首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Oxidation of Acetovanillone by Photochemical Processes and Hydroxyl Radicals
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Oxidation of Acetovanillone by Photochemical Processes and Hydroxyl Radicals

机译:光化学过程和羟自由基氧化乙酰香草醛

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Acetovanillone [Ethanone, 1-(4-hydroxy-3-metoxyphenyl)] is one of the major pollutants that is present in the wastewater produced during the boiling of raw material in the cork industry. The oxidation of its aqueous solutions by monochromatic UV radiation alone and combined with hydrogen peroxide, Fenton's reagent and the photo-Fenton system has been investigated. In the single UV radiation process, the apparent rate constants and the quantum yields are determined, and in the UV/H_2O_2Combination, the additional efficiency in the oxidation process due to the presence of hydrogen peroxide is established. The influence of some operating variables, such as initial concentrations of H_2O_2 and Fe(Ⅱ), as well as the pH, is discussed in the Fenton and photo-Fenton systems, and the partial contribution of the radical pathways to the global oxidation rates are evaluated. The rate constant for the reaction of acetovanillone with hydroxyl radicals is also determined by means of a competition kinetics model, its value being 5.62 x 10~9 M~(-1)s~(-1). Finally, chemical oxidation experiments of wastewaters generated in this industry were carried out by using the same advanced oxidation processes. Specifically, the elimination of acetovanillone in these effluents was determined, and the removal of the global organic pollutant content was also evaluated.
机译:乙酰香草醛[乙酮,1-(4-羟基-3-甲氧基苯基)]是软木工业中原料沸腾过程中产生的废水中存在的主要污染物之一。已经研究了仅通过单色紫外线辐射并与过氧化氢,芬顿试剂和光芬顿体系相结合而氧化水溶液的方法。在单一的UV辐射过程中,确定了表观速率常数和量子产率,在UV / H_2O_2组合中,由于过氧化氢的存在,确定了氧化过程的附加效率。在Fenton和光Fenton系统中讨论了一些操作变量的影响,例如H_2O_2和Fe(Ⅱ)的初始浓度以及pH值,自由基途径对整体氧化速率的部分贡献是评估。还通过竞争动力学模型确定了乙酰香草醛与羟基自由基反应的速率常数,其值为5.62 x 10〜9 M〜(-1)s〜(-1)。最后,使用相同的高级氧化工艺进行了该行业产生的废水的化学氧化实验。具体而言,确定了这些废水中乙酰香草醛的消除方法,并且还评估了总有机污染物含量的去除率。

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