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Assessment of the content occurrence and leachability of arsenic lead and thallium in wastes from coal cleaning processes

机译:评估洗煤过程中废物中砷铅和th的含量发生和浸出率

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摘要

The aim of the study was to evaluate the content, occurrence, and leachability of arsenic (As), lead (Pb), and thallium (Tl) in wastes from coal cleaning processes with respect to the safe management of this waste. The study focused on wastes resulting from the wet gravitation and flotation processes employed for the purposes of coking coal cleaning in four coal mines situated in the Upper Silesian Coal Basin (Poland). The scope of the study included (i) determination of the content of these elements in the investigated wastes using atomic absorption spectrometry, (ii) evaluation of their mode of occurrence using electron microprobe analysis, and (iii) preliminary assessment of their leachability in deionized water. The content of the analyzed elements in the examined samples of coal waste was twice as high as the average content of these elements in the Earth’s crust. The contents of As and Pb, however, did not exceed their permissible contents in inert waste in accordance with Polish legal regulations based on EU directives. The limit on the content of Tl is not specified by these regulations, but its amount in the examined samples was similar to that occurring in the soils. Moreover, leaching tests have shown that these elements are hardly eluted from the analyzed material. Their content in the water leachates was generally lower than the detection limit of the analytical method, complying with the standards for good and very good water quality. Low leachability of these elements most probably results from their mode of occurrence in the investigated wastes. The chemical analysis using an electron microprobe and the analysis of the correlation between these elements, e.g., total and pyritic sulfur, have shown that Pb, As, and Tl are mainly found in sulfide minerals which are characterized by negligible solubility. In conclusion, the investigated hard coal processing waste does not constitute a threat to the environment and can be commercially used or safely neutralized, e.g., by landfilling.
机译:这项研究的目的是评估从煤炭清洁过程中产生的砷,砷,铅和(的含量,发生率和可浸出性,并对其进行安全管理。该研究集中于湿重力和浮选过程中产生的废物,这些过程用于清洁位于上西里西亚煤盆地(波兰)的四个煤矿中的炼焦煤。研究范围包括(i)使用原子吸收光谱法确定所研究废物中这些元素的含量,(ii)使用电子探针分析评估其发生方式以及(iii)初步评估其在去离子水中的浸出能力水。所检查的煤废料样品中分析元素的含量是地壳中这些元素平均含量的两倍。但是,根据波兰基于欧盟指令的法律法规,砷和铅的含量未超过惰性废物中允许的含量。这些法规没有规定T1含量的限制,但是被检测样品中T1的含量与土壤中的含量相似。此外,浸出试验表明,这些元素几乎没有从分析的材料中洗脱出来。它们在水浸液中的含量通常低于分析方法的检出限,符合关于良好和非常好的水质的标准。这些元素的低浸出性很可能是由于它们在被调查废物中的出现方式所致。使用电子探针进行的化学分析以及对这些元素之间的相关性分析,例如总硫和黄铁矿硫,表明Pb,As和Tl主要存在于硫化物矿物中,其溶解度可忽略不计。总而言之,所研究的硬煤加工废物不会对环境构成威胁,并且可以用于商业用途或通过掩埋等方法安全地中和。

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