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Leaching behaviour of mercury from hazardous solid waste generated by chlor-alkali industry

机译:氯碱工业产生的危险固体废物汞的浸出行为

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Through the conventional chlor-alkali production process, highly mercury (Hg) contaminated waste sludge is produced. Improper handling and disposal of this sludge may cause an environmental hazard. The leaching behaviour of Hg of land disposed mercurial sludge, originating from a chlor-alkali plant that still is in operation, was investigated using the German DIN 38414-S4 test. The total mercury content of the samples was above 1500 mg/kg, allowing the material to be classified as hazardous and high mercury waste. Concentrations of Hg in the leachates were higher than 0.02 mg/1 stipulated by the 1991 EEC Landfill Directive Draft as a maximum limit for a waste that is to be landfilled. Total Hg contents and leachability differed markedly between the samples, pointing to a heterogeneity in the production of the sludge. The more limited release of Hg from one of the samples might reflect an ageing effect, or might reflect a better quality of the stabilization process at the time of production. Results indicate that the approach used to stabilize the sludge has not been sufficiently effective, and warrant caution about existing disposal sites and future management of these mercury containing waste materials.
机译:通过常规的氯碱生产过程,产生高度汞(HG)污染的废物污泥。这种污泥的操作不当和处理可能导致环境危害。采用德国DIN 38414-S4试验研究了源自仍处于运作的氯碱植物的土地配置汞污泥的浸出行为。样品的总汞含量高于1500mg / kg,使材料被归类为危险和高汞废物。 1991年EEC垃圾填埋指令草案规定的液体中HG的浓度高于0.02毫克/ 1,作为填埋的垃圾的最大限制。样品之间的总Hg含量和渗滤性显着不同,指向污泥的生产中的异质性。 Hg从其中一个样品的释放越有限可能反映老化效果,或者在生产时可能反映更好的稳定过程质量。结果表明,用于稳定污泥的方法并未充分有效,并谨慎对现有的处置场地和含有废料的汞的未来管理谨慎。

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