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Degradation of benzophenone-3 by the ozonation in aqueous solution: kinetics, intermediates and toxicity

机译:水溶液中臭氧氧化降解二苯甲酮-3:动力学,中间体和毒性

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Benzophenone-3 (BP-3) is a popular ultraviolet absorbing chemical and has an adverse impact on aquatic ecosystems and human health. We determined the reaction kinetic constants of BP-3 and its de-proton pattern reacting with the molecular ozone or hydroxyl radical (center dot OH) for the first time. The obtained constant of the molecular ozone reacting with BP-3 or BP-3(-) was 1.03(+/- 0.21) x 10(2) or 1.85(+/- 0.098) x 10(5) M-1 s(-1), respectively. And, the constant for BP-3 reacting with center dot OH was 9.74(+/- 0.21) x 10(9) or 10.13(+/- 0.25) x 10(9) M-1 s(-1) as using 4-chlorobenzoic acid and benzotriazole as reference compounds, respectively. The intermediates generated in the molecular ozone (12 kinds) or center dot OH oxidation (18 kinds) were identified by LC-MS/MS. The removal efficiency of BP-3 in ozonation was dependent on the initial concentration of ozone, BP-3, and matrix water quality. The detoxification of BP-3 ozonation was depended on initial ozone dose using Chlorella vulgaris as the probe. