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101.
分体式膜-生物反应器在废水处理中的工艺条件   总被引:14,自引:3,他引:11  
对分体式膜-生物反应器(RMBR)处理废水进行了研究.进水CODCr:312~584mg/L,RMBR的出水CODCr在运行4d后<15 mg/L并稳定.向生物反应器添加0.5g/L(混合液)的粉末活性炭(PAC)后出水CODCr<4.22mg/L.膜侧污水流速在0.9~1.9m/s范围内,临界膜通量随膜侧污水流速的增大而增大.添加PAC,组合添加PAC和Al2(SO4)3·18 H2O均可有效提高临界膜通量.在膜侧流速1.9m/s的条件下,临界膜通量从72L/(m2·h)分别增至76L/(m2·h)和81 L/(m2·h)在22℃~30℃范围内,每升高1℃可提高膜通量1.9%.在连续运行100d中,RMBR可在无任何物理,化学清洗的条件下运行14d而透膜压力无增大,膜通量不降低.对于已污染的膜,水清洗、水碱共间清洗、水碱酸共同清洗可分别恢复至新膜膜通量的47%、83%、94%.  相似文献   
102.
应用extended derjaguin-landau-verwey-overbeek (扩展DLVO) 理论评价不同pH值下范德华力、静电力、疏水性力3种界面相互作用对腐殖酸反渗透(reverse osmosis, RO)膜污染的贡献,探究pH值影响腐殖酸RO膜污染的主控机制.对3种常规RO膜的理论分析结果表明,静电力对腐殖酸RO膜污染的贡献很小,范德华力使膜污染加剧;疏水性力会减缓膜污染.与前期粘附阶段相比,后期粘聚阶段中范德华力的贡献有所增大,疏水性力在2个污染阶段中均起主导作用.膜污染随pH值的降低而加重,疏水性力作用能的改变是pH值影响系统界面自由能的主控机制.相应pH值下3种RO膜过滤实验数据及其相关性分析结果表明,扩展DLVO理论能定量评价3种界面相互作用的贡献,界面自由能和膜污染之间有很好的相关关系,RO膜纯水接触角的数值不宜作为评价膜污染的指标.  相似文献   
103.
研究了浸没式膜生物反应器(sMBR)中生物质的增殖过程及其对反应器运行效能的影响.采用可编程逻辑控制器(PLC)对sMBR实现过程控制,在不排泥的情况下运行20~40d,生物质浓度达到9670mg/L,出水的各项指标达到最佳,但随着生物质的继续增殖,污泥表观黏度急剧增加,引起F/M的降低和传质困难,最终导致污泥活性降低及出水效果恶化.表观黏度与MLSS、EPS的增长趋势一致,表明这2个因素与活性污泥的表观黏度有着密切关系.采用SEM/EDS方法对不同阶段膜表面进行了观察及表面元素分析,结果表明膜表层污染物中有机物占主要部分,无机成分所占比例较小.  相似文献   
104.
In order to solve the problem of poor treatment of phosphorus in membrane bioreactor (MBR) with long sludge retention time (SRT), a ferric salt was added to enhance phosphorus removal; FeCl36H2O (Fe/P = 2.0) was added to the reactor. The removal efficiency of nitrogen, organic matters, and phosphorus in the MBR was investigated systematically. Moreover, this study focused on the membrane performance, the change of active sludge flora, and the effect of adding a ferric salt on membrane fouling before and after the addition. It was seen that adding the ferric salt could not affect the removal of COD and NH4 +-N and the removal rate of COD and NH4 +-N reached over 90%. However, the average removal rate of phosphorus was 52%, while the removal rate increased by nearly 40% after adding the ferric salt. The effects of adding ferric salts on the dominant bacteria and biological phosphorus removal of activated sludge were further studied. The results showed that the addition of ferric salt (Fe/P = 2.0) decreased the diversity of active sludge flora and relative abundance of some phosphorusaccumulating organisms and had a negative effect on biological phosphorus removal. The analysis of transmembrane pressure difference (TMP) recording revealed that the concentration of iron salts did not exacerbate membrane fouling. The results showed that the concentration of iron salts entering the membrane bioreactor would reduce the relative abundance and phosphorus removal efficiency of the activated sludge in the system to a certain extent, but it had no obvious effect on membrane fouling. It allowed the effluent to attain acceptable standards, especially with respect to phosphorus removal efficiency. © 2018 Science Press. All rights reserved.  相似文献   
105.
