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Sono-Fenton oxidation of formic acid/formate ions in an aqueous solution: From an experimental design to the mechanistic modeling

机译:水溶液中甲酸/甲酸酯的声-芬顿氧化:从实验设计到机械建模

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In order to establish an efficient oxidation process for the mineralization of a model wastewater containing formate species, the effects of some operating parameters such as Fenton reagent dosages and volume of the treated system were observed during the treatment by the ultrasonic assisted Fenton and modified Fenton processes. The mineralization kinetics was also examined based on the experimental data. The overall mineralization kinetics was found to be in the accordance with the first-order reaction kinetics.The results obtained within this work indicate an efficient mineralization, achieved by studied sonochemical oxidation processes. With the appropriate combination of operating parameters it is reasonable to expect a mineralization extent of 94%, corresponding to the complete degradation of formate species with the consequent formation and the degradation of oxalic acid in the system.The detailed mathematical model describing the ongoing process in the studies batch system was developed on the basis of a mechanistic reaction scheme, given in the frame of this work. The model has been validated, pointing at the significance of the assumed reactions and the accuracy of the corresponding rate constants.
机译:为了建立一个有效的氧化过程,以使含有甲酸盐类物质的模型废水矿化,在超声辅助Fenton和改进的Fenton工艺处理过程中,观察了一些操作参数的影响,例如Fenton试剂的用量和处理系统的体积。 。还基于实验数据检查了矿化动力学。发现整体矿化动力学与一级反应动力学一致。在这项工作中获得的结果表明,通过研究声化学氧化过程可以实现有效的矿化。通过适当组合操作参数,可以合理预期矿化程度为94%,这与甲酸类物质的完全降解以及随后在系统中草酸的形成和降解有关。在此工作框架内给出的机械反应方案的基础上开发了研究批处理系统。该模型已经过验证,指出了假定反应的重要性以及相应速率常数的准确性。

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