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Adsorption of volatile organic compounds by means of activated carbon fibre-based monoliths

机译:通过活性炭纤维基整体吸附挥发性有机化合物

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摘要

Activated carbon fibre monoliths (ACFMs) were prepared from the rejects of polymeric fibres (Nomex~(TM)). These were carbonised, agglomerated with a phenolic resin and steam activated at burnoff degtrees between 0 and 40. Adsorption experiments with n-butane at 30 deg C show that, at high adsorbate concentrations, the amount adsorbed is a function of pore volume, but at low concentrations this mainly depends on pore size distribution. The porosity of Nomex-based ACFMs is formed by narrow micropores, which permit higher amounts of vapour to be adsorbed in low concentrations compared to monoliths prepared from different commercial activated fibres and a commercial granular activate carbon, which exhibits wider pores. The agglomeration of Nomex-fibres to form ACFMs does not cause any loss in adsorption properties with respect to non-agglomerated activated fibres. From the adsorption experiments of different vapours on a Nomex-based ACFM (40 burnoff) it was found that at high concentrations (p/p_o = 1) the adsorbed volume was independent of the nature of the adsorbate and depended only on pore volume. However, at low vapor concentrations (p/p_o = 0.004), the amount adsorbed depended on the adsorbate being well correlated to the molecular parachor and the polarizability of the adsorbates.
机译:以聚合物纤维(Nomex~(TM))废渣为原料制备了活性炭纤维整体(ACFMs)。它们被碳化,用酚醛树脂团聚,并在 0 到 40% 的燃尽度下活化蒸汽。正丁烷在30°C下的吸附实验表明,在高吸附物浓度下,吸附量是孔隙体积的函数,但在低浓度下,这主要取决于孔径分布。基于 Nomex 的 ACFM 的孔隙率由狭窄的微孔形成,与由不同商业活性纤维和具有更宽孔隙的商业颗粒活性炭制备的单体相比,它允许在低浓度下吸附更多的蒸汽。与未团聚的活化纤维相比,Nomex纤维的团聚形成ACFM不会造成任何吸附性能的损失。通过不同蒸气在基于 Nomex 的 ACFM(40% 燃尽)上的吸附实验,发现在高浓度 (p/p_o = 1) 下,吸附体积与吸附物的性质无关,仅取决于孔隙体积。然而,在低蒸气浓度(p/p_o = 0.004)下,吸附量取决于吸附物与分子parachor的相关性以及吸附物的极化率。

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