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Activated carbon fibers for efficient VOC removal from diluted streams: the role of surface morphology

机译:活性炭纤维可有效去除稀释流中的VOC:表面形态的作用

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The effect of the micropore structure of activated carbon fibers (ACFs) on the adsorption of toluene at low concentration (10-80 ppmv) was studied over two types of ACFs. Both adsorbents presented similar surface chemistry but different porous structure: one ACF was ultramicroporous (d (pore) < 1 nm) and the other supermicroporous (d (pore) similar to 1 to 2 nm). Toluene adsorption isotherms were determined for both ACFs and were found to be consistent with Dubinin-Radushkevich (D-R) model. The toluene adsorption enthalpies calculated from temperature-programmed desorption profiles at temperatures below 330 K were close to the values obtained from D-R equations. Larger adsorption strength was found in the ultramicroporous adsorbent as compared to the supermicroporous one suggesting that the pore shape strongly influences the adsorption mechanism. The adsorbent with a lower specific surface area but narrower micropores could be more efficient at high temperatures than an adsorbent with large pore volume and wider micropores. The findings reported have a big importance for correct choice of material when designing efficient structured adsorbing bed.
机译:在两种类型的ACF上研究了活性炭纤维(ACF)的微孔结构对低浓度(10-80 ppmv)甲苯吸附的影响。两种吸附剂的表面化学性质相似,但多孔结构不同:一种ACF为超微孔(d(孔)<1 nm),另一种为超微孔(d(孔)约1至2 nm)。测定了两个ACF的甲苯吸附等温线,发现与Dubinin-Radushkevich(D-R)模型一致。在低于330 K的温度下,通过程序编程的脱附曲线计算出的甲苯吸附焓接近于从D-R方程获得的值。与超微孔吸附剂相比,在超微孔吸附剂中发现更大的吸附强度,这表明孔的形状强烈影响吸附机理。具有较低比表面积但较窄的微孔的吸附剂在高温下比具有大孔体积和较宽的微孔的吸附剂更有效。报道的发现对设计有效的结构化吸附床时正确选择材料具有重要意义。

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