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首页> 外文期刊>Journal of Polymers and the Environment >Photochemical Kinetic Modeling of Degradation of Aqueous Polyvinyl Alcohol in a UV/H_2O_2 Photoreactor
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Photochemical Kinetic Modeling of Degradation of Aqueous Polyvinyl Alcohol in a UV/H_2O_2 Photoreactor

机译:UV / H_2O_2光反应器中聚乙烯醇水溶液降解的光化学动力学模型

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摘要

This study presents a photochemical kinetics model to describe the degradation of water-soluble PVA (Polyvinyl Alcohol) polymer in a UV/H2O2 batch reactor. Under the effect of UV light, the photolysis of hydrogen peroxide into hydroxyl radicals can generate a series of polymer scission reactions. For a better understanding and analysis of the UV/H2O2 process in the cracking of the PVA macromolecules, a chemical reaction mechanism of the degradation process and a relevant photochemical kinetics model are developed to describe the disintegration of the polymer chains. Taking into account the probabilistic fragmentation of the polymer, the statistical moment approach is used to model the molar population balance of live and dead polymer chains. The model predicts the PVA molecular weight reduction, the acidity of the solution, and hydrogen peroxide residual. In addition to previously published data collected in this laboratory, a new set of experiments were conducted using a 500 mg/L PVA aqueous for different hydrogen peroxide/PVA ratios for model validation. Measurements of average molecular weights of the polymer, hydrogen peroxide concentrations and pH of the PVA solution were determinant factors in constructing a reliable photochemical model of the UV/H2O2 process. Experimental data showed a decrease in the PVA molecular weight and a buildup of the solution acidity. The experimental data also served to determine the kinetics rate constants of the PVA photochemical degradation and validate the model whose predictions are in good agreement with data. The model can provide a comprehensive understanding of the impact of the design and operational variables.
机译:这项研究提出了一种光化学动力学模型,用于描述在UV / H2O2间歇反应器中水溶性PVA(聚乙烯醇)聚合物的降解。在紫外线的作用下,过氧化氢光解为羟基自由基会产生一系列的聚合物断裂反应。为了更好地理解和分析PVA大分子裂解中的UV / H2O2过程,开发了降解过程的化学反应机理和相关的光化学动力学模型来描述聚合物链的分解。考虑到聚合物的概率断裂,使用统计矩方法来模拟活的和死的聚合物链的摩尔种群平衡。该模型预测PVA分子量降低,溶液的酸度和过氧化氢残留。除了在该实验室中收集的先前发布的数据外,还使用500 mg / L PVA水溶液针对不同的过氧化氢/ PVA比进行了一组新的实验,以进行模型验证。聚合物的平均分子量,过氧化氢浓度和PVA溶液的pH值的测量是构建UV / H2O2过程的可靠光化学模型的决定性因素。实验数据表明,PVA分子量降低,溶液酸度增加。实验数据还有助于确定PVA光化学降解的动力学速率常数,并验证其预测与数据高度吻合的模型。该模型可以提供对设计和操作变量的影响的全面理解。

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