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首页> 外文期刊>Journal of Cleaner Production >Drainage properties of technosols made of municipal solid waste incineration bottom ash and coal combustion residues on potash-tailings piles: A lysimeter study
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Drainage properties of technosols made of municipal solid waste incineration bottom ash and coal combustion residues on potash-tailings piles: A lysimeter study

机译:Potash-Teatings Pi桩的城市固体废物焚烧底灰和煤炭燃烧残留物的推广性能:一项溶血仪研究

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摘要

Mining is one of the most essential economic activities. However, mining produces large volumes of waste. A prominent example is the potash industry, which generates millions of tons of tailings, approximately 90% of which are comprised of sodium chloride. Precipitation events dissolve this sodium chloride and generate saline drainage. To minimize the amount of brine, the University of Kassel, in partnership with the Schmeisky environmental consultancy, is attempting to develop an evapotranspiration cover for potash tailings piles based on technosol application. To further the research in this field and to assess the drainage quality of technosols used for the evapotranspiration cover of mining tailings, one experiment with 8 nonweighing lysimeters was conducted above a potash tailings pile in Heringen, Germany. Lysimeters were filled with four different technosols composed of municipal solid waste incineration bottom ash and coal combustion residues. During three hydrological years, the drainage amount, pH and electrical conductivity were evaluated on a weekly basis. Monthly analyses included the concentrations of chloride, sodium, sulfate, calcium, potassium, nitrate, magnesium and ammonium, as well as chromium, nickel, zinc, copper, lead, cadmium, mercury and arsenic. Overall, it was observed that the pH of the drainage increased, whereas its electrical conductivity decreased due to the leaching of ions. Chemical elements generally decreased to lower limits for waste use. Moreover, higher ionic loads were verified in winter, and technosols with larger proportions of municipal solid waste incineration bottom ash presented higher total ionic loads during the evaluation time of the experiment. (c) 2020 Elsevier Ltd. All rights reserved.
机译:采矿是最重要的经济活动之一。然而,采矿生产大量废物。一个突出的例子是钾肥行业,它产生数百万吨尾矿,其中约90%由氯化钠组成。沉淀事件溶解该氯化钠并产生盐水排水。为了尽量减少盐水大学与施生环境咨询合作,试图基于技术奖励应用开发钾肥尾矿桩的蒸发覆盖。为了进一步研究该领域,并评估用于蒸煮尾矿蒸发覆盖的探测器的排水质量,一个有8个非重量型型号的实验在德国赫林根桩尾矿桩上面进行。 Lysimers填充了由城市固体废物焚烧底灰和煤燃烧残留的四种不同的技术醇。在三个水文岁月内,每周评估排水量,pH和导电性。每月分析包括氯化物,钠,硫酸钠,钙,钾,硝酸盐,镁和铵,以及铬,镍,锌,铜,铅,镉,汞和砷。总的来说,观察到引流的pH增加,而其导电性由于离子的浸出而降低。化学元素通常降低到废物使用的下限。此外,冬季验证了较高的离子载荷,并且在实验的评估时间期间,具有较大比例的城市固体废物焚烧底部灰分呈现较高的总离子载荷。 (c)2020 elestvier有限公司保留所有权利。

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