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Comparative study on performance of yeast and bacterial membrane bioreactors for high salinity wastewater treatment

机译:酵母菌和细菌膜生物反应器处理高盐度废水的性能比较研究

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摘要

Two laboratory-scale membrane bioreactor systems were investigated to treat high saline wastewater containing 1,000 mg/L COD and 32 g/L NaCl, namely: 1. the yeast membrane bioreactor (YMBR) 2. bacterial membrane bioreactor (BMBR). COD removal of both processes was above 90% at a hydraulic retention time (HRT) of 5 hours (volumetric loading of 5 kg COD/m~3.d), sludge retention time (SRT) of 50 days (the MLSS of above 14 g/L and the F/M of 0.4 d~(-1)). Under these operating conditions, the YMBR could run at a ten-fold lower transmembrane pressure with significantly reduced membrane fouling rate compared to BMBR. This may be because of low production of adhesive extracellular polymers (ECP) and the secondary filtration layer formed from large yeast cells. ECP production of bacterial sludge was increased considerably at high salt concentrations (32 g/L and 45 g/L) and long SRTs. For the bacterial sludge, the increased salinity led to increase in ECP, whereas the ECP content of the yeast sludge was relatively small.
机译:研究了两个实验室规模的膜生物反应器系统,以处理含1,000 mg / L COD和32 g / L NaCl的高盐废水,即:1.酵母膜生物反应器(YMBR)2.细菌膜生物反应器(BMBR)。在5小时的水力停留时间(HRT)(体积负荷为5 kg COD / m〜3.d),50天的污泥停留时间(SRT)(MLSS大于14)下,两个过程的COD去除率均超过90% g / L和F / M为0.4 d〜(-1))。在这些操作条件下,与BMBR相比,YMBR可以在低十倍的跨膜压力下运行,膜的结垢率大大降低。这可能是由于粘附的细胞外聚合物(ECP)的产量低以及由大型酵母细胞形成的二级过滤层所致。在高盐浓度(32 g / L和45 g / L)和长SRT的条件下,细菌污泥的ECP产量显着增加。对于细菌污泥,盐度的增加导致ECP的增加,而酵母污泥中ECP的含量相对较小。

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