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Photocatalytic degradation of chlorophenols using Ru(bpy) 32+ /S2O 82-

机译:使用Ru(bpy)32+ / s2O 82-光催化降解氯酚

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摘要

Abstract Advanced oxidation processes, such as photocatalysed oxidation, provide an important route for degradation of wastes. In this study, the lowest excited state (3MLCT) of Ru(bpy)32+ is used to break down chlorophenol pollutant molecules to harmless products. This has the advantage of using visible light and a short-lived catalytically active species. Photolysis of deaerated aqueous solutions of a variety of mono- and poly-substituted chlorophenols has been followed in the presence of Ru(bpy)32+/S2O82- with near visible light (? 350 nm) by UV/visible absorption spectroscopy, luminescence, potentiometry, NMR and HPLC techniques. Upon irradiation, a decrease is observed in the chlorophenol concentration, accompanied by the formation of Cl-, H+ and SO42- ions as the main inorganic products. Benzoquinone, phenol, dihydroxybenzenes and chlorinated compounds were the dominant organic products. As the ruthenium(II) complex is regenerated in the reaction, the scheme corresponds to an overall catalytic process. The kinetics of the rapid chlorophenol photodechlorination has been studied, and are described quite well by pseudo-first order behaviour. Further studies on this were made by following Cl- release with respect to the initial Ru(bpy)32+ and S2O82- concentrations. A comparison is presented of the photodechlorination reactivity of the mono and polychlorophenols studied at acidic and alkaline pH.
机译:摘要先进的氧化过程,例如光催化氧化,为废物降解提供了重要途径。在这项研究中,Ru(bpy)32+的最低激发态(3MLCT)用于将氯酚污染物分子分解为无害产品。这具有使用可见光和寿命短的催化活性物质的优点。在Ru(bpy)32 + / S2O82-存在下,通过紫外/可见吸收光谱法,发光法,在Ru(bpy)32 + / S2O82-存在下,对多种单-和多-取代氯酚的脱气水溶液进行了光解。 ,电位计,NMR和HPLC技术。辐照后,观察到氯酚浓度降低,并伴随着作为主要无机产物的Cl-,H +和SO42-离子的形成。苯醌,苯酚,二羟基苯和氯化化合物是主要的有机产品。当钌(II)络合物在反应中再生时,该方案对应于整个催化过程。已经研究了快速氯酚光脱氯的动力学,并通过拟一级反应很好地描述了动力学。通过针对初始Ru(bpy)32+和S2O82-浓度追踪Cl-释放,对此进行了进一步的研究。比较了在酸性和碱性pH下研究的单氯酚和多氯酚的光脱氯反应活性。

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