Departamento de Edafología y Química Agrícola, Facultad de Ciencias, Universidad de Granada, Avda. de Fuente Nueva S/N, 18071, Granada, Spain.
Sci Rep. 2023 Jul 26;13(1):12120. doi: 10.1038/s41598-023-39266-4.
Acid mine drainage (AMD) poses serious consequences for human health and ecosystems. Novel strategies for its treatment involve the use of wastes. This paper evaluates the remediation potential of wastes from urban, mining and agro-industrial activities to address acidity and high concentrations of potentially toxic elements (PTE) in AMD. Samples of these waste products were spiked with an artificially prepared AMD, then pH, electrical conductivity (EC), and PTE concentrations in the leachates were measured. The artificial AMD obtained through oxidation of Aznalcóllar's tailing showed an ultra-acid character (pH - 2.89 ± 0.03) and extreme high electrical conductivity (EC - 3.76 ± 0.14 dS m). Moreover, most PTE were above maximum regulatory levels in natural and irrigation waters. Wastes studied had a very high acid neutralising capacity, as well as a strong capacity to immobilise PTE. Inorganic wastes, together with vermicompost from pruning, reduced most PTE concentrations by over 95%, while organic wastes retained between 50 and 95%. Thus, a wide range of urban, mining, and agro-industrial wastes have a high potential to be used in the treatment of AMD. This study provides valuable input for the development of new eco-technologies based on the combination of wastes (eg. Technosols, permeable reactive barriers) to remediate degraded environments.
矿山酸性排水(AMD)对人类健康和生态系统造成严重后果。处理 AMD 的新策略涉及废物的利用。本文评估了城市废物、矿业废物和农业工业废物修复 AMD 酸度和高浓度潜在有毒元素(PTE)的潜力。将这些废物样品与人工制备的 AMD 混合,然后测量浸出液的 pH 值、电导率(EC)和 PTE 浓度。通过氧化阿纳科拉尾矿获得的人工 AMD 具有极强的酸性(pH 值为-2.89±0.03)和极高的电导率(EC 值为-3.76±0.14 dS m)。此外,大多数 PTE 的浓度均超过了天然水和灌溉水中的最大监管水平。研究的废物具有非常高的酸中和能力,以及很强的固定 PTE 的能力。无机废物与修剪产生的蚯蚓粪一起,将大多数 PTE 浓度降低了 95%以上,而有机废物的保留率在 50%至 95%之间。因此,广泛的城市、矿业和农业工业废物具有很高的潜力可用于 AMD 的处理。本研究为开发基于废物组合的新型生态技术(如 Technosols、渗透反应屏障)提供了有价值的信息,用于修复退化的环境。