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Effect of backwashing biologically activated carbon on coagulability of organics in surface water

机译:反洗生物活性炭对地表水中有机物凝固性的影响

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This study shows if biologically activated carbon (BAC) is backwashed at the correct frequency, a number of benefits can be derived in addition to aiding the subsequent coagulation process. Previous studies have shown that the BAC improves the removal of dissolved organic carbon (DOC) by subsequent coagulation by decreasing non-coagulable dissolved organic carbon (NC-DOC). However, the actual mechanism of such observation or optimising strategies of NC-DOC removal is unknown. The impact of backwashing on BAC reactor performance in terms of NC-DOC removal and microbial community structure was investigated. A laboratory scale BAC column was operated for more than five months with backwashing at once every five days, but in one cycle it was operated without backwashing for 14 days and the effluent collected at different times from the last backwash was subjected to enhanced coagulation (EC). All the effluent of BAC collected at different days depicted better floc forming characteristics than the feed water which is raw surface water. The effluent collected on day three from the last backwash (BAC-3d) contained the least amount (1.64 mg/L) of NC-DOC despite the highest DOC (3.89 mg/L) of all effluents. The coagulant requirement (5 mg-Fe~(3+)/mg-DOC) was minimal for BAC-3d effluent among raw water and all other BAC effluent water samples. This is remarkable given the raw water contained 2.76 mg/L of NC-DOC. The microbial community on BAC granules on day three contained a higher abundance of biodegradable organic matter (BOM) removing microorganisms and low abundance of opportunistic pathogens. Similar performance in terms of DOC removal with the backwash was also observed in the continuous operation of other BAC columns. Possible backwash frequency that optimises the BAC/EC and derives many other benefits is proposed. The BAC/EC combination could help solve many emerging issues cost-effectively hence, needs further investigation.
机译:本研究表明,如果在正确的频率被反洗的生物激活的碳(BAC),除了辅助后续的凝血过程之外,还可以衍生多种益处。先前的研究表明,通过减少未凝固的溶解有机碳(NC-DOC),BAC通过随后的凝结来改善溶解的有机碳(DOC)。然而,这种观察或优化NC-Doc去除的策略的实际机制是未知的。研究了在NC-DOC去除和微生物群落结构方面对BAC反应器性能的反冲击和微生物群落结构的影响。实验室标度BAC柱运行超过五个月,每五天一次反洗,但在一个循环中,它在没有反冲洗的情况下运行14天,并且在最后一次反洗的不同时间收集的流出物受到增强的凝血(EC )。在不同的日子中收集的Bac的所有流出物描绘了比为原始地表水的进料水更好的絮状物形成特性。尽管所有流出物的最高DOC(3.89mg / L),但在最后一次反冲洗(BAC-3D)的第三天收集的流出物含有最小的数量(1.64mg / L)NC-DOC。凝结剂要求(5mg-Fe〜(3 +)/ mg-Doc)对于原水和所有其他BAC出水水样中的BAC-3D流出物是最小的。鉴于原水含有2.76 mg / L的NC-DOC,这是显着的。第三天的BAC颗粒上的微生物群落含有较高丰富的可生物降解的有机物(BOM)去除微生物和低丰度的机会主义病原体。在其他BAC柱的连续运行中也观察到在DOC移除的DOC移除方面的类似性。可能的反冲洗频率优化BAC / EC并提出了许多其他优点。 BAC / EC组合可以帮助解决许多新兴问题,因此需要进一步调查。

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