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作 者:宋澄杰[1] 杜尔登[1] 王利平[1] 潘新星[1] 朱林峰[1] 成波[1]
机构地区:[1]常州大学环境与安全工程学院,江苏常州213164
出 处:《中国农村水利水电》2014年第10期13-18,23,共7页China Rural Water and Hydropower
基 金:国家自然科学基金(51308078);江苏省自然科学基金(BK20130252);国家科技重大专项(2012X07301-001);中国博士后科学基金(2013M531214)
摘 要:水体中溶解性有机物(DOM)是饮用水处理的重点控制对象和饮用水安全保障的关注焦点。以长三角地区某典型自来水厂为研究对象,基于总有机碳、UV254、三维荧光等指标,考察饮用水预处理、常规处理、深度处理工艺对水中有机物的去除与变化特征。结果表明,预处理工艺和深度处理工艺能够去除水体中的有机物和氨氮;常规处理工艺对总磷的去除达到71.7%。采用PARAFAC(平行因子分析)算法深入解析工艺流程中不同水样的荧光光谱,解析出3个有效PARAFAC荧光组分,包括络氨酸类蛋白物质(C1)、腐植酸类物质(C2)和色氨酸类蛋白物质(C3)。色氨酸、络氨酸类蛋白有机物是水中有机物的主要成分。其中预处理工艺中的臭氧预氧化对三类PARAFAC荧光组分的去除率分别为33.9%、28.9%和24.7%;深度处理工艺中的生物活性炭对三类荧光组分也有较高的去除率,分别为28.4%、22.0%和35.4%。PARAFAC荧光组分与总有机碳具有较高的相关性,能较好反映并预测水中有机物浓度。Dissolved Organic Matter (DOM ) in water is the important control object in the water treatment process ,and is the focus of drinking water safety and security .Based on total organic matter ,UV254 ,three-dimensional fluorescence spectrum ,this paper investigates the removal and change of organic matter in pre-treatment process ,conventional treatment process ,and advanced treat-ment process .The results show that pre-treatment process ,and advanced treatment process can effectively remove organic matter and ammonia in water , while conventional treatment process can remove 71 .7% of total phosphorus . Parallel factor analysis (PARAFAC) is used to deeply analyze fluorescence spectra of water samples and extract three effective fluorescence components ,in-cluding tyrosine-like protein substances (C1) ,humic-like substances (C2) ,and tryptophan-like protein substances (C3) .DOM of water samples is dominated by tyrosine-like and tryptophan-like protein substances .The three PARAFAC components needing to be removed by pre-ozonation in pre-treatment process are 33 .9% ,28 .9% ,and 24 .7% ,while three PARAFAC components needing to be removed by biological activated carbon in advanced treatment process are 28 .4% ,22 .0% ,and 35 .4% .PARAFAC components have a high correlation with TOC ,and can reflect and predict TOC concentration .
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