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The use of alternative catalysts in processes of the chemical degradation of di-n-butyl phthalate in aqueous solutions

机译:在水溶液中邻苯二甲酸二正丁酯化学降解过程中使用替代催化剂

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The work detailed here investigated the efficiency of oxidising technologies in clearing aqueous solutions of di-n-butyl phthalate (DBP), a known endocrine-disrupting compound (EDCs). Specifically, this paper addresses the use of the classic Fenton process, and the development of a modification of Fenton's reagent targeted at the degradation of di-n-butyl phthalate in aqueous solution. The modification in question entailed the use of alternative catalysts or a mixture thereof. Hence oxidation by hydrogen peroxide (at various different concentrations), the classic Fenton process, was tested for the removal of DBP, alongside versions modified in terms of the quantitative and qualitative composition of a mixture of catalysts, and the presence of metal ions, as well as the factors of time, pH and initial DBP concentration. Given that it did not exceed 31%, the degradation of DBP we achieved using H2O2 could not be regarded as satisfactory. In contrast, the addition of 2.5 mM L-1 of Fe2+ was found to mediate almost complete elimination of the phthalate from the model solution. Also confirmed by experimentation were the benefits of using homogeneous catalysts (compounds of copper(II) and manganese(II)) as alternatives to Fe2+ in the Fenton reagent. A key experimental achievement was to confirm the applicability of a catalyst formed from a mixture of 2 or 3 types of transition metal ion. A Fenton reaction extended to ions like Mn2+ and Cu2+ in particular is seen to eliminate factors/parameters discouraging practical industrial use of the classic Fenton process. (C) 2019 Elsevier Ltd. All rights reserved.
机译:此处详细介绍的工作研究了氧化技术在清除邻苯二甲酸二正丁酯(DBP)(一种已知的内分泌干扰化合物(EDC))水溶液中的效率。具体而言,本文着眼于经典Fenton工艺的使用,以及针对针对水溶液中邻苯二甲酸二正丁酯降解的Fenton试剂的改进。所讨论的修改需要使用替代催化剂或其混合物。因此,测试了经典的Fenton工艺中过氧化氢(各种不同浓度)的氧化作用,以除去DBP,同时对催化剂混合物的定量和定性组成以及金属离子的存在进行了修改。以及时间,pH和初始DBP浓度的因素。考虑到它不超过31%,使用H2O2实现的DBP降解不能令人满意。相反,发现添加2.5 mM L-1的Fe2 +可以介导从模型溶液中几乎完全消除邻苯二甲酸酯。实验还证实了在Fenton试剂中使用均相催化剂(铜(II)和锰(II)的化合物)替代Fe2 +的好处。一项关键的实验成果是确认由2种或3种过渡金属离子的混合物形成的催化剂的适用性。 Fenton反应扩展到了诸如Mn2 +和Cu2 +之类的离子,特别是消除了阻碍经典Fenton工艺在工业上实际使用的因素/参数。 (C)2019 Elsevier Ltd.保留所有权利。

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