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首页> 外文期刊>Adsorption >Physical and chemical properties of PAN-derived electrospun activated carbon nanofibers and their potential for use as an adsorbent for toxic industrial chemicals
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Physical and chemical properties of PAN-derived electrospun activated carbon nanofibers and their potential for use as an adsorbent for toxic industrial chemicals

机译:PAN衍生的静电纺活性炭纳米纤维的物理和化学性质及其用作有毒工业化学品吸附剂的潜力

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摘要

A recently developed carbon material, electrospun Activated Carbon nanoFiber (ACnF), exhibits strong potential for use as an adsorbent for toxic industrial chemicals (TICs). As-prepared ACnF contains as much as 9.6 wt% nitrogen, creating a basic surface that enhances acid-gas adsorption. ACnF shows 4–20 times greater HCN adsorption capacities and 2–5 times greater SO2 adsorption capacities in dry nitrogen, compared to commercially available activated carbon fiber cloth (ACFC) and Calgon BPL™ granular activated carbon, which are considered here as reference adsorbents. ACnF has 50 % of the micropore volume (0.30 cm3/g) of these reference adsorbents, which limits its adsorption capacity at high concentrations for volatile organic compounds (500 ppmv). However, at low concentrations (500 ppmv), ACnF has a similar capacity to ACFC and about three times the VOC adsorption capacity of Calgon BPL™. ACnF’s small fiber diameters (0.2–1.5 μm) allow for higher mass transfer coefficients, resulting in adsorption kinetics nearly twice as fast as ACFC and eight times as fast as Calgon BPL™. ACnF drawbacks include hydrophilicity and reduced structural strength. The rapid adsorption kinetics and high capacity for acidic TICs warrant further investigation of ACnF as an adsorbent in respiratory protection and indoor air quality applications.
机译:最近开发的碳材料,电纺活性炭纳米纤维(ACnF),具有用作有毒工业化学品(TICs)吸附剂的强大潜力。所制备的ACnF含有多达9.6 wt%的氮,从而形成可增强酸性气体吸附的碱性表面。与商用活性炭纤维布(ACFC)和Calgon BPL™颗粒状活性炭相比,ACnF在干燥氮气中的HCN吸附能力高4-20倍,SO2 吸附能力高2-5倍。作为参考吸附剂。 ACnF具有这些参考吸附剂微孔体积的50%(0.30 cm3 / g),这限制了它在高浓度下对挥发性有机化合物(> 500 ppmv )的吸附能力。但是,在低浓度(<500 ppmv )下,ACnF具有与ACFC相似的容量,约为Calgon BPL™的VOC吸附容量的三倍。 ACnF的小纤维直径(0.2–1.5μm)允许更高的传质系数,从而导致吸附动力学几乎是ACFC的两倍,是Calgon BPL™的八倍。 ACnF的缺点包括亲水性和降低的结构强度。酸性TIC的快速吸附动力学和高容量值得进一步研究ACnF作为呼吸防护和室内空气质量应用中的吸附剂。

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