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1.
Surface modification by physical adsorption of Tween 20 was accomplished on polypropylene microporous membranes (PPMMs). Attenuated total reflection-Fourier transform infrared spectroscopy (ATR/FT-IR) and scanning electron microscope (SEM) were used to characterize the chemical and morphological changes on the membrane surfaces. Water contact angles and relative pure water fluxes were measured. The data showed that the hydrophilic performance for the modified membranes increased with the increase in the adsorption amount of Tween 20 onto the surface or into the pores of polypropylene microporous membranes. To test the antifouling property of the membranes by the adsorption of Tween 20 in a membrane bioreactor (MBR), filtration for active sludge was performed using synthetic wastewater. With the help of the data of water fluxes and the FE-SEM photos of the modified PPMMs before or after operating in a MBR for about 12 d, the PPMMs with monolayer adsorption of Tween 20 showed higher remained flux and stronger antifouling ability than unmodified membrane and other modification membranes studied.  相似文献   
2.
李颖 《环境工程》2002,20(3):21-22
垃圾转运站污水回用处理采用了膜 -生物反应器处理工艺 ,它具有高效、稳定、工艺流程简单、设备占地面积小和投资少等优点 ,且处理后出水可用于自身站内所需 ,即冲车、喷洒道路、冲厕、绿化、冲刷车间地面等多种用途 ,实现了污水处理后再利用的目的。  相似文献   
3.
膜生物反应器处理印染废水技术研究   总被引:5,自引:1,他引:5  
采用小试规模(148L/d)的厌氧-好氧膜生物反应器处理印染废水.当水力停留时间为14小时,进水COD、色度分别为208.54~2592.00mg/l、32~256倍,通过水解酸化-体式膜生物反应器试验,系统对COD、色度的去除率分别达到了80%~90%、87.5%.出水水质浓度或指标分别为21.80~363.20mg/l、8倍,具有良好的处理效果.厌氧-好氧膜生物反应器工艺处理印染废水技术可行、操作简单、易于管理、可为工业规模应用提供技术参考.  相似文献   
4.
生物膜MBR反应器和MBR反应器处理洗涤废水比较   总被引:1,自引:1,他引:1  
比较生物膜MBR反应器和MBR反应器处理洗涤废水的效果。结果表明,两个系统对COD、LAS及氨氮的去除均具有良好的处理效果。和MBR反应器相比,生物膜MBR反应器的运行条件要好。生物膜MBR反应器的运行条件:水力停留时间(HRT)4~4.5h,气水比351∶,而MBR反应器的运行条件:水力停留时间(HRT)9~10h,气水比451∶。通过两个反应器抗冲击负荷实验的研究,结果表明,在进水水质相同的条件下,就膜生物反应器的上清液而言,生物膜MBR反应器具有更好的抗冲击负荷能力。  相似文献   
5.
The chemical oxygen demand (COD) and NH3-N removal, membrane fouling, sludge characteristics and microbial community structure in a membrane bioreactor (MBR) coupled with worm reactors (SSBWR) were evaluated for 210 days. The obtained results were compared to those from a conventional MBR (C-MBR) operated in parallel. The results indicated that the combined MBR (S-MBR) achieved higher COD and NH3-N removal efficiency, slower increase in membrane fouling, better sludge settleability and higher activities of the related enzymes in the activated sludge. Denaturing gradient gel electrophoresis was used to analyze the microbial community structures in the C-MBR and the S-MBR. The microbial community structure in the S-MBR was more diverse than that in the C-MBR. Additionally, the slow-growing microbes such as Saprospiraceae, Actinomyces, Frankia, Clostridium, Comamonas, Pseudomonas, Dechloromonas and Flavobacterium were enriched in the S-MBR, further accounting for the sludge reduction, membrane fouling alleviation and wastewater treatment.  相似文献   
6.
