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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.
亲水聚合物改性微滤膜在膜生物反应器中的膜污染研究   总被引:1,自引:0,他引:1  
采用经过聚合多巴胺和氨基聚乙二醇(mPEG-NH_2)表面改性的PVDF微滤膜,通过浸没在膜生物反应器(MBR)中验证改性微滤膜的抗污染性能.同时,采用多种分析手段对改性膜进行表征,包括膜表面微观形貌、润湿性、粗糙度和表面官能团等.实验同时考察了改性膜在MBR中运行的水通量衰减、污染膜的阻力分布,以及对膜面污染物的胞外多聚物组分的影响.结果发现,所采用的膜改性方法明显改善了膜表面的亲水性.短期过滤实验结果表明,多巴胺涂覆膜的稳定通量比原膜高47%,PEG改性膜则在水通量方面有进一步提高;在长期恒通量过滤阶段,多巴胺涂覆膜和PEG接枝膜的比膜通量分别比原膜高37%和88%.实验还发现,改性膜表面滤饼层中蛋白质和多糖含量均低于原膜.  相似文献   

3.
吐温20吸附改性聚乙烯膜改善MBR抗污染性能   总被引:1,自引:1,他引:0  
通过物理吸附Tween20对聚乙烯中空纤维微孔膜(polyethylene hollow fiber microporous membranes,PEHFMM)进行表面改性。衰减全反射傅立叶变换红外光谱(attenuated total reflection Fourier transform infrared spectroscopy,FT-IR/ATR)和场发射扫描电子显微镜(field emission scanning electron microscopy,FE-SEM)观察结果表明:吐温20有效地吸附到了PEHFMM上。采用停滴法测定水接触角(contact angle,CA)以表征膜表面的亲水性。数据显示:30℃时随着吸附量的增加膜的水接触角先降后升并出现最低值;40℃吸附时水接触角则单值下降直至稳定。为建立吸附量与膜生物反应器(membrane bioreactor,MBR)中膜污染作用之间的关系,使用人工污水进行了活性污泥过滤实验。结果发现:吐温20吸附量大约是100~200μmol/g时可以明显地提高膜在MBR中的抗污染能力。  相似文献   

4.
IntroductionThe combination of membrane separation withthe process of biological reactor is called membranebioreactor (MBR). Studies on MBRs have receivedconsiderable attentions due to the deterioration of thewater environment and the advantages they poss…  相似文献   

5.
文章探讨了添加剂F127的质量百分含量(5%、7%、10%和13%)对CPVC超滤膜微观结构及其性能(包括水通量、截留率、机械性能、亲水性和耐污染性能)的影响.结果表明:随着F127含量的增加,铸膜液剪切粘度增加,截留率上升,亲水性和耐污染性能大幅度提高,纯水通量和机械性能有所下降.综合比较添加剂F127含量为10%时,CPVC超滤膜性能较好.  相似文献   

6.
气升循环分体式膜生物反应器再生回用厕所污水的研究   总被引:20,自引:0,他引:20  
徐慧芳  樊耀波 《环境科学》2003,24(2):125-129
研究了分体浸没式膜生物反应器及其应用于厕所污水的再生回用.试验结果表明,在人水浓度COD440~970mg/L、BOD5 307~612mg/L、NH3-N59~111mg/L的情况下,出水水质稳定,平均COD<47mg/L、BOD5<8.5mg/L、NH3-N<20mg/L,处理水质达到建设部颁布的生活杂用水回用标准.研究了动力学参数污泥负荷、容积负荷和HRT对出水COD的影响,确定本试验较佳的污泥负荷和容积负荷分别为0.1kg/(kg·d)和1kg/(m3·d),HRT为7~8h.本文对污泥浓度、温度和产水时间与间歇时间比对膜通量的影响进行了测定与探讨.  相似文献   

7.
刘彩虹  何强  马军 《中国环境科学》2020,40(4):1531-1536
采用经3-氨基丙基三甲氧基硅烷(APTMS)修饰的纳米二氧化硅(SiNPs),对正渗透聚酰胺复合膜(TFC)进行抗污染改性.在静电吸附作用下,APTMS-SiNPs可通过表面涂覆的方式接枝在带负电的TFC表面,以提高膜的亲水性和抗污染效能.改性后,大量纳米材料成功接枝在膜表面,膜表面的接触角降低了54%,而膜电位和表面粗糙度无明显变化.采用海藻酸钠作为代表污染物,对原膜和改性膜的动态污染行为进行探究,通过监测污染阶段的通量变化和膜表面滤饼层含量,发现改性膜在膜污染后期表现出优良的抗污染性能,最终通量衰减降低了28%,膜表面滤饼层含量减少了35%.改性膜的抗污染性能主要归因于APTMS-SiNPs带来的膜表面亲水性的大幅提高.  相似文献   

