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Degradation of dimethyl sulfoxide through fluidized-bed Fenton process

机译:流化床Fenton工艺降解二甲亚砜

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Dimethyl sulfoxide (DMSO), one of the most widely used solvent, was subjected to fluidized-bed Fenton oxidation in this study. Fenton oxidation is considered one of the cheapest advanced oxidation processes due to high availability of Fenton's reagents Fe2+ and H2O2, wherein, Fe2+ catalyzes hydroxyl radical production from H2O2. Fluidized-bed Fenton process is a modified approach which is also used to address the production of large amount of iron oxide sludge in conventional Fenton process. Parametric study is included in this research using initial conditions of pH 2-7, 0.5-7.25 mM Fe2+, 5-87.5 mM H2O2, and 5-50 mM DMSO. Fluidized-bed Fenton oxidation of 5 mM DMSO using 68.97 g/L SiO2 carrier at initial conditions of pH 3, 5 mM Fe2+, and 32.5 mM H2O2 resulted to 95.22% DMSO degradation, 34.38% TOC removal and 0.304 mM sulfate/mM DMSO0 production in 2 h. The study shows that the intermediate product which was most difficult to oxidize and contributed most to the residual TOC was methanesulfonate. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,使用最广泛的溶剂之一二甲基亚砜(DMSO)进行了流化床Fenton氧化。由于芬顿试剂Fe2 +和H2O2的高可用性,Fenton氧化被认为是最便宜的高级氧化工艺之一,其中Fe2 +催化H2O2产生羟基自由基。流化床芬顿工艺是一种改进的方法,也用于解决常规芬顿工艺中大量氧化铁污泥的生产。使用初始条件为pH 2-7、0.5-7.25 mM Fe2 +,5-87.5 mM H2O2和5-50 mM DMSO进行参数研究。在pH 3、5 mM Fe2 +和32.5 mM H2O2的初始条件下使用68.97 g / L SiO2载体对5 mM DMSO进行流化床Fenton氧化导致DMSO降解95.22%,TOC去除34.38%和产生0.304 mM硫酸盐/ mM DMSO0在2小时内研究表明,最难以氧化且对残留TOC贡献最大的中间产物是甲磺酸盐。 (C)2015 Elsevier B.V.保留所有权利。

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