Recent advances in acid mine drainage treatment through hybrid technology: Comprehensive review of scientific literature

Yudha Gusti Wibowo , Hana Safitri , Khairurrijal Khairurrijal , Tarmizi Taher , La Ode Arham , Jarwinda , Alio Jasipto , M. Akbari Danasla , Rahmat Fadhilah , Edo Kharisma Army , Hafid Zul Hakim , Ahmad Tawfiequrahman Yuliansyah , Himawan Tri Murti Bayu
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Abstract

Industrial activities have surged in recent years, resulting in severe environmental and human health consequences. Coal mining, in particular, has emerged as a major contributor to environmental degradation, notably through water pollution. Acid Mine Drainage (AMD) refers to the contaminated water generated by mining operations, characterized by low pH levels and high concentrations of heavy metals. Given the substantial impact of AMD on the environment, the development of effective treatment methods is imperative. This review aims to provide a comprehensive and in-depth understanding of AMD treatment, with a specific emphasis on hybrid technologies. To the best of our knowledge, this review represents the first systematic attempt to explore the application of hybrid technologies for AMD treatment. The mapping and PRISMA 2020 methodology were employed to ensure a thorough and comprehensive analysis of the available literature. This paper extensively examines the physicochemical characteristics of AMD, elucidating both individual treatment methods and the emerging field of hybrid treatment approaches. Furthermore, meticulous performance evaluations of each method are conducted, shedding light on the existing challenges and future research prospects in this domain. By addressing the current gaps in our understanding of hybrid technologies for AMD treatment, this paper makes a significant contribution to the existing body of knowledge. The findings presented here offer valuable insights into the development of efficient and sustainable treatment strategies for AMD. Ultimately, this review serves as a valuable resource for researchers, practitioners, and policymakers seeking to mitigate the adverse effects of AMD and promote environmental stewardship in mining operations.

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通过混合技术处理酸性矿井排水的最新进展:科学文献综述
近年来,工业活动激增,造成了严重的环境和人类健康后果。煤炭开采尤其是水污染,已成为环境退化的主要因素。酸性矿井排水(AMD)是指采矿作业产生的污染水,其特点是 pH 值低、重金属含量高。鉴于酸性矿井排水对环境的重大影响,开发有效的处理方法势在必行。本综述旨在全面、深入地介绍 AMD 处理方法,重点介绍混合技术。据我们所知,本综述是探索混合技术在 AMD 治疗中应用的首次系统性尝试。为了确保对现有文献进行彻底、全面的分析,我们采用了绘图和 PRISMA 2020 方法。本文广泛研究了 AMD 的物理化学特征,阐明了个别治疗方法和新兴的混合治疗方法领域。此外,还对每种方法进行了细致的性能评估,揭示了该领域的现有挑战和未来研究前景。通过解决目前我们对混合技术治疗老年黄斑病变认识上的差距,本文对现有知识体系做出了重大贡献。本文的研究结果为开发高效、可持续的老年黄斑病变治疗策略提供了宝贵的见解。最终,这篇综述将成为研究人员、从业人员和政策制定者的宝贵资源,帮助他们减轻 AMD 的不利影响,促进采矿作业中的环境管理。
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来源期刊
Environmental Nanotechnology, Monitoring and Management
Environmental Nanotechnology, Monitoring and Management Environmental Science-Water Science and Technology
CiteScore
13.00
自引率
0.00%
发文量
132
审稿时长
48 days
期刊介绍: Environmental Nanotechnology, Monitoring and Management is a journal devoted to the publication of peer reviewed original research on environmental nanotechnologies, monitoring studies and management for water, soil , waste and human health samples. Critical review articles, short communications and scientific policy briefs are also welcome. The journal will include all environmental matrices except air. Nanomaterials were suggested as efficient cost-effective and environmental friendly alternative to existing treatment materials, from the standpoints of both resource conservation and environmental remediation. The journal aims to receive papers in the field of nanotechnology covering; Developments of new nanosorbents for: •Groundwater, drinking water and wastewater treatment •Remediation of contaminated sites •Assessment of novel nanotechnologies including sustainability and life cycle implications Monitoring and Management papers should cover the fields of: •Novel analytical methods applied to environmental and health samples •Fate and transport of pollutants in the environment •Case studies covering environmental monitoring and public health •Water and soil prevention and legislation •Industrial and hazardous waste- legislation, characterisation, management practices, minimization, treatment and disposal •Environmental management and remediation
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