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Preparation and characterization of PAN-based ultra-fine activated carbon fiber adsorbent

机译:PAN基超细活性炭纤维吸附剂的制备与表征

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Polyacrylonitrile-based (PAN) ultra-fine fibers were made from electrospining with dimethylformamide as a solvent. And then the fibers were processed via pre-oxidization, carbonization, and steam activation to produce the PAN-based ultra-fine activated carbon fiber (UFACF) adsorbent. According to the specific surface area, pore volume, pore size distribution and phenol adsorption value, the effects of different factors on the yield of activation and adsorption properties of UFACF were investigated through the orthogonal experiment. TG, field emission-scanning electron microscope, FTIR, XRD were employed to characterize the morphology and structure evolvement of UFACF during thermal treatment process. At the optimal conditions, the yield of activation of UFACF was from 37.2 to 58.5%, the maximal specific surface area 1075.1 m2 g~(-1), and the maximal phenol adsorption value 377.1 mg g~(-1).
机译:聚丙烯腈基(PAN)超细纤维是由以二甲基甲酰胺为溶剂的静电纺丝制成的。然后通过预氧化,碳化和蒸汽活化处理纤维,以生产PAN基超细活性炭纤维(UFACF)吸附剂。根据比表面积,孔容,孔径分布和苯酚吸附值,通过正交试验研究了不同因素对UFACF活化产率和吸附性能的影响。用TG,场发射扫描电子显微镜,FTIR,XRD表征了UFACF在热处理过程中的形貌和结构演变。在最佳条件下,UFACF的活化率为37.2〜58.5%,最大比表面积为1075.1 m2 g〜(-1),最大苯酚吸附值为377.1 mg g〜(-1)。

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