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Evaluating a strategy for maintaining nitrifier activity during long-term starvation in a moving bed biofilm reactor (MBBR) treating reverse osmosis concentrate

机译:评价在处理反渗透浓缩液的移动床生物膜反应器(MBBR)中长期饥饿期间维持硝化器活性的策略

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A two-stage moving bed biofilm reactor (MBBR) was applied at the Bundamba advanced water treatment plant (AWTP) (Queensland, Australia) to treat the reverse osmosis concentrate (ROC) for inorganic nutrient removal. One of the operational challenges for the system was to cope with the large fluctuations of the ROC flow. This study investigated the decay rates of ammonia-oxidizing bacteria (AOB) and nitrite-oxidizing bacteria (NOB) and biofilm detachment in MBBR during starvation for up to one month. An intermittent aeration strategy of 15 min aeration every 6 h was applied. This study also evaluated the activity recovery of both AOB and NOB after normal operation was resumed. The results showed that the activity loss of AOB and NOB was relatively minor (<20%) within 10 days of starvation, which ensured relatively quick recovery of ammonium removal when normal operation resumed. In contrast, the AOB and NOB activity loss reached 60-80% when the starvation time was longer than 20 days, resulting in slower recovery of ammonium removal after starvation. Starvation for less than 20 days didn't result in an apparent biomass detachment from carriers.
机译:两级移动床生物膜反应器(MBBR)在Bundamba先进水处理厂(AWTP)(澳大利亚昆士兰州)进行了处理,以处理反渗透浓缩液(ROC)以去除无机营养。该系统的操作挑战之一是应对ROC流量的巨大波动。这项研究调查了饥饿期长达1个月的MBBR中氨氧化细菌(AOB)和亚硝酸盐氧化细菌(NOB)的腐烂率以及生物膜脱落。采用了每6小时进行15分钟通气的间歇通气策略。这项研究还评估了恢复正常手术后AOB和NOB的活性恢复。结果表明,饥饿后10天内AOB和NOB的活性损失相对较小(<20%),这确保了恢复正常操作后铵去除的恢复较快。相反,当饥饿时间超过20天时,AOB和NOB活性损失达到60-80%,导致饥饿后铵去除的恢复较慢。饥饿不足20天并没有导致明显的生物量与载体分离。

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