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Acid production potentials of massive sulfide minerals and lead–zinc mine tailings: a medium-term study

机译:硫化物矿物质和铅锌矿尾矿的酸生产潜力:中期研究

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>Weathering of sulfide minerals is a principal source of acid generation. To determine acid-forming potentials of sulfide-bearing materials, two basic approaches named static and kinetic tests are available. Static tests are short-term, and easily undertaken within a few days and in a laboratory. In contrast, kinetic tests are long-term procedures and mostly carried out on site. In this study, experiments were conducted over a medium-term period of 2 months, not as short as static tests and also not as long as kinetic tests. As a result, pH and electrical conductivity oscillations as a function of time, acid-forming potentials and elemental contents of synthetically prepared rainwater leachates of massive sulfides and sulfide-bearing lead–zinc tailings from abandoned and currently used deposition areas have been determined. Although the lowest final pH of 2.70 was obtained in massive pyrite leachate, massive chalcopyrite leachate showed the highest titrable acidity of 1.764 g H2SO4/L. On the other hand, a composite of currently deposited mine tailings showed no acidic characteristic with a final pH of 7.77. The composite abandoned mine tailing leachate had a final pH of 6.70, close to the final pH of massive galena and sphalerite leachates, and produced a slight titrable acidity of 0.130 g H2SO4/L.]]>
机译:<![CDATA [ >硫化物矿物的风化是酸产生的主要来源。为了确定耐硫化物材料的酸形成电位,可提供两种名为静态和动力检测的基本方法。静态测试是短期的,在几天和实验室内轻松进行。相比之下,动力学测试是长期手术,主要在现场进行。在这项研究中,在2个月的中期期间进行实验,不如动力学测试那么短。结果,已经确定了PH和电导率振荡作为时间,酸形成电位和综合制备的耐硫化物浸出物的耐硫化物和耐硫化物引线尾矿尾矿的函数的函数。尽管在大规模的硫铁矿渗滤液中获得最低最低pH值为2.70,但大量的硫代铜矿渗滤液显示出1.764g H H 2 4 / l的最高可滴定酸度。另一方面,目前沉积的矿井尾矿的复合物显示没有酸性特性​​,最终pH为7.77。复合矿井尾矿渗滤液的最终pH值为6.70,接近巨大的Galena和闪锌矿渗滤液的最终pH,并产生0.130g H H 2 4 4 4 / l。 ]]>

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