In this study, a lab-scale biological anaerobic/anaerobic/anoxic/membrane bioreactor(A_-~3MBR) was designed to treat wastewater from the ethanol fermentation of food waste,a promising way for the disposal of food waste and reclamation of resources. The 454 pyrosequencing technique was used to investigate the composition of the microbial community in the treatment system. The system yielded a stable effluent concentration of chemical oxygen demand(202 ± 23 mg/L), total nitrogen(62.1 ± 7.1 mg/L), ammonia(0.3 ±0.13 mg/L) and total phosphorus(8.3 ± 0.9 mg/L), and the reactors played different roles in specific pollutant removal. The exploration of the microbial community in the system revealed that:(1) the microbial diversity of anaerobic reactors A_1 and A_2, in which organic pollutants were massively degraded, was much higher than that in anoxic A_3 and aerobic MBR;(2) although the community composition in each reactor was quite different, bacteria assigned to the classes Clostridia, Bacteroidia, and Synergistia were important and common microorganisms for organic pollutant degradation in the anaerobic units, and bacteria from Alphaproteobacteria and Betaproteobacteria were the dominant microbial population in A_3 and MBR;(3) the taxon identification indicated that Arcobacter in the anaerobic reactors and Thauera in the anoxic reactor were two representative genera in the biological process. Our results proved that the biological A_-~3MBR process is an alternative technique for treating wastewater from food waste.  相似文献   
7.
摘要:结合青岛市某生活垃圾处理场工程实例,介绍了MBR工艺处理垃圾渗滤液的工艺流程、原理等,分析了MBR工艺处理垃圾渗滤液的特点和优势。垃圾渗滤液经过MBR工艺处理,生化部分采用前置反硝化/硝化工艺,再经纳滤/反渗透等膜分离技术和其他方法处理,最终流出液水质可以达到《生活垃圾填埋场污染控制标准》(GB16889—2008)。  相似文献   
8.
UAFB-缺氧-好氧MBR组合工艺处理生活污水效能研究   总被引:3,自引:1,他引:2  
高大文  安瑞  付源  任南琪 《环境科学》2010,31(8):1851-1857
为了同时达到从生活污水中回收能源性气体和深度处理生活污水的目的,试验采用升流式厌氧污泥固定床(up-flowanaerobic fixed bed,UAFB)-缺氧-好氧膜生物反应(membrane bioreactor,MBR)组合工艺处理生活污水.试验重点研究了组合工艺对生活污水的处理效能,包括能源性气体的产生效能、对污染物质的处理效能以及对污泥浓度的控制.UAFB-缺氧-好氧MBR组合工艺在温度20℃、厌氧HRT为3 h、缺氧HRT为3 h、好氧HRT为3.5 h的条件下运行,甲烷气体的产生量为1.55L/d,COD去除率为93.28%,NH 4+-N去除率为90.60%,UAFB出水VFAs总量54.74 mg/L,TN去除率为45.51%.试验发现,组合工艺可以长期维持反应器内较低的污泥浓度,大大减小了剩余污泥的处理量,在一定程度上实现了污泥减量化,同时较低的污泥浓度有利于缓解膜污染.  相似文献   
9.
通过考察污泥停留时间(SRT)对膜生物反应器(MBR)和粉末活性炭膜生物反应器(PAc-MBR)降解有机物速率的影响,探讨了污泥活性与胞外聚合物(EPS)的关系.结果表明:MBR和.PAC-MBR中COD降解速率随SRT延长均呈先上升后下降的趋势,分别在39~48d和48d时达到最快,对应速率常数为2.586和3.856,PAC-MBR中COD降解速率普遍高于MBR,说明投加PAC使污泥活性提高,SRT对污泥活性影响较大;MBR和PAC-MBR中胞外聚合物质量浓度与COD降解速率常数K1变化趋势一致,且胞外聚合物质量浓度与K1呈良好正相关关系,说明系统的胞外聚合物质量浓度可以作为衡量污泥活性的指标.  相似文献   
10.
Removal of inorganic nitrogen (inorganic-N) from toilet wastewater, using a pilot-scale airlift external circulation membrane bioreactor (AEC-MBR) was studied. The results showed that the use of AEC-MBR with limited addition of alkaline reagents and volumetric loading rates of inorganic-N of 0.19-0.40 kg inorganic-N/(m3·d) helped achieve the desired nitrification and denitrification. Furthermore, the effects of pH and dissolved oxygen (DO) on inorganic-N removal were examined. Under the condition of MLSS at 1.56-2.35 g/L, BOD5/ammonia nitrogen (NH/-N) at 1.0, pH at 7.0-7.5, and DO at 1.0-2.0 mg/L, the removal efficiencies of NH4 -N and inorganic-N were 91.5% and 70.0%, respectively, in the AEC-MBR. The cost of addition of alkaline reagent was approximately 0.5-1.5 RMB yuan/m3, and the energy consumption was approximately 0.72 kWh/m3 at the flux of 8 L/(m2·h).  相似文献   
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