The UF membrane fouling by down- and up-flow BAC effluents were compared. Up-flow BAC effluent fouled the membrane faster than down-flow BAC effluent. The combined effects dominated irreversible fouling. The extent of fouling exacerbated by inorganic particles was higher. The TMP, permeate flux, and normalized membrane flux during 21 days of UF of DBAC and UBAC effluents. Fouling during ultrafiltration of down- and up-flow biological activated carbon effluents was investigated to determine the roles of polysaccharides, proteins, and inorganic particles in ultrafiltration membrane fouling. During ultrafiltration of down- flow biological activated carbon effluent, the trans-membrane pressure was≤26 kPa and the permeate flux was steady at 46.7 L?m2?h1. However, during ultrafiltration of up-flow biological activated carbon effluent, the highest trans-membrane pressure was almost 40 kPa and the permeate flux continuously decreased to 30 L?m2?h1. At the end of the filtration period, the normalized membrane fluxes were 0.88 and 0.62 for down- and up-flow biological activated carbon effluents, respectively. The membrane removed the turbidity and polysaccharides content by 47.4% and 30.2% in down- flow biological activated effluent and 82.5% and 22.4% in up-flow biological activated carbon effluent, respectively, but retained few proteins. The retention of polysaccharides was higher on the membrane that filtered the down- flow biological activated effluent compared with that on the membrane that filtered the up-flow biological activated carbon effluent. The polysaccharides on the membranes fouled by up-flow biological activated carbon and down- flow biological activated effluents were spread continuously and clustered, respectively. These demonstrated that the up-flow biological activated carbon effluent fouled the membrane faster. Membrane fouling was associated with a portion of the polysaccharides (not the proteins) and inorganic particles in the feed water. When there was little difference in the polysaccharide concentrations between the feed waters, the fouling extent was exacerbated more by inorganic particles than by polysaccharides.  相似文献   
106.
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   
107.
好氧颗粒污泥膜生物反应器的研究进展   总被引:3,自引:0,他引:3  
综述了好氧颗粒污泥膜生物反应器(MBR)在废水生物处理中的研究进展,着重介绍了MBR中好氧颗粒污泥的特性、好氧颗粒污泥对氨氮的去除特性及其对膜污染控制的特性,并在此基础上展望了好氧颗粒污泥MBR技术的发展方向。  相似文献   
108.
膜生物反应器中膜污染层胞外多糖性质及污染特征   总被引:5,自引:1,他引:4  
胞外多糖是污水处理膜生物反应器中的重要膜污染物质,经醇析、Sevag法去除蛋白质、层析纯化、透析、冷冻干燥得胞外多糖样品。紫外光谱扫描鉴定该胞外多糖样品不含核酸及蛋白质,分别采用HPLC、GC、FT-IR及SEM等手段对其性质进行分析,考察其对聚偏氟乙烯膜的污染特征。结果表明,所得胞外多糖的重均分子量Mw为4.8×106,糖苷键类型主要为1-3和1-6型,是由葡萄糖、鼠李糖、木糖、甘露糖等组成、具有高度分枝网状结构的杂多糖。胞外多糖膜污染过程受沉积层控制,膜的主要污染形式为胞外多糖在膜表面的沉积。  相似文献   
109.
为实现从城市污水中回收磷和水资源并同时减少后续处理反应器容积的目的,采用正渗透膜对城市污水进行浓缩,并探究城市污水的初始pH值对浓缩效果和磷回收的影响.首先采用合成城市污水进行正渗透浓缩试验,当提高原料液(FS)的初始pH值至9.5时,FS体积浓缩接近初始体积的1/10后,膜上及垫网上吸附磷含量约为其初始总量的44%,有利于磷的回收.当采用实际城市污水作为FS时,在初始pH值为9.5条件下进行浓缩后,污染膜面存在松散团聚的圆球颗粒,使得该条件下膜面污染物更易被洗脱,膜清洗后水通量高于不调节pH值条件下的水通量.膜原位超声清洗后,浓缩污水变为悬浊液,经静置沉降后收集沉淀物,其主要成分为CaCO3、鸟粪石和磷酸镁类物质.当初始pH值为9.5时浓缩所得沉淀物中的CaCO3和鸟粪石含量更高.调节城市污水初始pH值至9.5左右,对其进行三轮42h的连续运行浓缩后,污水的体积浓缩倍数约为8倍,磷回收率可达到63.9%.浓缩结束后,对膜先后进行原位超声清洗和碱洗加酸洗的化学清洗,清洗后膜通量约为初始通量的78%.浓缩后污水的pH值在8.5~9.1之间,且COD/TN值明显提高(从3.6至11.5),有利于后续的生物脱氮除磷.  相似文献   
110.
以聚硫酸铁(PFS)为混凝剂,微砂为载体颗粒,系统考察了采用加载絮凝-超滤联用工艺净化含高岭土、腐植酸和锑[Sb(Ⅲ)]的模拟原水过程中,不同PFS和微砂投加量条件下加载絮体形态特性以及其对超滤膜通量衰减、膜污染可逆性和宏观出水水质等的影响,并分析了膜污染机理.结果表明,PFS投加量对絮体形态及膜滤效能和膜污染影响显著,且投加量过少或过多均会产生不利影响,以30mg/L为宜;与不投加微砂的工况相比,加入微砂更易于形成大而结构较为松散的絮体,可有效削弱不可逆膜污染,并获得较为稳定的超滤出水水质;超滤末端膜比通量与絮体平均粒径呈良好的正相关性(R2=0.8774),但因加载絮凝体系中引起分形维数变大的不同类型颗粒(包括小粒径范围絮体和未被加载絮体捕获的微砂)对超滤净水过程产生的影响各异,致使膜通量与分形维数的负相关性较差(R2=0.5760).  相似文献   
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