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Performance of a Semi-passive Sulfate-reducing Bioreactor for Acid Mine Drainage Treatment and Prediction of Environmental Behavior of Post-treatment Residues

机译:用于酸性矿硫酸盐降低生物反应器的性能,用于治疗后残留物的环境行为预测

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摘要

The performance of a semi-passive sulfate-reducing bioreactor (SPSRB) was studied for the treatment of highly contaminated AMD (pH = 4.2, [Fe](i): 1600 to 6400 mg/L). The potential mobility of contaminants (metals and sulfates) from AMD post-treatment residue was also evaluated (e.g. metal speciation, weathering cells) to ensure their proper management. Sodium lactate (3500 mg/L) was continuously added to three SPSRBs composed of 60% birch chips, 20% calcite, and 20% poultry manure to enhance microbial activity. The SPSRBs were very effective during the total duration of the experiment (266 days) for the removal of Fe (average removal efficiency of 97.7%), Cd ( 99.4%), Cr (99.3%), Cu (99.9%), Ni (99.2%), Pb (99.8%), Al (92.4%), and Zn (90.7%). The study of the physicochemical stability of the post-treatment residues showed a net positive neutralization potential of 22.4 kg CaCO3/t and a NP/NA ratio of 1.80. Although the metal speciation estimates revealed that Fe, Mn, Ni, and Zn were mainly retained in the biofilter as oxides or hydroxides, a significant proportion of metals were also present in the form of sulfides, or bound to organic matter as exchangeable/soluble sulfate fractions. Finally, the kinetic tests (weathering cells) confirmed the high risk of metal release if the post-treatment residues are disposed of in an oxidizing environment.
机译:研究了半无源硫酸盐还原生物反应器(SPSRB)的性能,用于治疗高度污染的AMD(pH = 4.2,[Fe](I):1600至6400 mg / L)。还评估了来自AMD后处理残留物的污染物(金属和硫酸盐)的潜在迁移率(例如,金属物种,耐候性细胞),以确保其适当的管理。将乳酸钠(3500mg / L)连续加入到由60%桦木屑,20%方解石和20%家禽粪肥组成的三种SPSRB中以增强微生物活性。在实验的总持续时间(266天)中,SPSRB非常有效,用于去除Fe(平均除去效率为97.7%),Cd(> 99.4%),Cr(99.3%),Cu(99.9%),Ni (99.2%),Pb(99.8%),Al(92.4%)和Zn(90.7%)。对后处理残留物的物理化学稳定性的研究表明,净阳性中和电位为22.4kg CaCO 3 / T和NP / Na比为1.80。虽然金属形状估计显示Fe,Mn,Ni和Zn主要在生物过滤器中作为氧化物或氢氧化物保留,但也以硫化物的形式存在显着比例的金属,或者与可更换/可溶性硫酸盐结合有机物分数。最后,如果在氧化环境中处理后处理残留物,则动力学测试(风化细胞)证实了金属释放的高风险。

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  • 来源
    《Mine water and the environment》 |2020年第4期|769-784|共16页
  • 作者单位

    Univ Quebec Inst Natl Rech Sci Ctr Eau Terre & Environm 490 Rue Couronne Quebec City PQ G1K 9A9 Canada;

    Univ Quebec Abitibi Temiscamingue Inst Rech Mines & Environm 445 Blvd Univ Rouyn Noranda PQ J9X 5E4 Canada;

    Agn Eagle Mines Ltd CSD 10 200 Route Preissac Rouyn Noranda PQ J0Y 1C0 Canada;

    Univ Quebec Inst Natl Rech Sci Ctr Eau Terre & Environm 490 Rue Couronne Quebec City PQ G1K 9A9 Canada;

    Univ Quebec Inst Natl Rech Sci Ctr Eau Terre & Environm 490 Rue Couronne Quebec City PQ G1K 9A9 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mining effluent; Biofilter; Iron; Metal; Metal speciation; Kinetic test;

    机译:采矿流出物;生物过滤器;铁;金属;金属形态;动力学测试;

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