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Mass transport in the membrane air-stripping process using microporous polypropylene hollow fibers: effect of toluene in aqueous feed

机译:使用微孔聚丙烯中空纤维在膜空气汽提过程中的传质:水性进料中甲苯的作用

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摘要

Membrane air-stripping (MAS), using microporous polypropylene hollow fiber membrane modules, is one of the most promising processes for removal and recovery of volatile organic compounds (VOCs) from water/wastewater. In this work, aqueous feed containing VOCs was allowed to cross-flow on the shell side, whereas air flowed through the lumen of fibers. Chloroform, toluene and their mixture were used as model VOCs. The effects of presence of toluene alone and in mixture with chloroform in aqueous feed on the mass transport of VOCs through the membrane are reported. It was found that Henry\u2019s law constants (HLCs) for toluene as well as chloroform did not change significantly in mixtures. The tests showed that higher toluene adsorption than that of chloroform on the fibers. It appeared that toluene blocked the pores partially, due to its strong affinity for the membrane material, resulting in substantially reduced mass transport.
机译:使用微孔聚丙烯中空纤维膜组件的膜气提(MAS)是从水/废水中去除和回收挥发性有机化合物(VOC)的最有前途的方法之一。在这项工作中,使含有VOC的含水进料在壳侧交叉流动,而空气则流过纤维的内腔。氯仿,甲苯及其混合物用作模型VOC。据报道,单独存在的甲苯以及在水性进料中与氯仿混合存在的甲苯对挥发性有机化合物通过膜的传质的影响。发现亨利的甲苯和氯仿的法律常数(HLC)在混合物中没有显着变化。试验表明,纤维上的甲苯吸附量比氯仿高。由于甲苯对膜材料的强亲和力,因此甲苯似乎部分地堵塞了孔,导致质量传输显着降低。

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