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Manganese and Sulfate Removal from a Synthetic Mine Drainage Through Pilot Scale Bioreactor Batch Experiments

机译:通过中试规模的生物反应器批处理实验从合成矿井排水中去除锰和硫酸盐

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摘要

Mine drainage is a significant problem in the Appalachian Plateau due to elevated metal and solute concentrations. Most metals may be removed by oxidation/ precipitation or natural buffering, but Mn is more difficult to remove due to its higher solubility. Some mine drainages in southeastern Kentucky have average sulfate and Mn concentrations exceeding 1,300 and 30 mg L~(-1), respectively. Manganese does not readily form sulfidic minerals, and MnS precipitation following sulfate reduction has not proven to be a promising pathway for permanent Mn immobilization. Our study involved batch experiments with five different organic carbon sources in combination with five inorganic substrates to treat a simulated mine drainage with pH 6.2 and Mn and sulfate concentrations of 90 and 1,500 mg/L, respectively. The Mn removal capacity varied widely between treatment mixtures, from <10 to 100%. Sulfate removal showed a similar divergence, ranging from <10 to >80%. The most effective treatment was provided by the biosolids or wood mulch amendments in combination with the creek sediment. Sulfate reduction levels were not stoichiometrically matched with MnS formation, suggesting that the prevalent Mn removal mechanisms were sorption and precipitation as oxide, oxy-hydroxide and carbonate, rather than Mn-sulfide phases.
机译:由于金属和溶质浓度升高,矿山排水在阿巴拉契亚高原是一个重大问题。大多数金属可以通过氧化/沉淀或自然缓冲来去除,但是由于锰的溶解度较高,因此更难以去除。肯塔基州东南部的一些矿井排水口的平均硫酸盐和锰浓度分别超过1300和30 mg L〜(-1)。锰不易形成硫化矿物,硫酸盐还原后的MnS沉淀尚未证明是永久固定Mn的有前途的途径。我们的研究涉及使用五种不同的有机碳源与五种无机底物的批处理实验,以模拟pH 6.2和Mn和硫酸盐浓度分别为90和1,500 mg / L的矿井排水。锰的去除能力在处理混合物之间变化很大,从<10%到100%。硫酸盐去除表现出相似的差异,范围从<10%到> 80%。最有效的处理方法是将生物固体或木料覆盖物与小溪沉积物结合使用。硫酸盐还原水平与MnS的形成在化学计量上不匹配,这表明主要的Mn去除机理是作为氧化物,羟基氧化物和碳酸盐的吸附和沉淀,而不是Mn-硫化物相。

著录项

  • 来源
    《Mine water and the environment》 |2010年第2期|P.144-153|共10页
  • 作者单位

    Department of Plant and Soil Sciences, University of Kentucky,Lexington, KY 40546, USA Department of Forestry, University of Kentucky, Lexington,KY 40546, USA;

    Department of Plant and Soil Sciences, University of Kentucky,Lexington, KY 40546, USA Department of Forestry, University of Kentucky, Lexington,KY 40546, USA;

    Department of Plant and Soil Sciences, University of Kentucky,Lexington, KY 40546, USA Department of Forestry, University of Kentucky, Lexington,KY 40546, USA;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    bioreactor; manganese removal; mine drainage; sorption; sulfate reduction; sulfate/sulfide; precipitation;

    机译:生物反应器除锰矿井排水吸附硫酸盐还原硫酸盐/硫化物;沉淀;

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