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Superfine powdered activated carbon incorporated into electrospun polystyrene fibers preserve adsorption capacity

机译:静电纺聚苯乙烯纤维中掺入的超细粉状活性炭可保持吸附能力

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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 carboa 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 m~2/g to 43 m~2/g. Unlike metal oxide nanoparticles, which are non-accessible for sorption from solution, electrospinning with SPAC created porous fibers. Composite SPAC-PS elearospun 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 adsoφtion 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
机译:首次通过静电纺丝制备了由超细粉状活性炭(SPAC)和纤维状聚苯乙烯(PS)组成的复合材料。 SPAC是通过将粉末状活性炭粉碎而制得的。SPAC(100-400 nm)的直径比传统粉末状活性炭小100倍以上,但它根据有机微污染物吸附等温线和比表面积测量值保持内部孔结构。将SPAC共纺到PS纤维中,比表面积从6 m〜2 / g增加到43 m〜2 / g。与无法从溶液中吸附的金属氧化物纳米粒子不同,使用SPAC进行静电纺丝可形成多孔纤维。与仅PS纤维相比,仅包含10%SPAC的复合SPAC-PS elearospun纤维具有30%的菲吸附。嵌入聚合物中的SPAC颗粒被部分或全部掺入,并且保留了末端吸附位点的可及性。在电纺非织造聚合物纤维脚手架中保留SPAC颗粒的吸附功能可以使其在环境应用(例如饮用水处理)中应用

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