Pérez-López Rafael, Nieto José Miguel, de Almodóvar Gabriel Ruiz
Department of Geology, University of Huelva, Campus El Carmen, E-21071 Huelva, Spain.
Chemosphere. 2007 Apr;67(8):1637-46. doi: 10.1016/j.chemosphere.2006.10.009. Epub 2007 Jan 25.
The production of Acid Mine Drainage (AMD) as a result of the oxidative dissolution of sulphides is one of the main pollution problems affecting natural watercourses in mining environments with sulphide-rich residues. In this work, the generation of AMD was prevented by means of the addition of fly ash to sulphide-rich residues in non-saturated column experiments. A column experiment filled with a pyrite-rich sludge with artificial irrigation leached acid drainages (pH approx. 2) containing high concentrations of sulphate, iron and other metals. However, non-saturated column experiments filled with pyritic-rich sludge and fly ash drained leachates characterized by alkaline pH (pH up to 10), low sulphate concentration, and lack of iron and other metals in solution. The pyrite oxidative dissolution at high pH, as a consequence of the leaching of fly ash, favours the metal precipitation inside the column (mainly iron), the coating of pyrite grains, and the attenuation of the oxidation process, resulting in a great improvement in the quality of the leachates.
硫化物的氧化溶解导致酸性矿山排水(AMD)的产生,这是影响富含硫化物残渣的采矿环境中天然水道的主要污染问题之一。在这项工作中,通过在非饱和柱实验中向富含硫化物的残渣中添加粉煤灰来防止AMD的产生。一个填充有富含黄铁矿污泥的柱实验,通过人工灌溉淋滤出含有高浓度硫酸盐、铁和其他金属的酸性排水(pH约为2)。然而,填充有富含黄铁矿污泥和粉煤灰的非饱和柱实验排出的渗滤液的特点是碱性pH(pH高达10)、低硫酸盐浓度以及溶液中缺乏铁和其他金属。由于粉煤灰的淋滤,在高pH下黄铁矿的氧化溶解有利于柱内金属(主要是铁)的沉淀、黄铁矿颗粒的包覆以及氧化过程的衰减,从而导致渗滤液质量有很大改善。