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Electroadsorptive Removal of Gaseous Pollutants

机译:电磁涂层去除气态污染物

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摘要

Adsorption is a consequence of surface energy distribution, and the existence of electrostatic bonding suggests that the presence of an external electric field may affect adsorbate/adsorbent interactions. Nevertheless, this aspect has been poorly studied in the literature, except under non-thermal plasma or corona discharge conditions. After having demonstrated in our previous work that the adsorption kinetics of gaseous organic compounds can be enhanced by the presence of an external applied electric field, in this study, we focus on the influence of the electric field on adsorbent and adsorptive interactions. By using a commercially available activated carbon cloth, in addition to increasing the adsorbent mass transfer coefficient by virtue of the increasing intensity of the applied electric field, the results suggest that adsorbent morphology is only influenced by the formation of new surface functional groups. Moreover, enhanced adsorption kinetics and capacity may result from the electrohydrodynamic force induced by the movement of charged and neutral particles towards the adsorbent, as confirmed by the reversibility of the process. Such enhancement results in a negligible increase, of about 3%, in adsorption capacity (i.e., from 91 mmol m−2 Pa−1 for only adsorption to 94 mmol m−2 Pa−1 in the presence of the applied electric field), but also in a dramatic doubling of adsorption kinetics (i.e., from 0.09 min−1 for only adsorption to 0.19 min−1 in the presence of the applied electric field). In reality, the application of an electric field to an activated carbon cloth leads to faster adsorption kinetics, without substantially altering its adsorption capacity.
机译:吸附是表面能分布的结果,静电键合的存在表明外部电场的存在可能影响吸附/吸附剂相互作用。然而,除非在非热等离子体或电晕放电条件下,该方面在文献中已经很差。在我们先前的工作中证明了气态有机化合物的吸附动力学,在本研究中可以通过外部应用电场的存在增强,我们专注于电场对吸附剂和吸附相互作用的影响。通过使用市售的活性炭布,除了由于所施加的电场的强度增加的增加吸附剂的传质系数,结果表明,吸附剂形态仅由新的表面官能团的形成的影响。此外,增强的吸附动力学和容量可能来自通过通过朝向吸附剂的带电和中性颗粒的运动诱导的电液动力学力而导致的,通过该方法的可逆性证实。这种增强导致吸附容量(即,从91mmol M-2 Pa-1的吸附容量(即仅吸附于94mmol M-2 Pa-1)的易忽略不计,而且还在吸附动力学的剧烈加倍(即,在0.09 min-1的情况下仅吸附到0.19 min-1,在应用的电场的存在下)。实际上,将电场应用于活性炭布导致更快的吸附动力学,而不会改变其吸附能力。

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