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Removal of 1,4-Dioxane and Volatile Organic Compounds from Groundwater Using Ozone-Based Advanced Oxidation Process

机译:使用基于臭氧的高级氧化工艺去除地下水中的1,4-二恶烷和挥发性有机化合物

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abstract_textpOzone and ozone/peroxide processes were evaluated for the removal of 1,4-dioxane from laboratory water and site groundwater. The effect of process parameters such as solution pH and dosage of peroxide was studied. Ozone alone was not very effective in removing 1,4-dioxane from water ( 20% removal). Enhanced oxidation of 1,4-dioxane was achieved by increasing the solution pH or by adding peroxide at neutral pH. Pseudo-first-order rate constants were calculated for the removal of 1,4-dioxane using ozone. Correlations were developed for the consumption of ozone per 1,4-dioxane removed. Acidic and neutral pH conditions resulted in higher consumption of ozone per dioxane removed. Basic solution pH and presence of hydrogen peroxide enhanced the dioxane removal, which resulted in lower consumption of ozone per dioxane removed. Following the lab study, ozonation was used for the remediation of site groundwater contaminated with 1,4-dioxane and chlorinated volatile organics. Presence of 5mg/L of hydrogen peroxide during ozonation resulted in simultaneous removal of 1,4-dioxane and volatile organics from groundwater to target levels. For the AOP process, removal kinetics was approximately 50% slower in groundwater compared to the lab DI water./p/abstract_text
机译:评估了臭氧和臭氧/过氧化物工艺从实验室水和现场地下水中去除1,4-二恶烷的情况。研究了溶液pH值和过氧化物用量等工艺参数的影响。单独使用臭氧在去除水中的1,4-二恶烷方面不是很有效(去除率为20%)。通过提高溶液pH值或在中性pH值下添加过氧化物来实现1,4-二氧六环的增强氧化。计算了使用臭氧去除1,4-二恶烷的准一级速率常数。对每去除1,4-二恶烷消耗臭氧的相关性进行了开发。酸性和中性pH值条件导致每去除二恶烷的臭氧消耗量增加。碱性溶液的pH值和过氧化氢的存在增强了二恶烷的去除,从而降低了每去除二恶烷的臭氧消耗量。在实验室研究之后,臭氧化被用于修复被1,4-二恶烷和氯化挥发性有机物污染的场地地下水。在臭氧化过程中存在5mg/L的过氧化氢导致1,4-二恶烷和挥发性有机物同时从地下水中去除到目标水平。对于AOP工艺,与实验室去离子水相比,地下水中的去除动力学大约慢了50%。

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