8.
膜生物反应器中污染物去除途径及膜过滤性能   总被引:1,自引:0,他引:1  
采用一体式悬浮生长型和附着生长型膜生物反应器(MBR)处理微污染水源水,主要考察了两种MBR对污染物的去除途径和膜过滤性能。结果表明,两种MBR对主要污染物高锰酸盐指数和NH4+-N均有良好的去处效果,去除率分别达到66%和94%以上。悬浮生长型MBR的去除效果稍强于附着MBR,因为前者的生物量要高于后者。两种MBR的生物去除和膜去除对去除效果都有重要贡献,而膜去除是获得良好的出水水质的保证。曝气量对两种MBR的污染物去除效果没有明显影响,一定范围内增大曝气量会提高生物去除的比例。悬浮生长型MBR的膜污染速率要比附着生长型快得多,但运行稳定后,两者的膜比通量大致相当。  相似文献   

9.
在聚偏氟乙烯(PVDF)微滤膜表面接枝超支化聚合物聚乙烯亚胺(HPEI),并通过环氧丙醇与氨基的开环反应在PVDF膜表面形成高密度的多羟基结构,实现PVDF膜的亲水改性.实验对膜的表面亲水性、抗粘附性能和抗污染性能进行表征,并采用原子力显微镜(AFM)测量膜与污染物探针之间的粘附力以进一步探究改性膜的抗污染机理.实验结果显示,改性后,PVDF膜的接触角从85°减小至42°,润湿时间从20s缩短至10s,表面亲水性显著提高;在静态吸附实验中,改性膜表面粘附的蛋白质和多糖数量明显减少;在动态污染实验中,改性膜的水通量恢复率(FRR)较高,不可逆通量下降率(IFR)较低,说明其较强的抗污染性能.AFM界面粘附力的测试结果表明污染物探针与改性膜面的粘附力较弱,进一步证实改性膜表面丰富的亲水基团以及超支化结构的位阻效应可以有效改善PVDF膜的抗污染性能.  相似文献   

10.
将膜特性与膜-生物反应器(MBR)运行状况相结合,进行3种膜的优选. 对3种膜进行膜表面形态、孔径、孔隙率及水通量、临界通量的测定,同时将其置于MBR中进行短期高通量连续恒流运行及长期低通量间歇恒流运行,考察2种运行模式下的跨膜压差(TMP)平均增长率(Δp). 结果表明:具有平整表面、最小孔径、高孔隙率、高水通量以及高临界通量的A膜在MBR长期运行中表现出最低的膜污染速率,因此确定A膜为3种膜中的最优膜;在优选具有工程适应性的膜时,应采用长期间歇恒流运行的方法.   相似文献   

11.
将适量铜纳米线(Cu-NWs)添加到常规聚偏氟乙烯(PVDF)铸膜液中,通过相转化法制备Cu-NWs导电微滤膜,表征其过滤及导电性能,并将其置于膜生物反应器(MBR)中长期运行,研究其污染物去除效果及膜污染行为,可为污水处理MBR系统的低成本稳定运行提供新途径.结果表明,添加适量基于铸膜液质量的Cu-NWs,所得微滤膜的膜通量为721.9L/(m2·h),膜面接触角为57.9°,同时,其起始电势、欧姆内阻及活化内阻分别为315.0mV、2.4Ω和6.9 Ω,均优于商用PVDF微滤膜.扫描电子显微镜(SEM)观察发现,Cu-NWs在膜面活性层交织形成了良好的导电网络.将其制作成膜组件安装于MBR系统中,兼用作阴极,COD、氨氮、TN和TP的去除率分别为91.5%、99.3%、76.3%和76.2%,高于对照MBR系统.连续运行146d,TMP始终低于25kPa,无需清洗膜组件.傅里叶变换红外光谱仪(FTIR)分析表明,膜面污染物质主要是蛋白质和多糖,膜面EPS含量远低于商用PVDF膜.所制备新型Cu-NWs导电微滤膜具有较好的稳定性、耐用性和抗污染性,应用前景广阔.  相似文献   

