首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 140 毫秒
1.
循环式活性污泥法处理城市污水   总被引:6,自引:0,他引:6  
循环式活性污泥法工艺(CAST)是序批式活性污泥法工艺(SBR)的一种变型。它综合活性污泥法和SBR工艺特点,与生物选择器原理结合在一起,真有抗冲击负荷和除磷脱氮功能。本文介绍了该工艺的特点,以及处理城市污水的工程设计。  相似文献   

2.
二级SBR法处理高浓度氨氮化工废水研究   总被引:6,自引:0,他引:6  
用直接活性污泥法完成了各反应器的污泥驯化启动。二级SBR工艺主要由硝化SBR和反硝化SBR反应器构成,其中硝化SBR反应器采用悬浮生长法和固定生物膜法两种工艺作对比试验。结果表明,后者较前者具有更大的NH3-N容积负荷,最大可达766.54mgL^-1d^-1;而且能节省碱的消耗量11.0%~38.7%和反硝化所需碳源量为30%~40%。在tHR为24h的条件下,二级SBR法能处理ρIn(NH3-  相似文献   

3.
氯化铁絮凝法减轻膜污染   总被引:12,自引:0,他引:12  
采用氯化铁絮凝法去除膜生物反应器混合液中难降解的大分子有机物,确定Fe^3 的最佳投加量为60mg/L,该工艺可显著降低混合液中CODCr,减轻膜污染,并且对膜生物反应器中的生物相活性没有影响。  相似文献   

4.
NP型复合纳滤膜对豆腐废水处理的应用   总被引:2,自引:0,他引:2  
张伟  万慧民 《环境化学》1998,17(4):399-403
本文对NP型复合纳滤膜的分离性能进行了初步实验并在此基础上采用纳滤膜平板过滤装置对豆腐加工过程中产生的废水进行处理,以降低废水中的COD含量,实验结果表明,NP型复合纳滤膜对0.2%MgSO4溶液的截留率(R)高于90%,相应秀量约为20Lm^-2.h^-1(0.4MPa),豆腐废水COD的去除率大于90%  相似文献   

5.
本研究对废水活性污泥法处理中常用指标COD、BOD5、MLVSS与总有机磷指标的相关性进行了探讨。  相似文献   

6.
生物降解途径的理论预测与QSBR研究   总被引:4,自引:1,他引:4  
戴树桂  陈晓军 《环境化学》1997,16(5):403-412
本文把有机污染生生物降解途径理论预测的结果与QSBR模型中化合物选择相结合,所遵循相同理论生物降解途径作为化合物分组的原则,以分子连接性接数和EHOMO作为结构参数与电性参数,采用逐步回归的方法建立了新的QSBR模型,新模型的预测民实验结果能较好地吻合。  相似文献   

7.
以膜生物反应器中的活性污泥为研究对象,考察接种驯化至膜污染时期的微生物群落结构的特征和演变过程.在试验运行中,定期采集样品提取DNA,并应用PCR-DGGE技术探究微生物菌群的变化.结果表明,在反应器运行接种5 d后,微生物群落结构已发生较大改变,与接种污泥相似性指数下降到47.8%;在运行的整个过程中,微生物种群多样性都要低于接种污泥,随着处理工艺运行,种群间进行逐步有序的演替.在运行后期,跨膜压力增速提高,此时占优势地位的菌种是Enterococcus faecalis、Comamonas sp.、不可培养的Fusobacterium sp.,可能是导致膜污染的主要菌种.  相似文献   

8.
膜分离活性污泥法的研究   总被引:14,自引:0,他引:14  
提高生物难降解有机污染物的去除率,改善处理水的水质和达标率,缩小装置的占地面积,节省动力消耗是活性污泥法工艺的发展方向。本试验以膜分离单元代替普通活性污泥法的二沉池,开发了一种新的废水处理工艺。试验结果表明:膜分离活性污泥法对有机物和NH_3-N的去除率比普通活性污泥法高,二级处理可以获得三级处理的效果。根据不同水质和工艺要求,膜孔径应小于20μm,采用水反冲和药液清洗可以确保膜分离装置长期稳定的运行。  相似文献   

