吸附
吸附
静电纺丝
化学工程
材料科学
聚苯乙烯
活性炭
复合数
比表面积
粉末活性炭处理
纤维
复合材料
聚合物
化学
有机化学
催化作用
工程类
作者
Onur G. Apul,Natalia Hoogesteijn von Reitzenstein,Jared Schoepf,David A. Ladner,Kiril Hristovski,Paul Westerhoff
标识
DOI:10.1016/j.scitotenv.2017.03.126
摘要
A composite material consisted of superfine powdered activated carbon (SPAC) and fibrous polystyrene (PS) was fabricated for the first time by electrospinning. SPAC is produced by pulverizing powdered activated carbon. The diameter of SPAC (100–400 nm) is more than one hundred times smaller than conventional powdered activated carbon, but it maintains the internal pore structure based on organic micropollutant adsorption isotherms and specific surface area measurements. Co-spinning SPAC into PS fibers increased specific surface area from 6 m2/g to 43 m2/g. Unlike metal oxide nanoparticles, which are non-accessible for sorption from solution, electrospinning with SPAC created porous fibers. Composite SPAC-PS electrospun fibers, containing only 10% SPAC, had 30% greater phenanthrene sorption compared against PS fibers alone. SPAC particles embedded within the polymer were either partially or fully incorporated, and the accessibility of terminal adsorption sites were conserved. Conserving the adsorptive functionality of SPAC particles in electrospun non-woven polymeric fiber scaffolding can enable their application in environmental applications such as drinking water treatment.
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