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首页> 外文期刊>Chemical engineering journal >Pervaporation separation of chlorinated environmental pollutants from aqueous solutions by castor oil based composite interpenetrating network membranes
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Pervaporation separation of chlorinated environmental pollutants from aqueous solutions by castor oil based composite interpenetrating network membranes

机译:蓖麻溶液基于蓖麻溶液的氯化环保污染物的渗透分离

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Castor oil derived polyurethane (PU)-polydimethylsiloxane (PDMS) blends were synthesized to develop novel composite interpenetrating network (CIPN) membranes for improving the efficiency of pervaporation (PV) in selective removal of toxic chlorinated volatile organic compounds (VOCs) such as dichloromethane (DCM), 1,2-dichloroethane (DCE), 1,1,2-trichloroethane (TCE), and 1,1,2,2-tetrachloroethane (TeCE) from dilute aqueous solutions. Structural characterization of the synthesized CIPN membranes was performed by several analytical methods to evaluate thermal stability, swelling characteristics, extent of cross-linking, crystallinity, surface morphology and mechanical strength. Among the CIPNs of varying compositions, the membrane comprising of 8 wt% PDMS in PU exhibited moderate steady state flux values of 0.183, 0.162, 0.060 and 0.082 kgm(-2) h(-1) associated with correspondingly high selectivity values of 672, 1415, 10,901 and 19,407 for different feeds containing w/v % concentrations of 1.33% DCM, 0.84% DCE, 0.44% TCE and 0.28% TeCE in water, respectively. The experimental results have demonstrated that the triglyceride derived PU IPNs have influenced the desirable structural properties along with enhancement in perm-selectivity. The development of high-performance CIPN membranes for PV will certainly stand as a preliminary breakthrough for VOCs removal from aqueous media efficiently.
机译:蓖麻油衍生的聚氨酯(PU) - 聚二甲基硅氧烷(PDMS)共混物被合成,以开发新型复合渗透网络(CIPN)膜,以提高渗透致渗透(PV)的效率,选择性地除去有毒氯化有机化合物(VOC)如二氯甲烷( DCM),1,2-二氯乙烷(DCE),1,1,2-三氯乙烷(TCE),以及来自稀水溶液的1,1,2,2-四氯乙烷(TECE)。合成的CIPN膜的结构表征通过几种分析方法进行,以评估热稳定性,溶胀特性,交联的程度,结晶度,表面形态和机械强度。在不同组合物的CIPN中,PU中包含8wt%PDMS的膜表现出与相应高选择性值的0.183,0.162,0.060和0.082kgm(-2)H(-2)H(-2)H(-2)H(-2)H(-1)的膜。对于含有W / V%浓度为1.33%DCM的不同饲料,0.84%DCE,0.44%TCE和0.28%TECE的不同饲料分别在水中分别为0.84%。实验结果表明,甘油三酯衍生的PU IPNS影响了所需的结构性能以及渗透选择性的增强。用于PV的高性能CIPN膜的开发肯定是有效地从含水介质中除去的VOC的初步突破。

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