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Chemical stabilisation combined with phytostabilisation applied to mine waste contaminated soils in Hungary

机译:化学稳定化与植物污染污染土壤相结合的植物稳定化联合匈牙利污染土壤

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Gyongyosoroszi is an abandoned lead-zinc sulphide ore mining area in Hungary, The diffuse pollution sources of mining origin identified in the area and the residual pollution after removal of the point sources will be subjected to combined chemical- and phytostabilisation. To select the best chemical stabiliser laboratory scale experiments were performed in microcosms. The following chemical additives were tested in various concentrations: three different fly ashes, lignite, alginite, hydrated lime, raw phosphate, iron hydroxide wastes from drinking-water treatment, red mud and the mixture of selected ones. The stabilisation of toxic metals in the soil was monitored by an integrated methodology, which combined physico-chemical analysis with toxicity testing. Based on the chemical analytical and the bacterial and plant toxicity test results, one of the tested fly ash types was the most effective: the mobile Cd and Zn concentration decreased by 50-99 percent in the fly ash treated contaminated soil, the bacterial and plant toxicity decreased by 30-70 percent, and the bioaccumulated metal amount by 70 percent. The combination of lignite, alginite, lime and phosphate was also efficient.
机译:真哲绍罗西是一个废弃铅硫化锌矿石开采在匈牙利区域,在该区域和去除的点源后残留的污染确定采矿原点的漫污染源将经受组合的化学 - 和植物固定。为了选择最好的化学稳定剂实验室规模实验在微观执行。三种不同的飞灰,褐煤,alginite,水合石灰,原磷酸,氢氧化铁废料从饮用水处理,红泥和选定的混合物:下面的化学添加剂以不同浓度测试。在土壤中的有毒金属的稳定化是由一个集成的方法,其中结合毒性测试的物理 - 化学分析来监测。基于化学分析和细菌和植物毒性的测试结果,测试的飞灰类型之一是最有效的:移动Cd和Zn浓度飞灰减少50-99%的处理过的污染土壤,细菌和植物毒性70%的生物积累金属量减少了30〜70%,和。褐煤,alginite,石灰和磷酸的组合也是有效的。

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