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Effect of the alkaline industrial residues fly ash, green liquor dregs, and lime mud on mine tailings oxidation when used as covering material

机译:碱工业残渣粉煤灰,绿液渣和石灰泥在用作覆盖材料时对矿山尾矿氧化的影响

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摘要

The potential to use the alkaline residue products fly ash, green liquor dregs, and lime mud originating from paper mills as dry cover materials to seal tailings has been investigated. Metals concentration in lime mud and fly ash had the lowest and highest contents, respectively. The tailings (<1 % sulfur content, primarily pyrite) were disposed about 50 years ago and originated from the former Ronnskar mine site in Sweden. The results of chemical composition analysis show that the raw unoxidized tailings are active toward oxidation, while the components of the adjacent oxidized tailings are not. To quantify the release of metals from the tailings and to evaluate the effect of a sealing layer on oxidation and weathering of the tailings, batch leaching tests were conducted in which leachate from alkaline residue materials was fed to the tailings. The results show that a higher concentration of most trace elements is leached from the unoxidized tailings than from the oxidized tailings. Except As and Cr, the rest of analyzed metals (Cd, Cu, Ni, Pb) became immobilized in response to the increased pH as a consequence of the amendment. The three tested alkaline amendments show a similar potential for preventing the release of metals (with the exception of As and Cr) from the tailings. Under either aerobic or anaerobic conditions, microbial activity was found to be of minor importance. XRD analysis of the field samples revealed that it was feasible to use alkaline residue products in covering tailings, and that it was advantageous to use ash as a cover material more than dregs.
机译:已经研究了使用来自造纸厂的碱性残留产品粉煤灰,绿液渣和石灰泥作为干覆盖材料密封尾矿的潜力。石灰泥和粉煤灰中的金属含量分别最低和最高。尾矿(硫含量<1%,主要是黄铁矿)大约在50年前就被处置了,起源于瑞典以前的Ronnskar矿场。化学成分分析的结果表明,未氧化的未加工尾矿具有氧化活性,而相邻的氧化尾矿的成分则没有活性。为了量化金属从尾矿中的释放并评估密封层对尾矿氧化和风化的影响,进行了分批浸出试验,其中将碱性残渣物料中的沥滤液送入尾矿中。结果表明,从未氧化尾矿中浸出的大多数痕量元素的浓度高于从氧化尾矿中。除砷和铬外,分析后的其余金属(镉,铜,镍,铅)响应于pH值升高而被固定化。经测试的三种碱性改性剂显示出相似的潜力,可防止尾矿中金属(砷和铬除外)的释放。在有氧或厌氧条件下,发现微生物活性的重要性均较小。对现场样品的XRD分析表明,在覆盖尾矿中使用碱性残留物产品是可行的,并且使用灰烬作为覆盖材料比使用残渣更为有利。

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