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Cu and Fe-containing ZSM-5 zeolites as catalysts for wet peroxide oxidation of organic contaminants: reaction kinetics

机译:含铜和铁的ZSM-5沸石作为有机污染物湿式过氧化物氧化的催化剂:反应动力学

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The peroxide oxidation of model substrates (formic acid and phenol) was studied in the presence of copper- and iron-containing catalysts (0.5 % Cu-ZSM-5-30 and 0.65 % Fe-ZSM-5-30). The aim was to develop optimal kinetic models for describing the kinetics of peroxide oxidation. The real kinetics of phenol and formic acid oxidation in the presence of these catalysts at varied reaction parameters (concentrations and temperature) was studied. The copper-containing catalysts were more active to formic acid oxidation than the iron-containing catalyst over all the temperature range studied. The rate of destruction of pollutants decreases with a decrease in the H2O2 concentration and the catalyst weight. The observed rate dependences on the initial substrate concentration appeared to be different for the substrate used. With formic acid, an increase of initial concentration leads to a slight increase in the reaction rate. In the case of phenol peroxide oxidation, the negative order with respect to the substrate concentration was observed. This may be explained by strong inhibition of the reaction rates by phenol and intermediates (hydroquinone, catechol, etc.) of its oxidation. The mathematical modeling of the kinetics was performed for various types of kinetic equations that correspond to different hypotheses on the kinetic reaction scheme. The selected kinetic models based on logical kinetic schemes allowed describing the peroxide oxidation of model substrates at an appropriate accuracy.
机译:在含铜和铁的催化剂(0.5%Cu-ZSM-5-30和0.65%Fe-ZSM-5-30)存在下,对模型基质(甲酸和苯酚)的过氧化物氧化进行了研究。目的是开发用于描述过氧化物氧化动力学的最佳动力学模型。研究了这些催化剂在不同反应参数(浓度和温度)存在下苯酚和甲酸氧化的真实动力学。在研究的所有温度范围内,含铜催化剂对甲酸的氧化活性均高于含铁催化剂。污染物的破坏率随着H2O2浓度和催化剂重量的减少而降低。对于所用的底物,观察到的速率对初始底物浓度的依赖性似乎不同。对于甲酸,初始浓度的增加导致反应速率的轻微增加。在过氧化苯酚的情况下,观察到相对于底物浓度的负序。这可能是由于苯酚及其氧化中间体(对苯二酚,邻苯二酚等)强烈抑制了反应速率。对各种动力学方程进行了动力学数学建模,这些动力学方程对应于动力学反应方案的不同假设。基于逻辑动力学方案选择的动力学模型允许以合适的精度描述模型基材的过氧化物氧化。

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