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该文在温度为(15±2)℃条件下,采用多反应区MBR工艺处理冲厕污水,在分析工艺运行性能的基础上,研究了工艺沿程的膜污染特性及颗粒活性炭对膜污染的控制效果,探讨了相关机制。结果表明,多反应区MBR工艺在低温条件下对冲厕污水具有较好的处理效果,COD、氨氮和总氮平均去除率分别为79.34%、97.42%和52.98%。多糖与蛋白随着工艺沿程不断累积,膜污染潜力上升。颗粒活性炭能够有效控制膜污染,SMP、LB-EPS以及TB-EPS中多糖、蛋白去除率分别达66.91%、58.57%、40.00%和79.28%、66.38%、88.61%。不同组分在吸附和微生物作用下发生降解或转化,疏水性腐殖酸浓度降低,从而工艺膜污染得到有效控制。 相似文献
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《环境科学与技术》2013,(12)
文章采用生物碳纤维膜和普通MBR膜进行对生活污水处理效果的对比实验研究,考察了2种膜材料对污水中常规指标的去除效果和2种膜材料的膜污染问题。研究结果表明,在水力停留时间(HRT)=12 h、气水比=10∶1、污泥浓度为8 g/L的条件下,生物碳纤维膜材料对生活污水的去除效果优于普通MBR膜材料,对生活污水的化学需氧量(COD)、氨氮(NH4+-N)的去除率比普通MBR膜材料分别高出5%、10%,处理效果良好;同时生物碳纤维膜材料的膜清洗周期为37 d,比普通MBR膜材料的清洗周期长,说明生物碳纤维膜材料的膜污染情况有所减缓。实验证实了生物碳纤维膜工艺处理生活污水的可行性和优越性。 相似文献
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采用平板膜MBR工艺处理小区生活污水,研究了MBR工艺对COD、BOD、NH4+-N、SS及浊度等去除效果,在进水COD、BOD平均浓度为325mg/L、274mg/L的情况下,出水达到20mg/L和8mg/L,去除率在93%以上,SS及浊度去除率达到100%和98%,NH4+-N去除率79%,出水NH4+-N小于10mg/L。通过研究系统三氮转化可知,该系统没有发生反硝化反应,出水NO2--N和NO3--N浓度较高。通过投加葡萄糖人为改变容积负荷,在容积负荷变化3.2kgCOD/m·3d情况下,系统受负荷冲击影响较小,COD去除率仍能保持在88%以上。通过对膜通量的研究发现,膜通量在连续运行的前3天变化不大,第3天后,膜通量迅速降低,第10天后膜污染达到极限,因此清洗周期设定为3~4天。 相似文献
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一体式膜生物反应器的膜污染及对策 总被引:10,自引:2,他引:10
膜污染是一体式膜生物反应器运行中不可避免的问题。膜污染主要是污水中的污染物、微生物及其产生的胞外聚合物(EPS)、可溶性代谢产物 (SMP)类物质引起的。通过合理的设计及加强运行管理 ,结合有效的反冲洗和清洗措施 ,能够最大限度避免膜污染和恢复膜通量。 相似文献
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为研究大庆油田采油污水对生物过氧化氢酶(Catalase,CAT)的毒性效应,判定采油污水对生物体的损害程度.以斑马鱼为实验材料,利用大庆油田不同稀释倍数(66.7倍、52.6倍、33.3倍)的采油污水胁迫培养斑马鱼,通过紫外分光光度法测定斑马鱼的不同部位CAT的变化情况,研究采油污水对斑马鱼毒性效应.结果表明,在相同的处理时间和环境条件下,随着采油污水稀释倍数的减小,斑马鱼的不同部位的CAT含量呈增加趋势,当达到一定稀释倍数时CAT的增长发生抑制,CAT含量减少,斑马鱼的生理状况也随之产生变化,甚至死亡.为此需要重视对大庆油田采油污水排放的监管、规范和治理. 相似文献
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为探究真空膜蒸馏处理高盐废水过程中有机物和盐类对膜污染的贡献以及微纳米气泡对不同类型膜污染的控制作用,选取腐殖酸、牛血清蛋白、海藻酸钠为典型有机污染物代表,分别考察单一有机物、有机物与盐共存对膜污染的影响以及采用微纳米气泡曝气对上述情况产生的膜污染的控制作用。结果表明:3种有机物中,海藻酸钠造成的膜污染最严重,当海藻酸钠浓度为100 mg/L时,真空膜蒸馏系统运行7 h后,相对膜通量降至67.07%;腐殖酸与盐共存造成的复合污染最严重,当进料液腐殖酸浓度分别为10、50和100 mg/L时,系统运行7 h后,相对膜通量分别降至36.33%、33.15%和20.59%;3种有机物与盐共存时,造成的膜污染比单一有机物与盐共存时更严重;微纳米气泡可以有效控制有机物与盐共存时对真空膜蒸馏系统造成的复合污染。
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采用海水为驱动液,研究了正渗透处理生活污水过程中的通量变化和膜污染行为.结果表明,采用分离层朝向原料液(AL-FS)的膜过滤方向可以降低膜污染程度,并获得稳定的通量.长时间(144h)的运行下膜两侧均出现不同程度的污染.膜污染分析显示支撑层的污染程度较低.但海水中的硅酸盐可能在其表面形成沉积物.相比之下,分离层形成了厚的污染层,主要是由污水中的物质如有机物、微生物、胶体类、盐类等沉积在膜表面造成,是通量降低的主要原因.正渗透膜对营养物质具有高的截留率,运行结束后海水的总有机碳、氨氮和总磷含量为2.49,2.40,0.05mg/L.说明正渗透采用海水为驱动液处理生活污水具有一定的应用前景. 相似文献
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In this study,direct contact membrane distillation(DCMD)was used for treating fermentation wastewater with high organic concentrations.DCMD performance characteristics including permeate flux,permeate water quality as well as membrane fouling were investigated systematically.Experimental results showed that,after 12 hr DCMD,the feed wastewater was concentrated by about a factor of 3.7 on a volumetric basis,with the permeate flux decreasing from the initial 8.7 L/m~2/hr to the final 4.3 L/m~2/hr due to membrane fouling;the protein concentration in the feed wastewater was increased by about 3.5 times and achieved a value of 6178 mg/L,which is suitable for reutilization.Although COD and TOC in permeate water increased continuously due to the transfer of volatile components