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Evaluation of textile wastewater treatment in sequential anaerobic moving bed bioreactor - aerobic membrane bioreactor

机译:纺织废水处理在序贯厌氧运动床中的纺织废水处理 - 有氧膜生物反应器

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In this study, the treatability of real textile wastewater [dissolved organic carbon (DOC): 500 mg/L), color: 6383 Pt-Co, sulfate: 362 mg/L)] was investigated in sequential anaerobic moving bed bioreactor (AnMBBR) and aerobic membrane bioreactor (AeMBR). AnMBBR was filled with 40 % career material (Kaldnes K1). The effect of different hydraulic retention times (HRTs) (6-48 h) and powdered activated carbon (PAC) addition (1 g/L) was investigated for system optimization. Sequential AnMBBR- AeMBR was successfully operated for textile wastewater treatment corresponding to 92 %, and 90 % dissolved organic carbon (DOC) and color removals, respectively. The effluent quality, dropped under 45 Pt-Co and 18 mg/L effluent values, was relatively high and complianted with discharge standards.& nbsp; The Fourier transform infrared spectroscopy (FT-IR) analysis showed that primary amines are successfully removed in AeMBR effluent. Fouling in AeMBR was increased when HRT was reduced, however, improved by 90 % at PAC addition conditions. Except for soluble microbial products (SMP) and soluble extracellular polymeric substances (EPS), it was observed that silicon (Si) (13.16 %) has an important role in fouling which was confirmed by scanning electron microscopy (SEM) and Energy-Dispersive X-ray (EDX) analysis. Additionally, microbial community structures indicated that the membrane fouling can be caused by Alphaproteobacteria (80 %) which was the dominant culture in the biofilm layer at a maximum fouling rate.
机译:在本研究中,在序贯厌氧移动床生物反应器(ANMBBR)中,研究了真实纺织废水的处理[溶解有机碳(DOC):500mg / L),颜色:6383pt-co,硫酸盐:362mg / l)]和有氧膜生物反应器(AEMBR)。 ANMBBR填充了40%的职业资料(Kaldnes K1)。研究了不同液压保留时间(HRT)(6-48H)和粉末状活性炭(PAC)加成(1g / L)的效果进行了系统优化。顺序ANMBBR-AEMBR分别成功地运行了对应于92%和90%溶解的有机碳(DOC)和颜色去除去的纺织废水处理。污水质量,下降45pt-co和18 mg / l流出物值,相对较高,并符合排出标准。 傅里叶变换红外光谱(FT-IR)分析表明,在AEMBR流出物中成功地除去伯胺。然而,当HRT减少时,AEMBR的污染增加了90%在PAC添加条件下提高了90%。除了可溶性微生物产品(SMP)和可溶性细胞外聚合物物质(EPS)外,观察到硅(Si)(13.16%)在污染中具有重要作用,通过扫描电子显微镜(SEM)和能量分散X确认-Ray(EDX)分析。另外,微生物群落结构表明,膜污染可能是由αα(80%)引起的,其在最大污垢率下是生物膜层中的显性培养物。

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