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Assessment of sulphate and iron reduction rates during reactor start-up for passive anaerobic co-treatment of acid mine drainage and sewage

机译:对酸性矿泉和污水的无源厌氧协处理反应堆初创过程中的硫酸盐和耐铁率评估

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摘要

Passive co-treatment of municipal wastewater (MWW) and acid mine drainage (AMD) has shown promise over the past decade for simultaneous remediation of these widespread waste streams. To investigate the efficiency and rates of iron and sulphate reduction during the start-up of anaerobic co-treatment using a novel, process-based kinetic modeling approach, twenty-four replicate 1L-cubitainers containing a 5:2 MWW: AMD mixture and Kaldnes plastic media were sealed, incubated and sacrificially sampled for key water quality parameters over 30 days. Alkalinity generation, pH increase and efficient removal of iron, aluminum and phosphate were observed. The observed sulphate and iron reduction rates were relatively slow, and the removal of sulphate, organic carbon and nitrogen was modest and incomplete. Overall, the results confirm the efficacy of AMD-MWW co-treatment for removal of key pollutants, but also highlight factors that may limit this emerging technology.
机译:在过去十年中,城市废水(MWW)和酸性矿山排水(AMD)的被动共同治疗在过去十年中,同时修复这些广泛的废物流。 探讨使用基于过程的动力学建模方法的厌氧共同治疗初期氧化铁和硫酸盐减少的效率和速率,含有5:2mw:AMD混合物和Kaldnes的二十四个复制1L封闭剂 将塑料介质密封,孵育和牺牲,以超过30天的关键水质参数。 观察到碱度产生,pH增加和高效除去铁,铝和磷酸盐。 所观察到的硫酸铁和还原速率相对较慢,除去硫酸盐,有机碳和氮气是适度和不完整的。 总体而言,结果证实了AMD-MWW合作治疗用于去除关键污染物的功效,而且还突出了可能限制该新兴技术的因素。

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