from wastewater,organic rejection of over 95%was achieved in wastewater.GC–MS results suggested that the fermentation wastewater contained 128kinds of organics,in which 14 organics dominated.After 12 hr DCMD,not only volatile organics including trimethyl pyrazine,2-acetyl pyrrole,phenethyl alcohol and phenylacetic acid,but also non-volatile dibutyl phthalate was detected in permeate water due to membrane wetting.FT-IR and SEM–EDS results indicated that the deposits formed on the membrane inner surface mainly consisted of Ca,Mg,and amine,carboxylic acid and aromatic groups.The fouled membrane could be recovered,as most of the deposits could be removed using a HCl/Na OH chemical cleaning method. 相似文献
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Zhijuan Zhao Shaoyuan Shi Hongbin Cao Yujiao Li Bart Van der Bruggen 《环境科学学报(英文版)》2019,31(3):218-228
Five negatively charged organic compounds with different structures, sodium methane sulfonate (MS), sodium benzene sulfonate (BS), sodium 6-hydroxynaphthalene-2-sulfonate (NSS), sodium dodecyl sulfate (SDS), and sodium dodecyl benzene sulfonate (SDBS), were used to examine the fouling of an anion exchange membrane (AEM) in electrodialysis (ED), to explore the effect of molecular characteristics on the fouling behavior on the AEM and changes in the surface and electrochemical properties of the AEM. Results indicated that the fouling degree of the AEM by the different organics followed the order: SDBS?>?SDS?>?NSS?>?BS?>?MS. SDBS and SDS formed a dense fouling layer on the surface of the AEM, which was the main factor in the much more severe membrane fouling, and completely restricted the transmembrane ion migration. The other three organics caused fouling of the AEM by adsorption on the surface and /or accumulation in the interlayer of the AEM, and exhibited almost no influence on the transmembrane ion migration. It was also concluded that the organics with benzene rings caused more severe fouling of the AEM due to the stronger affinity interaction and steric effect between the organics and the AEM compared with organics with aliphatic chains. 相似文献
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Study on membrane fouling of submerged membrane bioreactor in treating
bathing wastewater 总被引:1,自引:0,他引:1
A pilot-scale submerged membrane bioreactor (MBR) was used to treat the bathing wastewater for more than 90 d. Several factors affecting membrane fouling were studied, including the variation in transmembrane pressure (TMP), changes in extracellular polymeric substance (EPS), and distribution of membrane resistance (R). The relationships between R and EPS concentration were found to be R = 0.00008(EPSS)2.915 in the mixed liquor (EPSS) and R = 0.2853(EPSm) - 0.824 on the membrane surface (EPSm). The constant... 相似文献
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海藻酸及腐殖酸共存对PVDF超滤膜的污染行为 总被引:1,自引:0,他引:1
为了揭示有机物对PVDF超滤膜的污染行为,选用典型亲/疏水性有机污染物海藻酸(SA)及腐殖酸(HA),采用原子力显微镜结合自制的PVDF膜材料探针和污染物探针定量测定了PVDF-污染物及污染物-污染物间的作用力,并进行PVDF膜污染试验和污染物去除效果分析.结果表明:亲水性SA-PVDF及SA-SA之间的作用力皆大于疏水性HA-PVDF及HA-HA间的作用力,且SA污染膜的通量衰减速率与衰减幅度明显大于HA污染膜,说明了亲水性有机物是引起PVDF超滤膜污染的优势污染物.HA/SA混合污染物试验表明,膜污染行为与混合污染物中优势污染物的含量密切相关;与单种污染物的膜污染行为相比,混合污染物间不存在明显的协同作用促进膜污染.此外,污染物的去除率与相应微观作用力大小及膜污染速率成正相关关系. 相似文献
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