestimated with current best-practice guidelines for sample processing for the current substance-related approach with the 0.1% cut-off rule for each substance. 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引用次数: 0
摘要
分析废物中是否存在对水生生物有毒的物质以及这些物质的含量,对于根据危害特性(HP)14 "生态毒性 "对废物进行分类至关重要。为了测定德国各种城市固体废物焚烧底灰(IBA)和一种飞灰(FA)中按 HP14 分类的铜(Cu)和锌(Zn)化合物,我们结合线性组合拟合,使用了 X 射线吸收近边结构(XANES)光谱法。分析表明,IBA 中约 50-70% 的铜是 Cu(I) 化合物和元素 Cu(0),但这些化合物在不同的 IBA 中分布不均。相比之下,所有 IBA 中的锌大部分(约 50-70%)为元素锌,来自黄铜或其他合金以及废料中锌含量较高的镀锌金属。FA 中的锌和其他有毒元素的质量分数较高,但铜和锌的种类相似。在 pH 值为 4 的条件下,用有机酸对一些 IBA 进行选择性萃取,结果表明生态毒性锌部分主要是元素锌和氧化锌。与此相反,IBA 中的生态毒性铜馏分则无法确定特定的化合物。此外,XANES 分析表明,按照目前与物质相关的方法(每种物质的临界值为 0.1%)的样本处理最佳实践指南,IBA 中特别是铜的 HP14 特性被高估了。不过,应该考虑的是,从环境角度来看,将生态毒性可浸出铜和锌作为参考值是否更好。
Speciation of copper and zinc compounds relevant for the hazard property (HP) 14 classification of municipal solid waste incineration bottom and fly ashes
The analysis of the presence and content of substances that are toxic to aquatic life in waste is essential for classification of waste with regard to hazard property (HP) 14 ‘ecotoxic’. For the determination of HP14 classified copper (Cu) and zinc (Zn) compounds in various municipal solid waste incineration bottom ashes (IBA) and one fly ash (FA) from Germany we applied X-ray absorption near-edge structure (XANES) spectroscopy in combination with linear combination fitting. The analysis showed that approx. 50–70% of Cu in the IBA are Cu(I) compounds and elemental Cu(0), but these compounds were not equally distributed in the different IBA. In contrast, the majority (approx. 50–70%) of Zn in all IBA is elemental zinc, which originates from brass or other alloys and galvanized metals with a large content of zinc in the waste. The FA contain higher mass fraction on Zn and other toxic elements, but similar Cu and Zn species. Additional performed selective extraction at a pH of 4 with an organic acid of some IBA showed that the ecotoxic Zn fraction is mainly elemental zinc and zinc oxide. In contrast, for the ecotoxic Cu fraction within the IBA no specific compound could be identified. Furthermore, the XANES analysis showed that the HP14 properties of especially Cu in IBA is overestimated with current best-practice guidelines for sample processing for the current substance-related approach with the 0.1% cut-off rule for each substance. However, it should be considered whether it would not be better from an environmental point of view to take the ecotoxicologically leachable copper and zinc as a reference value.
期刊介绍:
Waste Management is devoted to the presentation and discussion of information on solid wastes,it covers the entire lifecycle of solid. wastes.
Scope:
Addresses solid wastes in both industrialized and economically developing countries
Covers various types of solid wastes, including:
Municipal (e.g., residential, institutional, commercial, light industrial)
Agricultural
Special (e.g., C and D, healthcare, household hazardous wastes, sewage sludge)