9.
活性污泥运转效能的生物监测   总被引:12,自引:0,他引:12  
讨论了θ/℃,pH,ρ(BOD)/mgL^-1,ρ(COD)/mgL^-1,ρ(SS)/mgL^-1,ρ(N)/mgL^-1,ρ(P)/mgL^-1,w(Cu^2 )/10^-6等几个影响活性污泥状况的理化因素,认为必须调节均化进水的水质水量,并调控污泥龄,回流比,曝气量等各种运行参数,分析了活性污泥的生理,生化监测法及运用细菌,藻类,原生动物,后生动物所进行的生物监测,提出通过监测原生动物群落动态是判断活性污泥运行效能的一种较简便准确的方法,比较了斑点杂交法(dot blot hybrid-ization),最大机率法(most probable number methods,MPNM),抗体(antibody)法和荧光原位杂交(fluorescent in situ hy-bridization,FISH)法检测氨氧化菌(ammonia-oxidizing bacteria)数量的效果,表明斑点杂交法具有高的准确度,并能检测出较低密度的细菌,MPNM低估了细菌数量,抗体法有高估细菌数的可能,FISH法对氨氮含量高的活性污泥混合液检测结果较好,但对低氨氮含量污水厂出水和河水的检测效果不佳。  相似文献   

10.
籍静  王娇娜  李秀艳  张俊  李从举 《环境化学》2019,38(5):1098-1105
本文采用一种改进的静电纺丝技术制备了TPU/PAN纳米纤维复合膜,研究了不同复合方式、不同层数结构对纳米纤维复合膜的微观形貌的影响,同时研究了纤维膜的面密度对空气过滤测试中过滤效率和过滤压降的影响.为了得到高效低阻的空气过滤用纳米纤维膜,实验探索了TPU(粗纤维)和PAN(细纤维)之间的复合方式以及复合层数对空气过滤性能的影响.实验结果表明,TPU和PAN间的最佳复合方式是Mixed/PAN,最佳层数是Mixed/PAN/Mixed/PAN这种4层结构,当纤维膜的面密度是1.31 g·m~(-2)时,空气过滤效果最好,过滤效率可达到97.34%,过滤压降仅为98.13 Pa,品质因数为0.038 Pa~(-1).这说明了粗细交织结构与层间结构相结合,可以有效提高过滤效率并且降低压降.对过滤性能较好的膜进行泡压法滤膜孔径测试,测得此纤维膜的平均孔径为2.26μm.  相似文献   

11.
pH调节对活性污泥混合液膜过滤性的影响   总被引:6,自引:0,他引:6  
庄芫  吴金玲  黄霞 《环境化学》2006,25(1):55-59
探讨了用NaOH调节pH值对膜-生物反应器混合液膜过滤性能的影响,并通过分析污泥混合液性质的变化研究其作用机理.试验表明,适当调节pH到碱性,可以使膜过滤性能得到改善.投加碱液使污泥胞外多聚物(EPS)减少,污泥容积指数(SVI)降低,但上清液中总有机碳(TOC)浓度增加.混合液膜过滤性能的改善与污泥SVI的降低密切相关.在碱性条件下,从细胞表面脱落下来的EPS对絮体颗粒的絮凝性有一定促进作用,但效果有限.推测碱液处理使细胞表面的LB-EPS脱落,从而使细胞表面疏水性增加,有利于絮体颗粒之间的絮凝,从而有利于混合液膜过滤性的改善.  相似文献   

12.
膜生物反应器投加PAC处理生活污水效能的试验   总被引:8,自引:0,他引:8  
在一体式MBR系统中投加少量的粉末活性炭,运行效果良好,并且可以很好地降低膜污染。粉末活性炭在形成生物活性炭后,对难降解有机物具有很好的降解能力;NH4^ -N的去除率得到进一步提高,NO3^-的含量升高;但反硝化作用不明显,致使总氮去除率不高;生物活性炭很好地吸附并降解了易引起膜污染的有机物,改变了污泥的性质,对膜组件起到了很好的保护作用。  相似文献   

