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Evaluation of the mercaptobenzothiazole degradation by combined adsorption process and Fenton reaction using iron mining residue

机译:铁矿渣联合吸附法与Fenton反应评价巯基苯并噻唑的降解

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摘要

The present study investigated the degradation of mercaptobenzothiazole (MBT), evaluating homogeneous and heterogeneous systems. An iron mineral residue from the desliming step of iron mining was used as a source in the Fenton-like reaction (advanced oxidation process). A granulometric analysis of the residue was performed and yielded fractions with high hematite ((FeO3)-O-2) and low quartz content in sieves from 74 to below 44 mm. In this particle size range, the hematite content from 58.9% to 67.4% and the Brunauer-Emmett-Teller area from 0.1345 to 1.3137 m(2) g(-1) were obtained. The zeta potential curves as a function of pH were obtained for the residue, the MBT solution and mixtures thereof. The adsorption of MBT in the residue and its degradation through the Fenton-like reaction were investigated. Adsorption tests and the Fenton-like reaction were carried out, where the MBT species and the residue are oppositely charged, yielding, respectively, 10% MBT adsorption on the surface of the residue and 100% MBT degradation by the Fenton-like reaction at pH 3, hydrogen peroxide concentration of 25 mg L-1, residue concentration of 3 g L-1, 200 rpm and 25 degrees C, from a 100 mg L-1 MBT solution. MBT degradation was found to occur mainly by the heterogeneous Fenton-like process.
机译:本研究调查了巯基苯并噻唑(MBT)的降解,评估了均相和异相系统。来自铁矿的脱泥步骤的铁矿物残渣被用作类芬顿反应(高级氧化过程)的来源。对残留物进行粒度分析,得到筛分从74毫米到44毫米以下的高赤铁矿((FeO3)-O-2)和低石英含量的馏分。在此粒径范围内,获得的赤铁矿含量为58.9%至67.4%,Brunauer-Emmett-Teller面积为0.1345至1.3137 m(2)g(-1)。获得了残余物,MBT溶液及其混合物的ζ电势曲线与pH的关系。研究了残留物中MBT的吸附及其通过Fenton样反应的降解。进行吸附试验和类Fenton反应,其中MBT种类和残留物带相反电荷,分别在残留物表面上产生10%MBT吸附,在pH值下通过类Fenton反应产生100%MBT降解3,从100mg L-1 MBT溶液中,过氧化氢浓度为25mg L-1,残留物浓度为3g L-1,200rpm和25℃。发现MBT降解主要通过异质Fenton样过程发生。

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