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Kinetics of p-hydroxybenzoic acid photodecomposition and ozonation in a batch reactor

机译:间歇反应器中对羟基苯甲酸光分解和臭氧化的动力学

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The decomposition of p-hydroxybenzoic acid, an important pollutant present in the wastewaters of the olive oil industry, has been carried out by a direct photolysis provided by a polychromatic UV radiation source, and by ozone. In both processes, the conversions obtained as a function of the operating variables (temperature, pH and ozone partial pressure in the ozonation process) are reported. In order to evaluate the radiation flow rate absorbed by the solutions in the photochemical process, the Line Source Spherical Emission Model is used. The application of this model to the experimental results provides the determination of the reaction quantum yields which values ranged between 8.62 and 81.43 l/einstein. In the ozonation process, the film theory allows to establish that the absorption process takes place in the fast and pseudo-first-order regime and the reaction is overall second-order, first-order with respect to both reactants, ozone and p-hydroxybenzoic acid. The rate constants are evaluated and vary between 0.18 X 10~5 and 29.9 X 10~5 l/mol s depending on the temperature and pH.
机译:对羟基苯甲酸(一种存在于橄榄油工业废水中的重要污染物)的分解已通过多色UV辐射源和臭氧的直接光解作用进行。在这两个过程中,均记录了根据操作变量(臭氧化过程中的温度,pH和臭氧分压)而获得的转化率。为了评估光化学过程中溶液吸收的辐射流速,使用了线源球形发射模型。该模型在实验结果中的应用提供了反应量子产率的确定,其值在8.62和81.43 l /爱因斯坦之间。在臭氧化过程中,膜理论可以确定吸收过程是在快速和拟一级反应条件下发生的,并且相对于反应物,臭氧和对羟基苯甲酸而言,反应总体上是二级反应酸。评估速率常数,并根据温度和pH在0.18 X 10〜5和29.9 X 10〜5 l / mol s之间变化。

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