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Conceptual modifications of coal preparation plants to minimize potential environmental issues associated with coal waste disposal

机译:对选煤厂进行概念上的修改,以最大程度地减少与废物处理相关的潜在环境问题

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An environmental concern at coal preparation operations is the release of elements resulting from the oxidation or dissolution of certain minerals contained in the process waste streams. Using a standard conductivity test, the electrical conductivity (EC) of water samples obtained from mixing with various particle size and density fractions of a given plant waste material were measured as an indicator of total dissolved solids. The net neutralization potential (NNP) of the fractions were also measured to predict the pH of the supernatant upon disposal. As a result, the particle size and density fractions contributing to high EC levels were identified with the objective of potentially extracting and isolating these fractions which can significantly reduce the negative environmental impacts. The results showed that the EC generated from coarse refuse streams were significantly higher than the values obtained from fine refuse streams. Based on the NNP values, the coarse refuse stream generates highly acidic pH, while the fine refuse in contact with water produces circumneutral pH. Furthermore, the high specific gravity (> 2.68) fractions which comprised less than 10% of the coal waste streams were found to be the primary source of elevated EC levels. The remaining fractions were found to be of minimal environmental concern. Based on the obtained results, modifications to the coal preparation plants were proposed to minimize the environmental concerns of coal waste disposal. Modifications include pyrite removal from the spiral refuse and desulfurization of flotation feed and sieve bend underflow streams using low-cost mineral spiral circuitry. After the segregation, the pyrite (high density) fraction, which encompasses around 1% of the coarse and fine refuse streams, will be isolated/encapsulated and the fine refuse stream dewatered and co-disposed with the coarse refuse stream. The proposed modifications to the processing and disposal practices not only minimize the generation of acid mine drainage thereby reducing the release of trace elements and EC of the discharged water, but also enhances the recovery and quality of the final clean coal product.
机译:选煤操作中的环境问题是由工艺废物流中所含某些矿物的氧化或溶解所导致的元素释放。使用标准电导率测试,测量通过与给定植物废料的各种粒径和密度分数混合而获得的水样品的电导率(EC),作为总溶解固体的指标。还测量馏分的净中和电位(NNP)以预测处理后上清液的pH。结果,鉴定了有助于高EC水平的粒度和密度级分,目的是潜在地提取和分离这些级分,其可以显着减少负面的环境影响。结果表明,粗垃圾流产生的EC明显高于细垃圾流产生的EC。基于NNP值,粗垃圾流产生高酸性pH,而细垃圾与水接触产生周围pH。此外,发现占煤废物流不到10%的高比重(> 2.68)馏分是EC水平升高的主要来源。发现其余部分对环境的影响最小。根据获得的结果,建议对选煤厂进行改造,以最大程度地减少对煤waste石处置的环境关注。改进措施包括使用低成本的矿物螺旋线路从螺旋垃圾中去除黄铁矿,浮选进料和筛板弯流底流的脱硫。分离后,黄铁矿(高密度)级分(约占粗,细垃圾流的1%)将被分离/封装,细垃圾流脱水并与粗垃圾流共同处置。对处理和处置方法的拟议修改不仅可以最大程度地减少酸性矿山排水的产生,从而减少排放水中微量元素和EC的释放,而且还可以提高最终清洁煤产品的回收率和质量。

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