首页> 外文会议>International Symposium on Eco-Materials Processing and Design(ISEPD-8); 20070111-13; Kitakyushu(JP) >Control of Organic Micropollutants Using Dual Functional Adsorbent/Catalyst System
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Control of Organic Micropollutants Using Dual Functional Adsorbent/Catalyst System

机译:使用双重功能吸附剂/催化剂系统控制有机微污染物

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This study focuses on the development of novel catalysts for simultaneous adsorption and oxidation of micropollutants in aqueous phase. Molecular catalysts were physically immobilized on the surface or pore of amberlite IRA-400 or powdered activated carbon (PAC). Comparison of different combinations of catalysts and adsorbents showed that the Fe(III)-TsPc combined with amberlite had the highest removal efficiency for target compounds. Although the catalyst was immobilized by electrical attraction, no dissociation of catalyst from adsorbent occurred during the tests. Amberlite-supported Fe(III)-TsPc shows more than 98% removal efficiency in 40 min. In homogenous system (suspension of Fe(III)-TsPc in aqueous solution), the oxidation reaction occurred only in acidic conditions (pH ~ 4.5) and the catalyst deactivation rate was fast. On the contrary, the reaction was fast in neutral pH and catalytic deactivation was negligible using the amberlite-supported Fe(III)-TsPc.
机译:这项研究致力于开发新型催化剂,用于同时吸附和氧化水相中的微污染物。分子催化剂物理固定在Amberlite IRA-400或粉末状活性炭(PAC)的表面或孔上。催化剂和吸附剂不同组合的比较表明,Fe(III)-TsPc与Amberlite组合对目标化合物的去除效率最高。尽管通过电吸引将催化剂固定,但是在测试过程中没有发生催化剂与吸附剂的离解。 Amberlite负载的Fe(III)-TsPc在40分钟内显示出98%以上的去除效率。在均相体系中(Fe(III)-TsPc悬浮在水溶液中),氧化反应仅在酸性条件下(pH〜4.5)发生,催化剂失活速度快。相反,该反应在中性pH值下反应很快,而使用琥珀铁矿负载的Fe(III)-TsPc的催化失活作用可以忽略不计。

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