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Ozonation of ketoprofen with nitrate in aquatic environments: kinetics, pathways, and toxicity

机译:在水生环境中将酮洛芬与硝酸盐一起臭氧化:动力学,途径和毒性

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In this study, nitrate ion (NO _(3) ~(?) ) was found to collaborate with ozone thereby accelerating the degradation of ketoprofen. NO _(3) ~(?) was discovered to induce the generation of hydroxyl radicals (·OH), which was crucial to the decomposition of PPCPs in wastewater treatment plants. Kinetic studies on the decomposition of ketoprofen were investigated under different concentrations of NO _(3) ~(?) . The impact mechanisms and degradation by-products were experimentally determined. The results revealed that all reactions fitted the pseudo-first-order kinetic model well. The presence of NO _(3) ~(?) had the capacity to accelerate the ozonation of ketoprofen. The reaction by-products were evaluated by UPLC-Q-TOF-MS, and a total of five intermediates generated via the ozonation of ketoprofen were assessed. The transformation pathways were concluded to be hydroxylation, nitration, and debenzophenone and ketonized reactions. Additionally, the toxicity of the by-products was evaluated by employing Chlorella and Daphnia magna .
机译:在这项研究中,发现硝酸根离子(NO_(3)〜(?))与臭氧协同作用,从而加速了酮洛芬的降解。发现NO _(3)〜(?)会诱导羟基自由基(·OH)的生成,这对于废水处理厂中PPCP的分解至关重要。在不同浓度的NO _(3)〜(?)下研究了酮洛芬分解的动力学。实验确定了影响机理和降解副产物。结果表明,所有反应均符合拟一级动力学模型。 NO _(3)〜(?)的存在具有加速酮洛芬臭氧化的能力。通过UPLC-Q-TOF-MS评估反应副产物,并评估通过酮洛芬的臭氧化产生的总共五个中间体。转化途径被认为是羟基化,硝化,去二苯甲酮和酮化反应。另外,通过使用小球藻和水蚤(Daphnia magna)评价了副产物的毒性。

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