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The effect of coating condition and aqueous phase composition on the performance of thin film composite reverse osmosis flat sheet membranes

机译:涂布条件和水相组成对薄膜复合反渗透平板膜性能的影响

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摘要

Thin film composite (TFC) layers are formed using interfacial polymerization reaction between an aqueous phase and organic phase on membrane supports. In the preparation of thin film composite membrane, there are many interfacial reaction factors that influence the membrane performance, amongst them are dipping time, curing temperature and composition of aqueous phase. Thus in this project these factors were studied in two stages. In the preliminary stage, the effect of dipping time and curing temperature on the performance of TFC membrane were evaluated using two different kinds of polymer membrane supports, cellulose acetate and polysulfone. Initial results revealed that dipping time does not affect the performance of TFC membranes especially rejection rate but curing temperature have significant influence. Curing temperature ranging from 40??C to 100??C was used during the interfacial reaction process. Cellulose acetate TFC membranes cured at 60??C exhibited highest rejection rate of 76% whilst polysulfone TFC membranes cured at 80??C showed not only highest rejection rate of 80% but also excellent flux rates. Since polysulfone TFC membranes showed superior performance compared to cellulose acetate, it is chosen for the second stage of the experiment. In this stage, a systematic experimental design based on the response surface methodology was used to identify the significant interfacial reaction factors which influence the membrane performance. The factors considered were the composition of aqueous phase that includes the ratio of m-phenyldiamine to hydroquinone as monomer, percent of tetrabutylammonium bromide as a catalyst and percent of sodium hydroxide as an acid acceptor. Rejection and flux rates were the response variables investigated. The experimental results indicate that the proposed mathematical model suggested could adequately describe the performance indicators within the limits of the factors that are being investigated.
机译:薄膜复合材料(TFC)层是使用膜载体上水相和有机相之间的界面聚合反应形成的。在薄膜复合膜的制备中,有很多影响膜性能的界面反应因素,包括浸渍时间,固化温度和水相组成。因此,在本项目中,这些因素分两个阶段进行了研究。在初步阶段,使用两种不同的聚合物膜载体醋酸纤维素和聚砜评估浸渍时间和固化温度对TFC膜性能的影响。初步结果表明,浸渍时间不会影响TFC膜的性能,特别是废品率,但固化温度有显着影响。在界面反应过程中使用的固化温度为40℃至100℃。在60℃固化的醋酸纤维素TFC膜表现出最高的排斥率,为76%,而在80℃固化的聚砜TFC膜,不仅表现出最高的排斥率,为80%,而且通量也极佳。由于聚砜TFC膜比醋酸纤维素具有更好的性能,因此将其选择为实验的第二阶段。在这一阶段,基于响应表面方法的系统实验设计被用来确定影响膜性能的重要界面反应因素。所考虑的因素是水相的组成,包括作为单体的间苯二胺与氢醌的比例,作为催化剂的溴化四丁基铵的百分比和作为酸受体的氢氧化钠的百分比。排斥和通量率是研究的响应变量。实验结果表明,所提出的数学模型可以在正在研究的因素范围内充分描述性能指标。

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    Kormin Faridah;

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  • 年度 2005
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