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Hazard-free treatment and resource utilisation of electrolytic manganese residue: A review

机译:电解锰渣的无危害处理和资源利用:综述

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China has the largest output of electrolytic manganese metal (EMM), accounting for more than 98% of the world's total annual production. Meanwhile, it has also caused serious environmental pollution and damage, among which the main pollutant is electrolytic manganese residue (EMR). EMR contains a large amount of NH4--N, Mn, Mg, and other elements such as soluble sulphate, SeO2, and heavy metal elements. The unmanaged stockpiled EMR generally exposed to open air not only causes serious pollution in the surrounding surface water, groundwater, soil, air, and ecosystems, but also poses a serious threat to the health and survival of the residents in the surrounding area. For the EMM industry to support development and human society, the treatment and disposal of EMR must become more sustainable. This review provides a detail on the origin, main phase compositions, hazardous components of EMR, and status quo of hazard-free treatment and resource utilisation of EMR in the last 30 years. In particular, this study systematically summarizes applicability of different type of technologies to hazard-freely treat and utilize EMR, including valuable elements recovery, stabilisation/solidification and electrokinetic remediation, building materials, wastewater treatment materials, soil amendments, and other functional materials. In addition, the advantages and disadvantages of these technologies have also been scientifically evaluated. At the end of the review, existing challenges as well as future prospects of hazard-free treatment and resource utilisation of EMR are also discussed. (C) 2021 Elsevier Ltd. All rights reserved.
机译:中国拥有最大的电解锰金属产量(EMM),占世界总产量总产量的98%以上。同时,它还造成了严重的环境污染和损害,其中主要污染物是电解锰残留物(EMR)。 EMR含有大量的NH 4 - N,Mn,Mg和其他元素,例如可溶性硫酸盐,SeO 2和重金属元件。通常暴露于露天的非托管储存EMR不仅会导致周围地表水,地下水,土壤,空气和生态系统的严重污染,而且对周边地区的居民的健康和生存构成了严重威胁。对于支持发展和人类社会的EMM行业,EMR的处理和处置必须变得更加可持续。本综述提供了关于原产地,主要相位组成,EMR危险组成部分的详细信息,以及过去30年中EMR的危险处理和资源利用现状。特别是,该研究系统地总结了不同类型技术的适用性,自由地处理和利用EMR,包括有价值的元素回收,稳定/凝固和电动修复,建筑材料,废水处理材料,土壤修正和其他功能材料。此外,还在科学评估了这些技术的优点和缺点。在审查结束时,还讨论了现有的挑战以及未来的无危害治疗和EMR资源利用的前景。 (c)2021 elestvier有限公司保留所有权利。

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