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Research on submerged membrane bioreactor and its membrane fouling in treating dioscorea zingiberensis wastewater

机译:淹没式膜生物反应器及其膜污染处理姜黄废水的研究

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A membrane bioreactor (MBR) process was used to treat the dioscorea zingiberensis wastewater. The wastewater treatment station had put in operation for 8 months. The normal sludge concentration in MBR was more than 8000 mg/L. The results showed that the removal rates of pollutants were high, and the MBR could better resist impacting loading. But the COD concentration of effluent was not very low, so the wastewater should be treated by anaerobic or anoxic process at fist. The MBR process had the good effect to removal rate of NH3-N, indicating that the long sludge retention time in MBR made that nitrobacteria accumulated. Terminal restriction fragment length polymorphism (T-RFLP) was used to analyze the microbial community structure on the surface of membrane in order to study the biofouling of membrane of MBR. The results indicated that the biofilm formation induced the membrane fouling and that some specific phylogenetic group of bacteria, the Pseudomonas sp. probably played a major role in leading to the severe irreversible membrane biofouling.
机译:膜生物反应器(MBR)工艺用于处理薯os薯wastewater废水。废水处理站已经运行了8个月。 MBR中的正常污泥浓度超过8000 mg / L。结果表明,污染物去除率较高,MBR具有较好的抗负荷能力。但是废水的化学需氧量浓度不是很低,因此应首先采用厌氧或缺氧工艺处理废水。 MBR工艺对NH 3 -N的去除率有很好的影响,表明MBR中污泥停留时间长使得硝化细菌得以积累。为了研究MBR膜的生物污染,使用末端限制性片段长度多态性(T-RFLP)分析膜表面的微生物群落结构。结果表明,生物膜的形成引起了膜的污染,并且细菌的某些特定的系统发生群即假单胞菌属(Pseudomonas sp。)。可能在导致严重的不可逆膜生物污染方面起了主要作用。

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