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首页> 外文期刊>Waste Technology >Studies of thermal annealing and dope composition on the enhancement of separation performance cellulose acetate membrane for brackish water treatment from Jepara
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Studies of thermal annealing and dope composition on the enhancement of separation performance cellulose acetate membrane for brackish water treatment from Jepara

机译:Jepara的热退火和浓液组成对醋酸纤维素膜分离处理性能的影响

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Membrane is an alternative technology of water treatment with filtration principle that is being widely developed and used for water treatment. The main objective of this study was to make an asymmetric membrane using cellulose acetate polymer and study the effect of additive and annealing treatment on the morphology structure and performance of cellulose acetate membranes in brackish water treatment. Asymmetric membranes for brackish water treatment were casted using a casting machine process from dope solutions containing cellulose acetates and acetone as a solvent. Membranes was prepared by phase inversion method with variation of polyethylene glycol (PEG) concentration of 1 and 5 wt% and with thermal annealing at 60 oC in 10 seconds and without thermal annealing behavior. Membrane characterization consists of calculation of membrane flux and rejection with brackish water as a feed from Jepara. The research concluded that asymmetric cellulose acetate membrane can be made by dry/wet phase inversion method. The more added concentration of PEG will be resulted the larger pore of membrane. Meanwhile the higher temperature and the longer time of annealing treatment, the skin layer of membrane become denser. Membrane with the composition of 18 wt% cellulose acetate, 5 wt% PEG, 1 wt% distilled water, with heat treatment at temperature of 60 oC for 10 seconds is obtained optimal performance.
机译:膜是一种具有过滤原理的水处理替代技术,目前已广泛开发并用于水处理。这项研究的主要目的是使用醋酸纤维素聚合物制造不对称膜,并研究添加剂和退火处理对微咸水处理中醋酸纤维素膜的形态结构和性能的影响。使用流延机工艺从包含乙酸纤维素和丙酮作为溶剂的浓液中流延用于咸水处理的不对称膜。通过相转化法制备膜,其中聚乙二醇(PEG)的浓度变化为1和5 wt%,并在60 oC下进行热退火10秒,并且没有热退火行为。膜表征包括膜通量的计算和以微咸水为原料的Jepara进料的排斥。研究得出结论,不对称乙酸纤维素膜可以通过干/湿相转化法制备。 PEG添加的浓度越高,膜的孔越大。同时,较高的温度和较长的退火处理时间,使膜的表皮层致密。组成为18%(重量)的醋酸纤维素,5%(重量)的PEG,1%(重量)的蒸馏水,并在60 oC的温度下热处理10秒钟,可获得最佳性能。

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