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RuCl3 Catalyzed and Uncatalyzed Oxidative Decolorization of Acid Orange 7 Dye with Chloramine-B in Acid Medium: Spectrophotometric, Kinetic and Mechanistic Study

机译:RuCl3在酸性介质中用氯胺-B催化和未催化氧化酸性橙7染料的氧化脱色:分光光度法,动力学和机理研究

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摘要

Acid orange 7, chemically known as sodium 4-[(2E)-2-(2-oxonaphthalen-1-ylidene)hydrazinyl]benzenesulfonate, is extensively used for dyeing textiles, paper and leather. The discharge of wastewater containing this dye, causes environmental and health related problems. Therefore, in the present research, we have developed optimum conditions for the facile oxidative decolorization of this dye with sodium N-chlorobenzenesulfonamide or chloramine-B (CAB). The kinetics and mechanism of oxidative decolorization of acid orange 7 dye with CAB in acidic medium have also been studied spectrophotometrically at 303 K in the presence and absence of RuCl3 catalyst. Under similar experimental conditions, the reaction exhibits a first-order dependence of rate each on [CAB](o) and [dye](o), and an inverse-fractional-order dependence on [H+] for both the RuCl3 catalyzed and uncatalyzed reactions. The order with respect to RuCl3 is fractional. Activation parameters have been computed. Dielectric effect is negative in both the cases. Oxidation products of the acid orange 7 dye are identified as 1,2-naphthoquinone and benzenesulfonic acid by GC-MS data. The RuCl3 catalyzed reaction is about four fold faster than the uncatalyzed reaction. The chemical oxygen demand value of the dye was determined. The mechanistic pathways and kinetic modelings have been computed based on experimental results. The developed oxidative decolorization method is expected to be helpful to treat acid orange 7 dye present in wastewater after suitable modifications.
机译:酸性橙7,化学上称为4-[((2E)-2-(2-oxonaphthalen-1-亚基)肼基]苯磺酸钠],被广泛用于纺织品,纸张和皮革的染色。含有这种染料的废水的排放会引起环境和健康方面的问题。因此,在本研究中,我们已经开发了使用N-氯苯磺酰胺钠或氯胺B(CAB)对该染料进行容易的氧化脱色的最佳条件。在存在和不存在RuCl3催化剂的情况下,在303 K下,用分光光度法研究了酸性橙7染料用CAB在酸性介质中氧化脱色的动力学和机理。在相似的实验条件下,对于RuCl3催化和未催化的RuCl3,反应均显示速率对[CAB](o)和[染料](o)的一阶依赖关系,以及对[H +]的反分数阶依赖关系。反应。关于RuCl 3的顺序是分数。激活参数已计算。在两种情况下介电效应均为负。酸性橙7染料的氧化产物通过GC-MS数据鉴定为1,2-萘醌和苯磺酸。 RuCl3催化的反应比未催化的反应快约四倍。确定了染料的化学需氧量。根据实验结果计算了机械路径和动力学模型。经过适当的修饰,预计开发的氧化脱色方法将有助于处理废水中的酸性橙7染料。

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