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A novel approach to rapidly purify acid mine drainage through chemically forming schwertmannite followed by lime neutralization

机译:通过化学形成schwertmannite然后石灰中和来快速净化酸性矿山排水的新方法

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Acid mine drainage (AMD) has been recognized as a major challenge to the global mining industry due to its environmental consequences. Lime neutralization has been a traditional treatment for AMD, but the abundance of iron and sulfate in AMD usually renders it ineffective by forming iron hydroxide and gypsum precipitate coating on the surface of lime. In light of ubiquitous biological mineralization phenomena present at AMD sites, a rapid chemical mineralization was developed to reduce iron and sulfate and recovery of iron from AMD prior to lime neutralization. Through a cyclic reduction-oxidation process by the addition of iron powder and hydrogen peroxide (H2O2), over 90% Fe3+ and 40% SO42- could be removed beforehand by forming schwertmannite. The pretreated AMD drastically reduced both the required lime slurry in the subsequent lime neutralization process and the amount of neutralized sludge. The resultant schwertmannite had a specific surface area of 3.9 m(2)/g and a formula of Fe8O8(OH)(4.5)(SO4)(1.75). This technique could reduce lime consumption, increase metal level in neutralized sludge, and harvest environmentally friendly materials. These results demonstrate that the integrated chemical mineralization and lime neutralization treatment is expected to be widely used in practical application. (C) 2019 Elsevier Ltd. All rights reserved.
机译:酸性矿山排水(AMD)由于其环境后果,已被公认为对全球采矿业的主要挑战。石灰中和一直是AMD的传统疗法,但是AMD中大量的铁和硫酸盐通常会通过在石灰表面形成氢氧化铁和石膏沉淀涂层而使其失效。鉴于AMD地点普遍存在生物矿化现象,因此开发了一种快速化学矿化方法,以减少石灰中和之前的铁和硫酸盐以及从AMD中回收铁。通过添加铁粉和过氧化氢(H2O2)的循环还原-氧化过程,可以预先通过形成schwertmannite去除90%以上的Fe3 +和40%SO42-。预处理的AMD大大减少了后续石灰中和过程中所需的石灰浆和中和的污泥量。所得的schwertmannite具有3.9 m(2)/ g的比表面积和Fe8O8(OH)(4.5)(SO4)(1.75)的分子式。该技术可以减少石灰的消耗,提高中和的污泥中的金属含量,并收获环保材料。这些结果表明,综合的化学矿化和石灰中和处理有望在实际应用中广泛使用。 (C)2019 Elsevier Ltd.保留所有权利。

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