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首页> 外文期刊>Environmental Science and Pollution Research >Elimination of carcinogenic bromate ions from aqueous environment with 4-vinyl pyridine-g-poly(ethylene terephthalate) fibers
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Elimination of carcinogenic bromate ions from aqueous environment with 4-vinyl pyridine-g-poly(ethylene terephthalate) fibers

机译:用4-乙烯基吡啶-G聚(乙二醇酯)纤维从水性环境中消除致癌溴酸盐离子

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摘要

In this study, poly(ethylene terephthalate) fibers grafted with 4-vinyl pyridine (PET-g-4VP) was synthesized with using a radical polymerization method and its removal capacity for bromate ions in the aqueous solution was explored. The synthesized graft copolymer was structurally characterized by scanning electron microscopy (SEM) and Fourier transformed infrared spectroscopy (FTIR). The effect of some parameters such as pH, grafting rate, processing time, and ion concentration on bromate removal was examined with batch experiments. The sorptions of bromate onto the PET-g-4VP fibers were both verified with FTIR and X-ray fluorescence analysis (XRF) and the remaining amount of bromate after adsorption process was determined with an ion chromatography (Shimadzu). Moreover, kinetic and isotherm studies were also performed for adsorption of bromate with the grafted fibers. The point of zero charge (pH(pzc)) of the PET-g-4VP fibers was found to be 7.5 and the fibers removed maximum amount of bromate from aqueous solution at pH 3. Equilibrium time of adsorption was determined to be 75 min and the adsorption kinetic was found to be pseudo-second-order model. It was observed that the increase in the amount of grafted 4VP onto the PET fibers increased the bromate removal capacity of the fibers; however, when the grafting yield of 4VP was over 80%, the bromate removal ability of the fibers decreased. The maximum bromate removal capacity of the PET-g-4VP was determined to be 183 mg/g when the initial bromate amount was 800 mg/L, treatment time was 75 min, pH of the solution was 3, and 4VP grafting yield was 80%. When the initial bromate concentration was higher than 800 mg/L, the removal rate of the PET-g-4VP fibers was not changed. In addition, bromate ion adsorption data indicated compliance with the Freundlich isotherm. The adsorbent fibers obtained by this study may be promising candidates for the removal of bromate ions from the aqueous media.
机译:在该研究中,使用自由基聚合方法将聚(乙二醇酯)纤维用4-乙烯基吡啶(PET-G-4VP)合成,并探讨了水溶液中的溴酸盐离子的去除能力。通过扫描电子显微镜(SEM)和傅里叶变换的红外光谱(FTIR)在结构表征合成的接枝共聚物。用批量实验检查一些参数如pH,接枝速率,处理时间和离子浓度的效果。用FTIR和X射线荧光分析(XRF)验证溴酸盐到PET-G-4VP纤维上,并用离子色谱法(Shimadzu)测定吸附过程后的溴酸盐的剩余量。此外,还进行了动力学和等温性研究,用于用接枝纤维吸附溴酸盐。该PET-G-4VP纤维的零电荷(pH值(PZC))的点被发现是7.5和纤维中除去从水溶液溴酸盐的量最大,在pH 3平衡时间的吸附被确定为75分钟,并发现吸附动力学是伪二阶模型。观察到,接枝的4VP含量增加到PET纤维上增加了纤维的溴酸盐去除能力;然而,当4VP的接枝产率超过80%时,纤维的溴酸盐去除能力降低。当初始溴酸盐量为800mg / L时,测定PET-G-4VP的最大溴酸盐去除能力为183mg / g,处理时间为75分钟,溶液的pH为3,4VP接枝产率为80 %。当初始溴酸盐浓度高于800mg / L时,不改变PET-G-4VP纤维的去除率。此外,溴酸酯离子吸附数据表明符合Freundlich等温线。通过该研究获得的吸附纤维可能是希望从水性介质中除去溴酸盐离子的候选物。

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