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Analysis of organic matter causing membrane fouling in drinking water treatment

机译:饮用水处理中引起膜污染的有机物分析

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A study was conducted on characteristics of membrane-fouling matter and chemical cleaning of fouled membranes. The membranes were those used for the filtration of raw water taken from the Lake Kitaura, lbaraki, Japan. Analysis of the molecular weight distribution of extracted foulants by ultrafilters showed that 23percent of organic matter was in the fraction exceeding a molecular weight of 100,000 daltons and 33percent between 10,000 to 100,000 daltons. Analysis by gel permeation chromatography (GPC) revealed a void peak and five peaks at a molecular weight of less than 6,000 daltons. Assessment by Fourier transform infrared spectroscopy (FTIR) and pyrolysis gas chromatography mass spectrometry (Py-GC-MS) revealed that organic fouling matter contained polysaccharides, proteins, amino sugars and aromatic compounds that constitute humic substances. A comparison of the apparent molecular weight distribution and the FTIR spectra of both the raw water and fouled membrane extracts revealed the attachment of membrane-fouling matter nonexistent in the raw water, which was considered to be extracellular organic matter. Chemical cleaning of fouled membranes suggested that sodium hypochlorite and hydrogen peroxide were effective for the recovery of membrane permeability. In most of the experiments, the higher the cleaning temperature is between 5deg C and 40deg C, the more effective the chemical cleaning. However, chemical cleaning by a mixture of 1percent-NaOCl and 4percent-NaOH showed a comparable cleaning efficiency at 5deg C as chemical cleaning at 40deg C after two hours.
机译:对膜污染物质的特性和污染膜的化学清洗进行了研究。膜是用于过滤从日本lbaraki的Kitaura湖获取的原水的膜。通过超滤器对提取的污垢物的分子量分布进行的分析表明,有机物中23%的有机物含量超过100,000道尔顿,而10,000至100,000道尔顿之间则为33%。通过凝胶渗透色谱法(GPC)的分析显示了一个空峰和一个分子量小于6,000道尔顿的五个峰。通过傅立叶变换红外光谱(FTIR)和热解气相色谱质谱(Py-GC-MS)进行的评估表明,有机污垢物质包含多糖,蛋白质,氨基糖和构成腐殖质的芳香化合物。对原水和污染的膜提取物的表观分子量分布和FTIR光谱进行比较,发现原水中不存在膜污染物质的附着,这被认为是细胞外有机物。化学清洁污垢膜表明次氯酸钠和过氧化氢可有效恢复膜通透性。在大多数实验中,清洁温度在5摄氏度至40摄氏度之间越高,化学清洁效果就越好。但是,用1%NaOCl和4%NaOH的混合物进行的化学清洗在两个小时后显示出与在40℃的化学清洗相当的在5℃的清洗效率。

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