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Effect of endogenous metabolisms on survival and activities of denitrifying phosphorus removal sludge under various starvation conditions

机译:内源性代谢对各种饥饿条件下反硝化磷去除污泥的存活和活性的影响

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摘要

Denitrifying phosphorus removal sludge are usually faced with various famine environments in wastewater treatment plants (WWTPs). Endogenous metabolisms under aerobic, anoxic, and anaerobic starved conditions were characterized to investigate their impact on survival and activities of denitrifying polyphosphate accumulating organisms (DPAOs). DPAOs utilized intracellular polymers to survive and presented diverse consumed priorities of PHA types under various starvations. The biomass decay rate was approximately 2.7 and 1.7 times lower for aerobic condition than for anoxic and anaerobic conditions owing to the maximum maintenance energy requirement for aerobic condition (68.6 mmol/C-molVSS ATP). During short-term starvations, significant activity decay for anaerobic starved sludge was attributed to its distinctive endogenous metabolisms. For longterm starvations, the higher amounts and preponderant type of PHA (PHB) reserve favored to the greater DPAO activities for anoxic starved sludge. The results show that anoxic condition may be an implementable strategy for maintaining denitrifying phosphorus removal performance in WWTPs.
机译:反硝化磷去除污泥通常面临废水处理厂(WWTPS)中的各种饥荒环境。有氧,缺氧和厌氧饥饿条件下的内源性代谢的特征在于研究它们对反氧化多磷酸盐积聚生物(DPAOS)的生存和活性的影响。 DPAOS利用细胞内聚合物在各种饥饿下存活并呈现不同消耗的PHA类型的优先级。由于有氧病症的最大维护能量要求(68.6mmol / C-Molvss ATP),生物质衰减率比对于缺氧能量要求(68.6mmol / c-molvss ATP)的最高维护能量要求,生物质衰减率约为2.7%,比氧毒性和厌氧条件降低1.7倍。在短期饥饿期间,厌氧饥饿污泥的显着活性衰减归因于其独特的内源性代谢。对于Longterm饥饿,PHA(PHB)储备的较高量和优先型的PHA(PHB)的储备对缺氧饥饿污泥的更大的DPAO活性。结果表明,缺氧条件可以是维持WWTPS中的磷去除性能的可实现策略。

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