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In situ adsorption-catalysis system for the removal of o-xylene over an activated carbon supported Pd catalyst

机译:原位吸附-催化系统,用于在活性炭负载的钯催化剂上去除邻二甲苯

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摘要

An activated carbon (AC) supported Pd catalyst was used to develop a highly efficient in situ adsorption-catalysis system for the removal of low concentrations of o-xylene. In this study, three kinds of Pd/AC catalysts were prepared and tested to investigate the synergistic efficiency between adsorption and catalysis for o-xylene removal. The Pd/AC catalyst was first used as an adsorbent to concentrate dilute o-xylene at low temperature. After saturated adsorption, the adsorbed o-xylene was oxidized to CO_2 and H_2O by raising the temperature of the catalyst bed. The results showed that more than 99% of the adsorbed o-xylene was completely oxidized to CO_2 over a 5% Pd/AC catalyst at 140℃. Brunauer-Emmett-Teller (BET) analysis, scanning electron microscopy (SEM), temperature-programmed desorption (TPD), and temperature-programmed oxidation (TPO) were applied to investigate the physical properties of o-xylene adsorption-desorption and the in situ adsorption-catalysis activity of the AC support and Pd/AC catalyst. A synergistic relationship between the AC support and the active Pd species for the removal of low concentrations of o-xylene was established.
机译:使用活性炭(AC)负载的Pd催化剂开发了一种高效的原位吸附催化系统,用于去除低浓度的邻二甲苯。在本研究中,制备并测试了三种Pd / AC催化剂,以研究吸附与催化去除邻二甲苯之间的协同效率。首先将Pd / AC催化剂用作吸附剂,以在低温下浓缩稀邻二甲苯。饱和吸附后,通过升高催化剂床的温度将吸附的邻二甲苯氧化为CO_2和H_2O。结果表明,在5%Pd / AC催化剂上,在140℃下,超过99%的邻二甲苯被完全氧化为CO_2。应用布鲁纳-埃米特-泰勒(BET)分析,扫描电子显微镜(SEM),程序升温脱附(TPD)和程序升温氧化(TPO)来研究邻二甲苯的吸附-脱附的物理性质以及AC载体和Pd / AC催化剂的原位吸附催化活性。建立了AC载体和活性Pd物质之间的协同关系,以去除低浓度的邻二甲苯。

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