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作 者:曲颖[1,2] 王磊[1] 王旭东[1] 刘佩[1] 刘红露[1]
机构地区:[1]西安建筑科技大学环境与市政工程学院,陕西西安710055 [2]烟台洁通水处理技术有限公司,山东烟台264000
出 处:《水处理技术》2012年第8期15-19,共5页Technology of Water Treatment
基 金:国家自然科学基金项目(51008243;51178378)
摘 要:将城市污水二级出水中溶解性有机物分为强疏水性、弱疏水性和亲水性组分,研究其对超滤膜的污染。测定结果表明,二级出水中有机物对膜污染影响程度顺序为:强疏水性有机物>亲水性有机物>弱疏水性有机物。究其原因:(1)膜污染与有机物分子量大小有关,膜选择性地截留强疏水性有机物主要是这类有机物分子量较大所致。(2)从三维荧光光谱图上看,3个组分中均含有腐殖酸类荧光峰,说明腐殖酸类物质对膜通量的衰减贡献最大。(3)强疏水性组分中所含有机物最为复杂,荧光峰最为明显,由此可见膜污染的程度不仅与组分中所含有机物的种类有关,而且与其含量有关。此外,膜被有机物污染的程度与膜对有机物的去除率有着密切的关系。总荧光强度(FLU)可作为总有机物含量的一种指标来反映有机物被膜截留的情况。Dissolved organic matters of Secondary Effluent of urban wastewater were divided into strongly hydrophobic, weakly hydrophobic and hydrophilic fractions. And the effects of the three fractions on fouling extent of ultrafiltration membrane were investigated. It demonstrated that the order of membrane fouling caused by dissloved organic matters of effluent was strongly hydrophobic〉 hydrophilic fractions〉 weakly hydrophobic. The reasons were that (1) membrane fouling was related with molecular weight. Strongly hydrophobic constituent retained by membrane was due to its higher molecule weight. (2)There were humic acid fluorescence peaks in these three fractions from the three-dimensional fluorescence spectrum. It indicated that humic acid had the largest contribution to the reduction of membrane flux. (3) Strongly hydrophobic constituent was the most complex, and fluorescence peak was the most obvious. This showed the extent of membrane fouling was related with the kind of organic matters and the content of that. In addition, membrane fouling was concerned with the removal rate of organic matters by membrane intimately. FLU may conduct as a index to response organic matters retained by membrane.
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