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Novel Electro-Fenton Approach for Regeneration of Activated Carbon

机译:新型电芬顿法再生活性炭

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摘要

An electro-Fenton-based method was used to promote the regeneration of granular activated carbon (GAC) previously adsorbed with toluene. Electrochemical regeneration experiments were carried out using a standard laboratory electrochemical cell with carbon paste electrodes and a batch electrochemical reactor. For each system, a comparison was made using FeSO_4 as a precursor salt in solution (homogeneous system) and an Fe-loaded ion-exchange resin (Purolite C-100, heterogeneous system), both in combination with electrogenerated H_2O_2 at the GAC cathode. In the two cases, high regeneration efficiencies were obtained in the presence of iron using appropriate conditions of applied potential and adsorption-polarization time. Consecutive loading and regeneration cycles of GAC were performed in the reactor without great loss of the adsorption properties, only reducing the regeneration efficiency by 1% per cycle during 10 cycles of treatment. Considering that, in the proposed resin-containing process, the use of Fe salts is avoided and that GAC cathodic polarization results in efficient cleaning and regeneration of the adsorbent material, this novel electro-Fenton approach could constitute an excellent alternative for regenerating activated carbon when compared to conventional methods.
机译:基于电子芬顿的方法用于促进先前吸附有甲苯的颗粒状活性炭(GAC)的再生。使用具有碳糊电极的标准实验室电化学池和间歇式电化学反应器进行电化学再生实验。对于每种系统,均使用FeSO_4作为溶液中的前体盐(均相系统)和负载Fe的离子交换树脂(Purolite C-100,均相系统)进行了比较,二者均在GAC阴极处与电生成的H_2O_2结合使用。在这两种情况下,使用适当的施加电势和吸附极化时间条件,在铁存在下可获得较高的再生效率。在反应器中连续进行GAC的加载和再生循环,而不会损失很大的吸附性能,在10个处理循环中,每个循环仅使再生效率降低1%。考虑到在建议的含树脂工艺中,避免了使用铁盐,并且GAC阴极极化可有效清洁和再生吸附剂材料,因此,这种新颖的电子芬顿方法可在以下情况下构成再生活性炭的极佳选择:与传统方法相比

著录项

  • 来源
    《Environmental Science & Technology》 |2013年第14期|7927-7933|共7页
  • 作者单位

    Centro de Investigacion y Desarrollo Tecnologico en Electroquimica, Parque Tecnologico Queretaro Sanfandila, Pedro Escobedo,Queretaro 76703, Mexico;

    Centro de Investigacion y Desarrollo Tecnologico en Electroquimica, Parque Tecnologico Queretaro Sanfandila, Pedro Escobedo,Queretaro 76703, Mexico;

    Centro de Investigacion y Desarrollo Tecnologico en Electroquimica, Parque Tecnologico Queretaro Sanfandila, Pedro Escobedo,Queretaro 76703, Mexico;

    Centro de Investigacion y Desarrollo Tecnologico en Electroquimica, Parque Tecnologico Queretaro Sanfandila, Pedro Escobedo,Queretaro 76703, Mexico;

    Centro de Investigacion y Desarrollo Tecnologico en Electroquimica, Parque Tecnologico Queretaro Sanfandila, Pedro Escobedo,Queretaro 76703, Mexico;

    Division de Estudios de Posgrado e Investigation, Institute Tecnologico de Chetumal, Chetumal,Quintana Roo 77013, Mexico;

    Centro de Investigacion y Desarrollo Tecnologico en Electroquimica, Parque Tecnologico Queretaro Sanfandila, Pedro Escobedo,Queretaro 76703, Mexico;

    Centro de Investigacion y Desarrollo Tecnologico en Electroquimica, Parque Tecnologico Queretaro Sanfandila, Pedro Escobedo,Queretaro 76703, Mexico;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-17 14:02:09

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