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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Efficient adsorption of oil in water by hydrophobic nonwoven fabrics coated with cross-linked polydivinylbenzene fibers
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Efficient adsorption of oil in water by hydrophobic nonwoven fabrics coated with cross-linked polydivinylbenzene fibers

机译:用交联聚二乙烯基苯涂覆的疏水性无纺布用疏水性无纺布在水中有效吸附油

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Background Oil pollution of water causes extensive damage to the environment and human health. Adsorption techniques are environmentally friendly and relatively feasible to treat oil contamination and reclaim oil resources, and it is essential to develop adsorbents that have high adsorption capacity for oil which can be recycled and regenerated conveniently to save money and resources. Results Hydrophobic nonwoven fabrics coated with polydivinylbenzene nanofibres (HNF-PDVB) were constructed by a one-step cation polymerization reaction. The results showed that the optimal concentration of OTS (octadecylsilane) for the modification of nonwoven fibers was 1.22 mL L(-1)of n-hexane. The HNF-PDVB showed relatively good performance in adsorbing oil from water, with adsorption capacity as high as 7.5 g g-1. Freundlich and Dubinin-Radushkevic isotherms fitted well with the experimental data. The kinetic data fitted better to the pseudo-second-order and intraparticle diffusion models, and the parameters indicated that the adsorption by HNF-PDVB involved macropores that contributed to the rapid and high-capacity adsorption, as well as micropores that resulted in the diffusion of oil in the nanofibres. Thermodynamics studies revealed that the adsorption was spontaneous and endothermic, with an increasing performance when the temperature rose from 10 to 50 degrees C. The material possessed good stability and the adsorption capacity reduced from 7.5 g g(-1) to 6.6 g g(-1) after ten cycles of repeated use, recovered by squeezing and ethanol extraction. Conclusion This work demonstrates that the new hydrophobic nonwoven fabrics have the potential to be used for elimination of pollution from oil wastewater. (c) 2018 Society of Chemical Industry
机译:背景技术水污染对环境和人类健康导致广泛的损害。吸附技术是对处理石油污染和回收石油资源的环保和相对可行的,并且对油脂具有高吸附能力的吸附剂至关重要,这可以方便地再生和再生以节省资金和资源。结果采用一步阳离子聚合反应构建涂有聚二氨基苯纳米纤维(HNF-PDVB)的疏水性无纺布(HNF-PDVB)。结果表明,非织造纤维改性的OTS(十八烷基硅烷)的最佳浓度为1.22mL L(-1)正己烷。 HNF-PDVB在吸附来自水的油中表现出相对良好的性能,吸附容量高达7.5g G-1。 Freundlich和Dubinin-Radushkevic等温机与实验数据很好。适用于伪二阶和粒子分散模型的动力学数据,参数表明HNF-PDVB的吸附涉及巨大的宏观,以及导致扩散的微孔纳米纤维中的油。热力学研究表明,吸附是自发和吸热的,随着温度升高到50℃的温度越来越大。该材料具有良好的稳定性,吸附能力从7.5 gg(-1)降至6.6 gg(-1)经过十次重复使用后,通过挤压和乙醇提取回收。结论这项工作表明,新的疏水性无纺布具有可用于消除油废水的污染。 (c)2018化学工业协会

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