12.
膜-生物反应器处理微污染水源水的运行特性   总被引:17,自引:0,他引:17       下载免费PDF全文
考察了悬浮生长型MBR和3种附着生长型MBR处理人工模拟微污染水源水时的运行特性.结果表明,4种MBR对氨氮的去除率均可达到85%~90%.投加块状填料和粉末活性炭(PAC)的MBR对有机污染物去除率较高;投加沸石粉的MBR和悬浮生长型MBR有机物去除效果较前两者低.当水力停留时间(HRT)为2~4h时,HRT对MBR有机物和氨氮的去除效果影响很小.PAC投加量及其饱和程度会影响PAC-MBR系统对有机物特别是UV254的去除率.当PAC投加量提高到1000mg/L以上时,PAC饱和前UV254的去除率可较块状填料-MBR提高约25%; PAC饱和后,两系统对有机物的去除效果相差不大.对于连续运行中膜的过滤性能,投加PAC和块状填料的MBR与悬浮生长型MBR相差不大,而沸石粉-MBR最低.改变PAC投加量对PAC-MBR中膜过滤性能的影响不大.  相似文献   

13.
以Tröger base (TB)和磺化度为20%的磺化聚砜(SPSF)为共混材料,N-甲基-2-吡咯烷酮(NMP)为溶剂,乙二醇单甲醚(EGM)为致孔剂,去离子水为凝固浴,采用非溶剂致相分离法(NIPS)制备了一种新型的SPSF/TB共混超滤膜,考察了共混比对膜结构、水接触角、孔隙率、水通量、BSA截留率和抗污染性能的影响.结果表明,共混之后原有的中性胺及磺酸反应生成了相应的铵盐及磺酸根,表面接触角得以降低,亲水性增强,水通量增加,显著改善了膜的抗污染能力;此外,SPSF/TB膜结构上变成了梯度海绵孔结构,特别是较大共混比时因有机高分子盐的形成,聚合物交联呈现了独特的网状结构.与纯TB膜相比,SPSF/TB3~15膜水通量JWC达到274.92~343.21L/(m2·h)(操作压力为0.1MPa),通量恢复率值(FRR)达到61.11%~67.45%,分别提升了42.88%~78.37%和67.4%~84.8%.在最优条件下,SPSF/TB5对废水中的乳化油截留率可达到98.52%以上,循环3次后水通量和FRR分别趋于199.1L/(m2·h)和61.6%.  相似文献   

14.
Membrane fouling is one of the most important challenges faced in membrane ultrafiltration operations. The copolymers of polysulfone-graft-methyl acrylate were synthesized by homogeneous photo-initiated graft copolymerization. The variables affecting the degree of grafting, such as the time of UV(Ultraviolet-visible)irradiation and the concentrations of the methyl acrylate and photoinitiator, were investigated. The graft copolymer membranes were prepared by the phase inversion method. The chemical and morphological changes were characterized by attenuated total reflection-Fourier transform infrared spectroscopy(ATR/FT-IR), scanning electron microscopy, and water contact angles measurements. Results revealed that methyl acrylate groups were present on the membranes and the graft degree of methyl acrylate had remarkable effect on the performance of membranes. Pure water contact allgle on the membrane surface decreases with the increase of methyl acrylate graftdegree. which indicated that the hydrophilicity of graft copolymer membranes Was improved. The permeation fluxes of pure water and bovine serum albumin solution were measured to evaluate the antifouling property of graft copolymer membranes, the results of which have shown an enhancement of antifouling property for graft copoly mermembranes.  相似文献   

15.
采用碳纳米管改性PVDF中空纤维超滤膜以缓解膜污染.考察了CNTs的乙醇分散液浓度、CNTs尺寸和负载量对改性中空纤维膜的抗污染性能和改性膜内表面CNTs层稳定性的影响,分析了该改性膜对二级出水DOC、UV254的去除效果,并对改性膜出水的荧光特性进行了表征.结果表明,选用体积分数为50%的乙醇分散液、外径为30~50 nm碳纳米管、负载量为3 g·m-2时,制备的改性中空纤维膜CNTs层稳定,抗污染能力显著提高.与未改性膜相比,改性膜对二级出水DOC和UV254的去除率分别提高了37%和56%;且对二级出水中的腐殖类和蛋白质类物质去除能力明显增强.  相似文献   

16.
温度对膜生物反应器(MBR)污染物去除效果和膜污染速率都有很大的影响。采用两套相同的MBR蓑置在冬季运行,其中一套维持20℃的恒温,另一套水温与周围环境相同。对两套装置处理效果及膜污染速率进行对比,并通过反应器中溶解性微生物产物(SMF)、胞外聚合物(EPS)含量、污泥粒径分布扣膜面污染物的比较,分析温度对MBR运行的影响。研究结果表明膜对污染物的截留能有效补偿低温时微生物作用的不足,因此低温对出水水质并没有显著的影响。此外,低温时虽然SMP和EPS的释放增加,但并没有引起膜污来的加剧。相反地,低温时污泥粒径较高温时小,而粒径较大的颗粒更易沉积于膜表面,因此低温时膜面固体物质含量较低,膜污染速率反而比高温时低。  相似文献   

