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Carbon-nitrogen-phosphorus removal and biofilm growth characteristics in an integrated wastewater treatment system involving a rotating biological contactor

机译:包含旋转生物接触器的综合废水处理系统中的碳-氮-磷去除和生物膜生长特性

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A new rotating biological contactor-packed media technology (RBC-PMT) is locally innovated using light polyethylene Amazon screen material as disc media. A single-stage co-current fed of this type, which is connected with a series of equalization tanks as an integrated wastewater treatment system (IWWTS), showed good carbon-nitrogen-phosphorus (C-N-P) removal and unveiled biofilm growth characteristics noteworthy for treating pollutants in wastewater.rnThe equalization tanks approached facultative anaerobic conditions while the RBC-PMT exhibited a completely aerated system, both with a slightly alkaline pH, whose temperatures are ranging from 21 to 24 ℃, and both performed as biological nutrient removal systems. The combined nutrient removal efficiency at high organic loading rate (HOLR) and low organic loading rate (LOLR) showed fair chemical oxygen demand (COD) removal at 65.68 and 67.89%, respectively. Nitrate-nitrogen removal demonstrated good removal at 79.17% at HOLR and 83.43% at LOLR. There was excellent phosphate-phosphorus removal determined at 91.64 and 94.35% at high and low OLRs, respectively. This indicates that increasing the organic loading rate decreases the C-N-P removal in the IWWTS.rnBiofilm growth was characterized by the selection and survival of microorganisms present under aerobic environmental conditions in the RBC-PMT system and their respective metabolism in removing C-N-P substrates. Yeasts, coliform bacteria particularly E. coli, Cyanobacteria, and benthic diatoms were dominant microorganisms found upon oil-immersion microscopy. Protozoans and algae including Chlorococcum, Chlorella, Diatoma, Tribonema, Oscillatoria, Euglena, and other motile rotifiers were also dominantly found in the biofilm samples. Biofilm growth is observed and its average thickness was measured to be 7.71 μm at HOLR and 2.81 μm at LOLR. Thicker biofilm at HOLR has caused the reduced rate of diffusion of the microorganisms and their metabolic products as manifested by the low C-N-P removal during HOLR.
机译:使用轻质聚乙烯亚马逊筛网材料作为磁盘介质,在本地创新了一种新型的旋转式生物接触器包装介质技术(RBC-PMT)。这种单级并流进料与一系列均衡罐相连,作为集成废水处理系统(IWWTS),显示出良好的碳氮磷(CNP)去除能力,并揭示了生物膜生长特性,值得处理平衡池接近兼性厌氧条件,而RBC-PMT则显示出完全曝气的系统,均具有弱碱性pH值,温度范围为21至24℃,并且均作为生物营养去除系统。在高有机负荷率(HOLR)和低有机负荷率(LOLR)下的综合养分去除效率显示,化学需氧量(COD)的去除率分别为65.68%和67.89%。硝酸盐氮去除率显示出良好的去除率,HOLR为79.17%,LOLR为83.43%。在高和低OLR下,磷的去除效果极佳,分别为91.64和94.35%。这表明增加有机负荷速率会降低IWWTS中C-N-P的去除。生物膜的生长特征是在有氧环境条件下存在于RBC-PMT系统中的微生物的选择和存活以及去除C-N-P底物时它们各自的代谢。酵母,大肠菌,尤其是大肠杆菌,蓝细菌和底栖硅藻是油浸显微镜下发现的优势微生物。在生物膜样品中也主要发现原生动物和藻类,包括绿球菌,小球藻,硅藻,Tribonema,Oscillatoria,Euglena和其他能动的旋转器。观察到生物膜生长,并且在HOLR处测得其平均厚度为7.71μm,在LOLR处测得其平均厚度为2.81μm。 HOLR处较厚的生物膜导致微生物及其代谢产物的扩散速率降低,这一点在HOLR期间C-N-P去除率较低。

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