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首页> 外文期刊>Separation and Purification Technology >Superhydrophilic poly(p-phenylene sulfide) membrane preparation with acid/alkali solution resistance and its usage in oil/water separation
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Superhydrophilic poly(p-phenylene sulfide) membrane preparation with acid/alkali solution resistance and its usage in oil/water separation

机译:具有酸/碱溶液耐药性的超硫酸化多(对亚苯基硫化物)膜制备及其在油/水中的用途

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摘要

In this study, Poly(p-phenylene sulfide) (PPS) microporous membrane was prepared via Thermally Induced Phase Separation (TIPS), and the superhydrophilic membrane was modified by nitric acid. After the interfacial reaction between PPS membrane and HNO3, a large number of hydrophilic groups, such as -SO-, -SO2-, C=O, -NH2 and -NO2 groups, were introduced onto PPS membrane surface. When the treatment temperature was 50 degrees C, the characterized results indicated that the membrane became superhydrophilic with contact angle of 0 degrees and pure-water flux of 154.95 L/m(2) h. And the membrane structure was not destroyed during the modification via HNO3. Furthermore, the performance of modified membrane on oil/water separation was studied and all of the separation efficiency were greater than 95% when the modified membrane was utilized to separate four different types of oil/water emulsions. In particular, the modified membrane was utilized to separate the chlorobenzene/water emulsion with the separation efficiency of 98.98%. Both carbonic ink solution and 1 wt% chlorobenzene/water emulsion were filtered with the treated membrane with acid/base solution (pH = 1, 7 and 14) to evaluate the modified membrane corrosion resistance of acid/base, and the characterized results indicated that modified membrane possessed the excellent acid/base corrosion resistance.
机译:在该研究中,通过热诱导的相分离(尖端)制备聚(对亚苯基硫化物)(PPS)微孔膜,并通过硝酸改性超顺性膜。在PPS膜和HNO 3之间的界面反应之后,将大量亲水基团如-SO-,-SO 2-,C = O,-NH 2和-NO2基团引入PPS膜表面上。当处理温度为50℃时,表征结果表明,膜变得过性,接触角为0度和154.95L / m / m(2)H的纯水通量。在通过HNO3改性期间,膜结构未破坏。此外,研究了改性膜对油/水分离的性能,当改性膜用来分离四种不同类型的油/水乳液时,所有分离效率大于95%。特别地,改性膜用于将氯苯/水乳液分离,分离效率为98.98%。用酸/碱溶液(pH = 1,7和14)用处理过的膜过滤碳化油墨溶液和1wt%氯苯/水乳液,以评价酸/碱的改性膜耐腐蚀性,表明结果表明改性膜具有优异的酸/碱耐腐蚀性。

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