Susanna Mancini, Marco Casale, Antonio Tazzini, G. Dino
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Extractive waste and tailings, if suitably characterized, can be used to improve and make sustainable the works connected to the management of mining activities. The qualitative–quantitative characterization of EW is essential for subsequent reuse and for assessing the risk to human health and the extent of environmental impacts in the various matrices. The application areas vary according to the type of waste and mining tailings, the morphological characteristics of the deposits, and the geological, geomorphological, and logistic context of the area. Integrated protocols for sustainable EW exploitation and positive impacts on the economic, environmental, and technological/social level are analyzed. 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引用次数: 0
摘要
采矿活动中会产生大量采掘废物(EW),包括尾矿。近年来,线性经济模式("拿了就用,用了就扔 "的方法)已被强调可持续利用和回收 EW 的循环方法所取代。最佳可得技术(BATs)等创新协议的开发,旨在改进技术和工艺,使采矿活动更具可持续性,并生产可再生、高性能的绿色材料。如果对采掘废物和尾矿进行适当的表征,就可以用来改进采矿活动管理的相关工作,并使其具有可持续性。对 EW 进行定性和定量分析对于后续再利用以及评估各种基质对人类健康的风险和对环境的影响程度至关重要。应用领域因废物和采矿尾矿的类型、矿床形态特征以及该地区的地质、地貌和物流环境而异。本文分析了可持续 EW 开发的综合规程以及对经济、环境和技术/社会层面的积极影响。本文旨在概述与采掘废物(EW)管理和潜在开发利用相关的挑战和潜力,以回收原材料(RM)、关键原材料(CRM)和二次原材料(SRM)。
Use and Recovery of Extractive Waste and Tailings for Sustainable Raw Materials Supply
Extractive waste (EW), including tailings, is produced in large quantities during mining activities. In recent years, the linear economic model (“take-use-and-throw” approach) has been replaced by a circular approach, emphasizing the sustainable use and recovery of EW. The development of innovative protocols, such as Best Available Techniques (BATs), which aim at the technological and process improvement of more sustainable mining activities and at the production of renewable, highly performing green materials, has led to technological advancements, expertise in sustainability, and a reduced ecological footprint, potentially causing positive economic and social impacts and reducing environmental ones. Extractive waste and tailings, if suitably characterized, can be used to improve and make sustainable the works connected to the management of mining activities. The qualitative–quantitative characterization of EW is essential for subsequent reuse and for assessing the risk to human health and the extent of environmental impacts in the various matrices. The application areas vary according to the type of waste and mining tailings, the morphological characteristics of the deposits, and the geological, geomorphological, and logistic context of the area. Integrated protocols for sustainable EW exploitation and positive impacts on the economic, environmental, and technological/social level are analyzed. The present paper aims at providing an overview of challenges and potentialities connected to extractive waste (EW) management and potential exploitation to recover raw materials (RM), critical raw materials (CRM), and secondary raw materials (SRM).