首页> 外文期刊>Journal of Cleaner Production >Performance of electrospun nanofibrous membranes for trapping of BTX aromatic hydrocarbons and heavy metal ions: Mechanisms, isotherms and kinetics
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Performance of electrospun nanofibrous membranes for trapping of BTX aromatic hydrocarbons and heavy metal ions: Mechanisms, isotherms and kinetics

机译:电纺纳米纤维膜捕集BTX芳烃和重金属离子的性能:机理,等温线和动力学

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Fly ash (FA) was considered as an adsorbent for adsorbing some harmful substances because of its unique characteristics such as high specific surface area, porosity, functional groups, unburned carbon content in the ash, etc. In this study, FA powder with polyacrylonitrile (PAN) matrix was electrospun into a multifunctional nanofibrous membrane for trapping of BTX aromatic hydrocarbons (benzene, toluene, and xylene) and heavy metal ions. These obtained FA/PAN composites possessed the satisfactory adsorption capacity for BTX aromatic hydrocarbons and heavy metal ions including Co(II), Pb(II) and Cr(VI). The performance of electrospun PAN-based FA nanofibrous membranes for trapping of BTX compounds and heavy metal ions was investigated with emphasis on the mechanisms, isotherms and kinetics. The impact of specific surface area, pore structure, porosity and functional groups on the adsorption behavior as well as adsorbate-adsorbent physicochemical interactions (e.g., electrostatic attraction, nonpolar attraction) were discussed. The results showed that all the tested materials had the strongest adsorption capacity for trapping of xylene, followed by toluene and benzene, and for trapping of heavy metal ions followed the order: Pb(II) Co(II) Cr(VI). The most exciting result is that although the trapping of BTX aromatic hydrocarbons by FA/PAN nanofibrous membrane was slightly lower than that by activated carbon (AC) powder, it was about 1.48 and 5.04 times higher than that by AC powder for trapping of Co(II) and Pb(II), respectively. In addition, the initial adsorption rate of FA/PAN membrane and FA powder for heavy metal ions was significantly faster than that of AC powder. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于粉煤灰(FA)具有比表面积,孔隙率,官能团,粉煤灰中未燃烧的碳含量高等独特特性,因此被认为是吸附某些有害物质的吸附剂。在这项研究中,粉煤灰与聚丙烯腈( PAN)基质被静电纺成多功能纳米纤维膜,用于捕集BTX芳香烃(苯,甲苯和二甲苯)和重金属离子。这些获得的FA / PAN复合材料对BTX芳烃和包括Co(II),Pb(II)和Cr(VI)在内的重金属离子具有令人满意的吸附能力。研究了静电纺基于PAN的FA纳米纤维膜对BTX化合物和重金属离子的捕集性能,重点是机理,等温线和动力学。讨论了比表面积,孔结构,孔隙率和官能团对吸附行为以及被吸附物与吸附剂的物理化学相互作用(例如静电吸引,非极性吸引)的影响。结果表明,所有测试材料对二甲苯,甲苯和苯的捕集能力最强,对重金属离子的捕集能力依次为:Pb(II)> Co(II)> Cr(VI)。最令人兴奋的结果是,尽管FA / PAN纳米纤维膜对BTX芳香烃的捕集比活性炭(AC)粉末的捕集略低,但比AC粉末对Co()的捕集要高约1.48倍和5.04倍。 II)和Pb(II)。另外,FA / PAN膜和FA粉末对重金属离子的初始吸附速率明显快于AC粉末。 (C)2019 Elsevier Ltd.保留所有权利。

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