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Decolorization and Mineralizationof Rhodamine B inAqueous Solution with a Triple System of Cerium(IV)/H2O2/Hydroxylamine

机译:脱色和矿化罗丹明B的含量铈(IV)/ H2O2 /羟胺三重体系的水溶液

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摘要

Hydroxylamine (HA) can react with hydrogen peroxide (H2O2) to generate hydroxyl radical (HO), but the reaction rate between them is very slow (2.2 × 10–4 M–1 s–1). We propose a new system to accelerate the formation of aminoxyl radical (NH2O) by the addition of cerium [Ce(IV)] to induce the continuous production of HO through reaction with H2O2. We also investigate the decolorization and mineralization of rhodamine B (RhB) and mechanism in the Ce(IV)/H2O2/HA system. The initial pH plays a significant role in decolorization of RhB. In this work, observation of the rapid decolorization process after 60 min revealed that approximately 80% of RhB was degraded at the initial pH of 4.0. The HO radicals were considered as the primary reactive oxidant in the system, during its investigation through coumarin capturing, benzoic acid capturing, and radical quenching experiments. The results of the present study suggest that the addition of Ce(IV) can greatly enhance the production of HO, and the rapid decolorizationand mineralization of RhB can occur through the Ce(IV)/H2O2/HA system at acidic pH conditions.
机译:羟胺(HA)可以与过氧化氢(H2O2)反应生成羟基自由基(HO ),但是它们之间的反应速度非常慢(2.2×10 –4 M –1 s –1 )。我们提出了一个新的系统,通过添加铈[Ce(IV)]来促进HO 的连续产生,从而加速氨基自由基(NH2O )的形成。与过氧化氢反应。我们还研究了若丹明B(RhB)的脱色和矿化作用以及Ce(IV)/ H2O2 / HA系统中的机理。初始pH在RhB脱色中起重要作用。在这项工作中,观察60分钟后的快速脱色过程,发现在初始pH为4.0时,大约80%的RhB降解了。通过香豆素捕获,苯甲酸捕获和自由基猝灭实验研究,HO 自由基被认为是系统中的主要反应性氧化剂。本研究结果表明,添加Ce(IV)可以大大提高HO 的产生,并能快速脱色。RhB的矿化可通过Ce(IV)/ H2O2 / HA系统在酸性pH条件下发生。

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