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首页> 外文期刊>Environmental Science and Pollution Research >Using iron-loaded sepiolite obtained by adsorption as a catalyst in the electro-Fenton oxidation of Reactive Black 5
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Using iron-loaded sepiolite obtained by adsorption as a catalyst in the electro-Fenton oxidation of Reactive Black 5

机译:将吸附制得的载铁海泡石用作活性黑5的电芬顿氧化中的催化剂

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摘要

This study explores the possibility of using iron-loaded sepiolite, obtained by recovering iron from polluted water, as a catalyst in the electro-Fenton oxida?tion of organic pollutants in textile effluents. The removal of iron ions from aqueous solution by adsorption on sepiolite was studied in batch tests at iron concentrations between 100 and 1,000 ppm. Electro-Fenton experiments were carried out in an electrochemical cell with a working volume of 0.15 L, an air flow of 1 L/min, and 3 g of iron-loaded sepiolite. An electric field was applied using a boron-doped diamond anode and a graphite sheet cathode connected to a direct current power supply with a constant potential drop. Reactive Black 5 (100 mg/L) was selected as the model dye. The adsorption isotherms proved the ability of the used adsorbent. The removal of the iron ion by adsorption on sepiolite was in the range of 80-100 % for the studied concentration range. The Langmuir and Freundlich isotherms were found to be applicable in terms of the relatively high regression values. Iron-loaded sepiolite could be used as an effective heterogeneous catalyst for the degradation of organic dyes in the electro-Fenton process. Successive batch processes were performed at optimal working conditions (5 V and pH 2). The results indicate the suitability of the proposed combined process, adsorption to iron remediation followed by the application of the obtained iron-loaded sepiolite to the electro-Fenton technique, to oxidize polluted effluents.
机译:这项研究探索了使用载有铁的海泡石的可能性,该海泡石是通过从污水中回收铁获得的,作为纺织品废水中有机污染物的电子芬顿氧化的催化剂。在铁浓度为100至1,000 ppm的分批测试中,研究了通过吸附在海泡石上从水溶液中去除铁离子的方法。在工作量为0.15 L,空气流量为1 L / min和3 g铁负载海泡石的电化学电池中进行了电子芬顿实验。使用掺硼金刚石阳极和石墨片阴极施加电场,石墨阴极连接到具有恒定电势降的直流电源。选择活性黑5(100 mg / L)作为模型染料。吸附等温线证明了所用吸附剂的能力。在所研究的浓度范围内,通过在海泡石上的吸附除去铁离子的范围为80-100%。发现Langmuir和Freundlich等温线适用于较高的回归值。铁载海泡石可以用作一种有效的非均相催化剂,用于在电子芬顿工艺中降解有机染料。在最佳工作条件(5 V和pH 2)下进行了连续的批处理过程。结果表明所提出的组合方法的适用性,吸附至铁修复,然后将获得的负载铁的海泡石应用于电芬顿技术,以氧化被污染的废水。

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