首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Preparation, characterization and performance of poly (aylene ether sulfone)/modified silica nanocomposite reverse osmosis membrane for seawater desalination
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Preparation, characterization and performance of poly (aylene ether sulfone)/modified silica nanocomposite reverse osmosis membrane for seawater desalination

机译:聚(乙烯醚砜)/改性二氧化硅纳米复合反渗透膜用于海水淡化的制备,表征及性能

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摘要

In this paper, composite reverse osmosis (RO) membranes made from sulfonated poly(arylene ether sulfone) containing amino groups (aPES) and hyper-branched aromatic polyamide-grafted silica (HBP-g-silica) were prepared, with the aim of enhancing chlorination resistance and improving membrane performance. The performance of the RO membranes containing aPES and HBP-g-silica was evaluated; the salt rejection and water flux were 96% and 34 L/m~2/h, respectively. After the chlorination test, the salt rejection decreased by only 14% and the water flux increased by 4 L/m~2/h. The aPES/HBP-g-silica significantly modified the three-dimensional polyamide (PA) network structures and contributed to the high performance because of the chain stiffness of the copolymer with a high degree of cross-linking in the RO membranes. Therefore, the aPES and HBP-g-silica, which helped improve water permeability, also protected the active layer structure from degradation and enhanced the chlorine resistance of the RO membrane.
机译:本文以含氨基的磺化聚亚芳基醚砜(aPES)和超支化芳族聚酰胺接枝二氧化硅(HBP-g-silica)为材料,制备了复合反渗透膜。耐氯化性并改善膜性能。评价了含有aPES和HBP-g-二氧化硅的RO膜的性能。脱盐率和通水率分别为96%和34 L / m〜2 / h。氯化试验后,除盐率仅下降14%,水通量增加4 L / m〜2 / h。 aPES / HBP-g-二氧化硅显着改性了三维聚酰胺(PA)网络结构,并由于RO膜中具有高度交联度的共聚物的链刚度而对高性能做出了贡献。因此,有助于提高水渗透性的aPES和HBP-g-二氧化硅,还可以保护活性层结构免于降解并提高RO膜的耐氯性。

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