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荷电超滤膜对天然有机物去除及膜污染行为的影响
引用本文:侯娟,邵嘉慧,何义亮.荷电超滤膜对天然有机物去除及膜污染行为的影响[J].环境科学,2010,31(6):1525-1531.
作者姓名:侯娟  邵嘉慧  何义亮
作者单位:上海交通大学环境科学与工程学院,上海,200240
基金项目:国家高技术研究发展计划(863)项目 
摘    要:以Aldrich 腐殖酸溶液为水样,研究比较了溶液环境(pH值、离子强度和钙离子)对荷电改性再生纤维素超滤膜和传统中性未改性再生纤维素超滤膜过滤过程的影响.结果表明, ①pH值主要通过质子化作用影响荷电膜以及腐殖酸分子的荷电量,进而影响荷电超滤过程.溶液pH值从7.5下降到3.5时,荷电超滤膜对腐殖酸的截留率从92%减少到79%,超滤4 h时,膜通量下降从26%增加到36%.②离子强度的改变是通过影响腐殖酸分子的物化性质和静电屏蔽作用来影响超滤过程的.当溶液离子强度为0、 3和100 mmol/L时,初始截留率依次降低,分别为92%、 87%和48%,超滤4 h时,荷电超滤膜的通量下降依次增加,分别为26%、 35%和63%.③Ca2+浓度的影响,需要综合考虑静电屏蔽作用、Ca2+的架桥作用以及滤饼层的压实性等各方面的影响.④pH值、离子强度和钙离子对中性超滤膜过滤行为的影响趋势与荷电超滤膜相似,但其影响程度有着较大的差别.研究结果对荷电超滤膜技术在实际应用中选择合适环境条件提供了参考.

关 键 词:荷电超滤膜  传统超滤膜  溶液环境  腐殖酸  截留率  膜污染
收稿时间:2009/7/29 0:00:00
修稿时间:2009/12/3 0:00:00

Effect of Charged Ultrafiltration Membrane on Natural Organic Matter Removal and Membrane Fouling
HOU Juan,SHAO Jia-hui and HE Yi-liang.Effect of Charged Ultrafiltration Membrane on Natural Organic Matter Removal and Membrane Fouling[J].Chinese Journal of Environmental Science,2010,31(6):1525-1531.
Authors:HOU Juan  SHAO Jia-hui and HE Yi-liang
Abstract:With the deterioration of water pollution and stringency of water standards, ultrafiltration (UF) has become one of the best alternatives replacing conventional drinking water treatment technologies. However, UF is not very effectively to remove natural organic matter (NOM) due to the comparatively large pore size compared to the size of NOM. Fouling issue is another factor that restricts its widespread application. The rejection coefficient and flux decline during ultrafiltration of humic acid (HA) and raw water through neutral unmodified and negatively charge-modified regenerated cellulose (RC) membranes were investigated, and the analysis for membrane resistance was provided. The initial removal rate for HA is 59% and the flux decline is 32% on neutral unmodified RC membrane with MWCO of 100×103, while the initial removal rate for HA increases to 92% and the flux decline decreases to 25% on negatively charge-modified RC membrane. Compared to neutral unmodified RC membrane, the removal rate for NOM on negatively charge-modified RC membrane increases 20% and the flux decline decreases 12%. Results indicated that charged UF membrane could be an effective way for better removal of NOM and reduction of the membrane fouling due to the electrostatic interaction with the combination effect of membrane pore size.
Keywords:charged ultrafiltration membrane  traditional ultrafiltration membrane  solution environment  humic acid  rejection coefficient  membrane fouling
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