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251.
利用多巴胺(DA)的自聚合特性对多壁碳纳米管(MWCNT)进行非共价改性,制备了多巴胺改性碳纳米管超滤膜(PDA/MWCNT),并对其抗污染性能进行了系统研究.采用X射线光电子能谱、傅里叶红外光谱、接触角测量仪和扫描电镜对PDA/MWCNT膜进行亲水性和化学组成的表征.选取大肠杆菌菌液为目标污染物,研究了不同改性条件对PDA/MWCNT膜抗污染性能及抗蛋白黏附能力的影响.结果表明,DA成功引入到MWCNT表面.DA与MWCNT交联时间为5h、DA浓度1g/L、MWCNT负载量2.17mg/cm2时,MWCNT膜的接触角由改性前112.79°降至8.4°.改性后PDA/MWCNT膜表面的氧元素含量为改性前的2.9倍,膜的亲水性得到显著改善.膜通量较改性前提高1倍,膜的抗污染性能、抗菌性及抗蛋白黏附能力得到显著提高,错流冲洗后的膜通量恢复率从56.62%增加到88.74%. 相似文献
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在光/电/化学协同催化反应器中,以离子交换膜代替盐桥连通阴、阳两室,以30 mg/L的甲基红溶液为目标降解物,考察了不同连通方式、初始pH和阴极电位对反应的影响. 结果表明:甲基红在阳离子膜型反应器中的表观反应速率常数明显高于盐桥型及阴离子交换膜型反应器,这是由于阳离子交换膜可以及时有效地将阳极室中产生的H+转移至阴极室中参与阴极反应. 甲基红在阳离子膜型反应器中的去除率随溶液初始pH的增高而降低,随阴极电位的增加先增大后减小,最佳反应条件为pH=2.0~3.0,阴极电位(-Ec)=0.6 V. 相似文献
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本研究以实际猪场废水为原料,在中温(37±1)℃条件下利用浸没式平板膜生物反应器进行180d连续厌氧发酵试验,以水力停留时间5,3和2d的梯度变化逐渐增加容积负荷,研究反应器运行性能,污泥比产甲烷活性,膜过滤特性和膜的清洗效果.试验结果表明,随水力停留时间的缩短,反应器的容积产沼气率分别达到0.68,1.03和1.12L/(L·d),稳定运行期间出水的总挥发性脂肪酸分别为(169±41)mg/L,(15±3)mg/L和(114±45)mg/L,以乙酸为主.反应器中厌氧污泥的乙酸比产甲烷活性测试表明,以2000mg/L的乙酸为基质,HRT 3d时具有最大比产甲烷活性1.127g-COD/(g-VSS·d).本试验发生膜污染的周期约4个月.采用2%的柠檬酸浸泡3h,可以恢复膜的过滤性能.在较低通量下,反应器中7~32g/L的污泥浓度并不会明显的影响平板膜的过滤性能.本研究结果显示,厌氧膜生物反应器有处理猪场废水的可能性. 相似文献
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Sodium hypochlorite (NaClO) is a commonly applied cleaning agent for ultrafiltration membranes in water and wastewater treatment. Long-term exposure to NaClO might change the properties and performance of polymeric membranes, and ultimately shorten membrane lifespan. Active species in NaClO solution vary with solution pH, and the aging effects can change depending on the membrane material. In this study, the aging of polyvinylidene fluoride (PVDF) and polyethersulfone (PES) membranes by NaClO at pH 3–11 was investigated by examining variations in chemical composition, surface charge, surface morphology, mechanical strength, permeability, and retention ability. Polyvinyl pyrrolidone (PVP), which was blended in both membranes, was oxidized and dislodged due to NaClO aging at all investigated pH values, but the oxidation products and dislodgement ratio of PVP varied with solution pH. For the PVDF membrane, NaClO aging at pH 3–11 caused a moderate increase in permeability and decreased retention due to the oxidation and release of PVP. The tensile strength decreased only at pH 11 because of the defluorination of PVDF molecules. For the PES membrane, NaClO aging at all investigated pH resulted in chain scission of PES molecules, which was favored at pH 7 and 9, potentially due to the formation of free radicals. Therefore, a decrease in tensile strength and retention ability, as well as an increase in permeability, occurred in the PES membrane for NaClO aging at pH 3–11. Overall, the results can provide a basis for selecting chemical cleaning conditions for PVDF and PES membranes. 相似文献
259.
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
260.