13.
China has been the forerunner of large-scale membrane bioreactor (MBR) application. Since the first large-scale MBR (≥ 10 000 m^3·d^-1) was put into operation in 2006, the engineering implementation of MBR in China has attained tremendous development. This paper outlines the commercial application of MBR since 2006 and provides a variety of engineering statistical data, covering the fields of municipal wastewater, industrial wastewater, and polluted surface water treatment. The total treatment capacity of MBRs reached 1× 10^6 m^3·d^-1 in 2010, and has currently exceeded 4.5 × 10^6 m^3·d^-1 with -75% of which pertaining to municipal wastewater treatment. The anaerobic/anoxic/aerobie-MBR and its derivative processes have been the most popular in the large-scale municipal application, with the process features and typical ranges of parameters also presented in this paper. For the treatment of various types of industrial wastewater, the configurations of the MBR-based processes are delineated with representative engineering cases. In view of the significance of the cost issue, statistics of capital and operating costs are also provided, including cost structure and energy composition. With continuous stimulation from the environmental stress, political propulsion, and market demand in China, the total treatment capacity is expected to reach 7.5 × 10^6 m^3·d^-1 by 2015 and a further expansion of the market is foreseeable in the next five years. However, MBR application is facing several challenges, such as the relatively high energy consumption. Judging MBR features and seeking suitable application areas should be of importance for the long-term development of this technology.  相似文献   

14.
Since the introduction of the membrane bioreactor (MBR) in China in the early 1990s, remarkable progress has been achieved on the research and application of this technology. China has now become one of the most active fields in the world in this regard. This review outlines the development of MBR-based processes in China and their performance of treating municipal and industrial wastewaters. Since membrane fouling is a critical operational problem with MBR processes, this paper also proposes updated understanding of fouling mechanisms and strategies of fouling control, which are mainly compiled from publications of Chinese researchers. As for the commercial application of MBR in the country, the latest statistics of large-scale MBR plants (>10000 m3·d−1) are provided, and the growth trend of total treatment capacity as well as its driving force is analyzed.  相似文献   

15.
A hybrid membrane process for simultaneous sludge thickening and digestion (MSTD) was studied. During one cycle (15 d) of operation under a hydraulic retention time of 1 d, the concentration of mixed liquor suspended solids (MLSS) continuously increased from about 4 g·L−1 to 34 g·L−1, and the mixed liquor volatile suspended solids (MLVSS) increased from about 3 g·L−1 to over 22 g·L−1. About 42% of the MLVSS and 39% of the MLSS reduction were achieved. The thickening and digestion effects in the MSTD were further analyzed based on a mass balance analysis. Test results showed that biopolymers and cations of biomass were gradually released to the bulk solution during the process. It was also found that the capillary suction time, colloidal chemical oxygen demand, soluble microbial products, viscosity, and MLSS had significant positive correlations with the membrane fouling rate, whereas extracellular polymeric substances, polysaccharides, and proteins extracted from biomass had negative impacts on membrane fouling.  相似文献   

16.
The fiber length and packing density of the PTFE membrane element were increased. The MBR was stably operated under an SADm of 0.13 m3·m-2·hr-1. Specific energy consumption was estimated to be less than 0.4 kWh·m-3. In this study, we modified a polytetrafluoroethylene (PTFE) hollow-fiber membrane element used for submerged membrane bioreactors (MBRs) to reduce the energy consumption during MBR processes. The high mechanical strength of the PTFE membrane made it possible to increase the effective length of the membrane fiber from 2 to 3 m. In addition, the packing density was increased by 20% by optimizing the membrane element configuration. These modifications improve the efficiency of membrane cleaning associated with aeration. The target of specific energy consumption was less than 0.4 kWh·m-3 in this study. The continuous operation of a pilot MBR treating real municipal wastewater revealed that the MBR utilizing the modified membrane element can be stably operated under a specific air demand per membrane surface area (SADm) of 0.13 m3·m-2·hr-1 when the daily-averaged membrane fluxes for the constant flow rate and flow rate fluctuating modes of operation were set to 0.6 and 0.5 m3·m-2·d-1, respectively. The specific energy consumption under these operating conditions was estimated to be less than 0.37 kWh·m-3. These results strongly suggest that operating an MBR equipped with the modified membrane element with a specific energy consumption of less than 0.4 kWh·m-3 is highly possible.  相似文献   

