采用选择性沉淀和生物吸附技术相结合的方法处理酸性矿井排水:分步混合法实现酸性矿井排水的价值化和环境污染控制

Nguegang Beauclair, A. Ambushe
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引用次数: 0

摘要

本研究探索了利用氧化镁(MgO)的选择性沉淀和香蕉皮(BPs)的生物吸附来处理酸性矿井排水(AMD)并实现其价值化。处理链包括两个不同的阶段,即使用氧化镁选择性沉淀化学物质(步骤 1)和使用 BPs 抛光预处理后的 AMD(步骤 2)。在第 1 阶段,使用氧化镁对 2.0 升来自煤矿的 AMD 进行选择性沉淀和化学物质回收。结果显示,在不同的 pH 值梯度下,相关化学物质被沉淀和回收,其中 Fe(III) 在 pH 值≤4 时沉淀,Al 在 pH 值≥4-5 时沉淀,Fe(II)、Mn 和 Zn 在 pH 值≥8 时沉淀,而 Ca 和 SO42─ 则在整个 pH 值范围内沉淀。在第 2 阶段,预处理后的 AMD 水使用 BPs 进行抛光。结果表明,pH 值从 1.7 整体升高到 10,化学物质的去除率如下:Al、Cu 和 Zn 的去除率分别为 100%,≥ Fe 和 Mn 的去除率分别为 99.99%,≥ Ni 的去除率为 99.93%,≥ SO42─ 的去除率为 90%。化学处理步骤清除了部分污染物,而生物吸附步骤则作为抛光阶段清除了残留污染物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The treatment of acid mine drainage using a combination of selective precipitation and bio-sorption techniques: A hybrid and step-wise approach for AMD valorization and environmental pollution control
In this study, selective precipitation using magnesium oxide (MgO) and bio-sorption with banana peels (BPs) were explored for the treatment and valorization of acid mine drainage (AMD). The treatment chain comprised two distinct stages of which selective precipitation of chemical species using MgO (step1) and polishing of pre-treated AMD using BPs (step 2). In stage 1, 2.0 L of AMD from coal mine were used for selective precipitation and recovery of chemical species using MgO. The results revealed that chemical species of concern were precipitated and recovered at different pH gradients with Fe(III) precipitated at pH ≤ 4, Al at pH ≥ 4-5, Fe(II), Mn and Zn at pH ≥ 8 while Ca and SO42─ were precipitated throughout the pH range. In stage 2, the pre-treated AMD water was polished using BPs. The results revealed an overall increase of pH from 1.7 to 10, and substantial removal of chemical species in the following removal efficiency: Al, Cu and Zn (100% each), ≥ Fe and Mn (99.99% each), ≥ Ni (99.93%), and ≥ SO42─ (90%). The chemical treatment step removed pollutants partially, whereas the bio-sorption step acted as a polishing stage by removing residual pollutants.
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