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Hybrid process of BAC and sMBR for treating polluted raw water

机译:BAC与sMBR混合工艺处理污染原水

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摘要

The hybrid process of biological activated carbon (BAC) and submerged membrane bioreactor (sMBR) was evaluated for the drinking water treatment from polluted raw water, with the respective hydraulic retention time of 0.5 h. The results confirmed the synergetic effects between the BAC and the subsequent sMBR. A moderate amount of ammonium (54.5%) was decreased in the BAC; while the total removal efficiency was increased to 89.8% after the further treatment by the sMBR. In the hybrid process, adsorption of granular activated carbon (in BAC), two stages of biodegradation (in BAC and WEIR), and separation by the membrane (in sMBR) jointly contributed to the removal of organic matter. As a result, the hybrid process managed to eliminate influent DOC, UV254, CODMn, TOC, BDOC and AOC by 26.3%, 29.9%, 22.8%, 27.8%, 57.2% and 49.3%, respectively. Due to the pre-treatment effect of BAC, the membrane fouling in the downstream sMBR was substantially mitigated.
机译:评价了生物活性炭(BAC)和浸没膜生物反应器(sMBR)的混合过程,用于处理受污染原水的饮用水,相应的水力停留时间为0.5 h。结果证实了BAC和随后的sMBR之间的协同作用。 BAC中的铵盐含量适中(54.5%); sMBR进一步处理后,总去除效率提高到89.8%。在混合过程中,颗粒状活性炭的吸附(在BAC中),生物降解的两个阶段(在BAC和WEIR中)以及通过膜分离(在sMBR中)共同促进了有机物的去除。结果,混合工艺设法将进水DOC,UV254,CODMn,TOC,BDOC和AOC分别减少了26.3%,29.9%,22.8%,27.8%,57.2%和49.3%。由于BAC的预处理作用,下游sMBR中的膜结垢得到了显着缓解。

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