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A study on the relationship between biodegradability enhancement and oxidation of 1,4-dioxane using ozone and hydrogen peroxide

机译:臭氧和过氧化氢促进生物降解能力与1,4-二恶烷氧化的关系研究

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Advanced oxidation involving O_3/H_2O_2 was used to eliminate 1,4-dioxane and to enhance the biodegradability of dioxane-contaminated water. Oxidation experiments were carried out in a bubble column reactor operating in fed-batch. The rate of dioxane removal and enhancement in biodegradability was investigated at hydrogen peroxide to ozone ratios between 0 and 0.6 mol:mol and pH between 5 and 11. A theoretical model was also applied to predict the experimental data and to investigate the effects of dioxane concentration, pH, and H_2O_2 concentration. The model predictions fit the experimental data well and there was a linear correlation between dioxane oxidation and BOD enhancement. At low dioxane concentrations, the oxidation rate was first order and it gradually approached zero order with increasing dioxane concentration. Also, the biodegradability of the solution increased with pH up to about 9 and it stayed constant with further pH increase. Hydrogen peroxide initially enhanced dioxane removal and biodegradability enhancement of the solution. However, at H_2O_2:O_3 ratios greater than about 0.4-0.45 mol:mol, i.e. about 2.90 mM for H_2O_2 concentration, H_2O_2 had negative impacts and resulted in reduced dioxane removal and biodegradability increase.
机译:涉及O_3 / H_2O_2的高级氧化用于消除1,4-二恶烷并增强被二恶烷污染的水的生物降解能力。氧化实验在分批进料的鼓泡塔反应器中进行。在过氧化氢与臭氧的比率为0至0.6 mol:mol和pH为5至11的情况下,研究了二恶烷的去除速率和生物降解性的提高。还应用了理论模型来预测实验数据并研究二恶烷浓度的影响。 ,pH和H_2O_2浓度。该模型预测很好地拟合了实验数据,二恶烷氧化与BOD增强之间存在线性关系。在低二恶烷浓度下,氧化速率为一阶,随着二恶烷浓度的增加,氧化速率逐渐接近零级。同样,溶液的生物降解性随pH值增加到大约9而增加,并且随着pH值的进一步增加保持恒定。过氧化氢最初增强了溶液中二恶烷的去除和生物降解性。但是,在H_2O_2:O_3的比率大于约0.4-0.45 mol:mol时,即H_2O_2的浓度约为2.90 mM时,H_2O_2产生了负面影响,并导致二恶烷去除减少和生物降解性提高。

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