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Rejection of organic micro-pollutants from water by a tubular, hydrophilic pervaporative membrane designed for irrigation applications

机译:通过为灌溉应用设计的管状亲水透湿膜从水中去除有机微污染物

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摘要

The links between chemical properties, including those relating to molecular size, solubility, hydrophobicity and vapour pressure, and rejection of model aromatic micro-pollutants by a tubular, hydrophilic polymer pervaporation membrane designed for irrigation applications were investigated. Open air experiments were conducted at room temperature for individual solutions of fluorene, naphthalene, phenol, 1,2-dichlorobenzene, 1,2-diethylbenzene and 2-phenoxyethanol. Percentage rejection generally increased with increased molecular size for the model micro-pollutants (47–86%). Molecular weight and log Kow had the strongest positive relationships with rejection, as demonstrated by respective correlation coefficients of r = 0.898 and 0.824. Rejection was also strongly negatively correlated with aqueous solubility and H-bond δ. However, properties which relate to vapour phase concentrations of the micro-pollutants were not well correlated with rejection. Thus, physicochemical separation processes, rather than vapour pressure, drive removal of aromatic contaminants by the investigated pervaporation tube. This expanded knowledge could be utilized in considering practical applications of pervaporative irrigation systems for treating organic-contaminated waters such as oilfield-produced waters.
机译:研究了化学性质之间的联系,包括与分子大小,溶解度,疏水性和蒸气压有关的性质,以及为灌溉应用设计的管状亲水性聚合物渗透蒸发膜对模型芳香族微污染物的排斥。在室温下对芴,萘,苯酚,1,2-二氯苯,1,2-二乙苯和2-苯氧基乙醇的各个溶液进行了露天实验。通常,模型微污染物的截留百分率随分子大小的增加而增加(47-86%)。分子量和log Kow与排斥反应之间具有最强的正相关关系,如r respective = 0.898和0.824的相关系数所示。排斥也与水溶性和氢键δ呈极显着负相关。然而,与微污染物的气相浓度有关的性质与排斥率没有很好的相关性。因此,物理化学分离过程而不是蒸汽压力推动了所研究的渗透蒸发管对芳香族污染物的去除。这些扩展的知识可用于考虑全蒸发灌溉系统在处理有机污染水(例如油田生产水)中的实际应用。

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