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OXIDATIVE TREATMENT OF PHARMACEUTLCALS IN WATER

机译:水中药物的氧化处理

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Environmentally relevant pharmaceuticals were chosen according to human consumption and occurrence in the aquatic environment like sewage plant effluents, rivers and groundwater to investigate their behavior during oxidative water treatment. Derived from data compilation in literature the lipid lowering agent clofibric acid and the analgesic agents ibuprofen and diclofenac were selected. Analyses of the acidic compounds were carried out after solid-phase extraction and online derivatization in the GC injector by means of single ion monitoring (SIM) GC MS. Oxidation experiments with the aim to degrade the pharmaceuticals were carried out in bench scale using ozone and ozone hydrogen peroxide (advanced oxidation process). Under the specific reaction conditions only diclofenac was degraded by ozone to about 3 of its initial concentration. The combined application of ozone and hydrogen peroxide leading to OH-radical formation improved the degradation efficiency of all investigated compounds. The application of increased oxidant concentration resulted in a better degradation of all compounds to more than 90 at a concentration of 3.7 mg l~(-1) ozone and 1.4 mg l~(-1) hydrogen peroxide and to more than 98 at a concentration of 5.0 mg l~(-1) ozone and 1.8 mg l~(-1) hydrogen peroxide. At the applied conditions no reaction products could be detected by GC/MS analyses after derivatization of acidic functional groups.
机译:根据人类的消费和在水生环境中(例如污水处理厂的废水,河流和地下水)的发生情况选择与环境相关的药物,以研究其在氧化水处理过程中的行为。从文献中的数据汇编中得出,选择了降脂药氯纤维酸和止痛药布洛芬和双氯芬酸。固相萃取并通过单离子监测(SIM)GC MS在GC进样器中进行在线衍生化后,对酸性化合物进行了分析。目的是使用臭氧和臭氧过氧化氢(先进的氧化工艺)在实验室规模下进行旨在降解药物的氧化实验。在特定的反应条件下,只有双氯芬酸被臭氧降解至其初始浓度的约3。臭氧和过氧化氢的组合使用导致OH自由基的形成提高了所有研究化合物的降解效率。增加氧化剂浓度的应用导致所有化合物在3.7 mg l〜(-1)臭氧和1.4 mg l〜(-1)过氧化氢的浓度下更好地降解为90种以上,在更高浓度下降解为98种以上加入5.0毫克l〜(-1)臭氧和1.8毫克l〜(-1)过氧化氢。在应用条件下,酸性官能团衍生化后,无法通过GC / MS分析检测到反应产物。

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