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Treatment of acidic sulfate-containing wastewater using revolving algae biofilm reactors: Sulfur removal performance and microbial community characterization

机译:使用旋转藻类生物膜反应器处理含酸性硫酸盐废水:硫去除性能和微生物群落表征

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摘要

Industries such as mining operations are facing challenges of treating sulfur-containing wastewater such as acid mine drainage (AMD) generated in their plant. The aim of this work is to evaluate the use of a revolving algal biofilm (RAB) reactor to treat AMD with low pH (3.5-4) and high sulfate content (1-4 g/L). The RAB reactors resulted in sulfate removal efficiency up to 46% and removal rate up to 0.56 g/L-day, much higher than those obtained in suspension algal culture. The high-throughput sequencing revealed that the RAB reactor contained diverse cyanobacteria, green algae, diatoms, and acid reducing bacteria that contribute the sulfate removal through various mechanisms. The RAB reactors also showed a superior performance of COD, ammonia and phosphorus removal. Collectively, the study demonstrated that RAB-based process is an effective method to remove sulfate in wastewater with small footprint and can be potentially installed in municipal or industrial wastewater treatment facilities.
机译:诸如采矿业务的行业正面临治疗含硫废水的挑战,例如在其植物中产生的酸性矿沟渠排水(AMD)。这项工作的目的是评估使用旋转藻类生物膜(RAB)反应器,以处理低pH(3.5-4)和高硫酸盐含量(1-4g / L)的AMD。 Rab反应器导致硫酸盐去除效率高达46%,除去率高达0.56克/天,远高于悬浮藻类培养物中获得的效率。高通量测序显示RAB反应器含有不同的蓝藻,绿藻,硅藻和酸还原细菌,这些细菌通过各种机制促进硫酸盐去除。 Rab反应器还显示出鳕鱼,氨和去除的优异性能。本研究表明,基于RAB的方法是一种有效的方法,可以采用小占地面积清空废水中的硫酸盐,并且可以在市政或工业废水处理设施中安装。

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