17.
Among the numerous parameters affecting the membrane bioreactor (MBR) performance, the aeration intensity is one of the most important factors. In the present investigation, an anoxic/aerobic-type (A/O-type) sequencing batch MBR system, added anoxic process as a pretreatment to improve the biodegradability of azo dye wastewater, was investigated under different aeration intensities and the impact of the aeration intensity on effluent quantity, sludge properties, extracellular polymeric substances (EPS) amount generated as well as the change of permeation flux were examined. Neither lower nor higher aeration intensities could improve A/O-type sequencing batch MBR performances. The results showed 0.15 m3·h-1 aeration intensity was promising for treatment of azo dye wastewater under the conditions examined. Under this aeration intensity, chemical oxygen demand (COD), ammonium nitrogen and color removal as well as membrane flux amounted to 97.8%, 96.5%, 98.7% and 6.21 L·m-2·h-1, respectively. The effluent quality, with 25.0 mg·L-1COD, 0.84 mg·L-1 ammonium nitrogen and 8 chroma, could directly meet the reuse standard in China. In the meantime, the sludge relative hydrophobicity, the bound EPS, soluble EPS and EPS amounts contained in the membrane fouling layer were 70.3%, 52.0 mg·g-1VSS, 38.8 mg·g-1VSS and 90.8 mg·g-1VSS, respectively, which showed close relationships to both pollutant removals and membrane flux.  相似文献   

18.
采用假单胞菌在硅橡胶复合膜生物反应器上进行甲苯废气降解的挂膜启动实验,研究膜生物反应器挂膜启动特性,对挂膜启动过程中循环液吸光度、压力损失、甲苯降解效率和生物膜干重的变化进行考察,并观察挂膜稳定后的生物膜形态.结果表明:挂膜过程主要由生物膜成膜期(0~5 d)、生长期(6~10 d)、稳定期(11~14 d)3个阶段组成.循环液吸光度、反应器内液相压力损失、甲苯降解效率和生物膜干重等参数在成膜期都快速增加;进入膜生长期,循环液吸光度略微下降,而生物膜干重、压力损失和甲苯降解效率都继续增大;在稳定期各参数均趋于相对稳定,稳定后循环液吸光度维持在0.75左右,液相压力损失达到了180 Pa,甲苯降解效率维持在78%以上,生物膜干重为2.25 mg/cm2.试验表明,对循环液吸光度、液相压力损失、甲苯降解效率和生物膜干重等参数的综合分析,可作为膜生物反应器挂膜启动进程的判据.图9参15  相似文献   

19.
• Principles and methods for fluorescence EEM are systematically outlined. • Fluorophore peak/region/component and energy information can be extracted from EEM. • EEM can fingerprint the physical/chemical/biological properties of DOM in MBRs. • EEM is useful for tracking pollutant transformation and membrane retention/fouling. • Improvements are still needed to overcome limitations for further studies. The membrane bioreactor (MBR) technology is a rising star for wastewater treatment. The pollutant elimination and membrane fouling performances of MBRs are essentially related to the dissolved organic matter (DOM) in the system. Three-dimensional excitation-emission matrix (3D-EEM) fluorescence spectroscopy, a powerful tool for the rapid and sensitive characterization of DOM, has been extensively applied in MBR studies; however, only a limited portion of the EEM fingerprinting information was utilized. This paper revisits the principles and methods of fluorescence EEM, and reviews the recent progress in applying EEM to characterize DOM in MBR studies. We systematically introduced the information extracted from EEM by considering the fluorescence peak location/intensity, wavelength regional distribution, and spectral deconvolution (giving fluorescent component loadings/scores), and discussed how to use the information to interpret the chemical compositions, physiochemical properties, biological activities, membrane retention/fouling behaviors, and migration/transformation fates of DOM in MBR systems. In addition to conventional EEM indicators, novel fluorescent parameters are summarized for potential use, including quantum yield, Stokes shift, excited energy state, and fluorescence lifetime. The current limitations of EEM-based DOM characterization are also discussed, with possible measures proposed to improve applications in MBR monitoring.  相似文献   

20.
改进型膜生物反应器处理洗浴污水的试验研究   总被引:5,自引:0,他引:5  
在大量试验研究的基础上提出了一种改进型膜生物反应器 (MBR) ,并对其处理洗浴污水的效果进行了试验 ,结果表明 :利用改进型MBR处理洗浴污水出水水质良好 ,COD <40mg/L ,LAS <0 .2mg/L ,符合国家建设部颁布的生活杂用水回用水质标准。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号