17.
Membrane bioreactor (MBR) used in water and waste water treatment is a developing technique for water pollution control and water reuse. This paper describes a membrane-bioreactor for treatment of waste water in a petrochemical complex. The experimental MBR was a lab scale one composed of an activated sludge bioreactor unit and an ultrafiltration membrane unit. The relationship of COD removal with MLSS and HRT in this MBR was studied. The effects of crossflow velocity, backwash interval and volume of flush liquid on the flux were discussed. The results showed that average removal of COD, oil, SS and turbidity in petrochemical waste water by the MBR was 91%, 86%, 92% and 99% respectively. The average removal of NH3-N and total phosphorous was 85% and 82%. A coefficient of COD removal, k, was 0.017-0.080 L/(mg.d). The membrane flux maintained higher than 60 L/hm2 bar for 34 days without chemical cleaning when the velocity of crossflow was 3.5-3.9 m/s and the backwash interval was 30 minutes and backwash duration at 20 seconds. The results indicated that it is feasible for MBR technology to be used in petrochemical waste water treatment. The treated water could be considered as a source used to make up water for industrial cooling system or to be reused for other purposes.  相似文献   

18.
李安峰  潘涛  骆坚平  郭行 《环境工程》2012,(Z2):542-544
奥林匹克公园网球中心污水处理工程主体处理工艺为两套膜生物反应器,两套膜生物反应器并联运行,膜组件分别采用板式膜和管式膜。对两套不同组件的膜生物反应器进行对比研究,结果表明:出水水质均较好;与板式膜膜生物反应器相比,管式膜膜生物反应器流程复杂、清洗过程繁琐、膜分离单元电费和药剂费高,但是维修更换简便。  相似文献   

19.
PES/PAN膜在MBR中膜污染机理及抗污染性能   总被引:2,自引:2,他引:0  
采用液-固相转化法,以聚醚砜(PES)、氯化锂(LiCl)、聚乙烯吡咯烷酮(PVP)和N,N-二甲基乙酰胺(DMAc)为原料制备PES膜,并在体系中添加聚丙烯腈(PAN)制备PES/PAN膜。在操作温度25℃,操作压力90KPa条件下制得的PES/PAN膜、自制PES膜和商品PES超滤膜分别为222L/(m·2h)左右,130L/(m·2h)左右,82L/(m·2h)左右。通过膜生物反应器中膜阻力的测定,表明膜污染主要由沉积层引起的,另一方面长期运行膜孔堵塞也是阻力增大的原因。在MBR中运行时,PES/PAN膜、自制PES膜和商品PES超滤膜膜通量的衰减速率分别为0.2559L/(m·2h·min)、0.3366L/(m·2h·min)、0.3539L/(m·2h·min),PES/PAN膜通量衰减最慢;在MBR中运行15d后,经过化学清洗,PES/PAN膜、自制PES膜和商品PES超滤膜纯水通量恢复率分别为83.75%、63.58%、61.32%,PES/PAN膜通量恢复率最大,抗污染性优于PES膜。  相似文献   

20.
Membrane bioreactor (MBR) used in water and waste water treatment is a developing technique for water pollution control and water reuse. This paper describes a membrane-bioreactor for treatment of waste water in a petrochemical complex. The experimental MBR was a lab scale one composed of an activated sludge bioreactor unit and an ultrafiltration membrane unit. The relationship of COD removal with MLSS and HRT in this MBR was studied. The effects of crossflow velocity, backwash interval and volume of flush liquid on the flux were discussed. The results showed that average removal of COD, oil, SS and turbidity in petrochemical waste water by the MBR was 91%, 86%, 92% and 99% respectively. The average removal of NH3-N and total phosphorous was 85% and 82%. A coefficient of COD removal, k, was 0.017-0.080 L/(mg.d). The membrane flux maintained higher than 60 L/hm2 bar for 34 days without chemical cleaning when the velocity of crossflow was 3.5-3.9 m/s and the backwash interval was 30 minutes and backwash duration at 20 seconds. The results indicated that it is feasible for MBR technology to be used in petrochemical waste water treatment. The treated water could be considered as a source used to make up water for industrial cooling system or to be reused for other purposes.  相似文献   

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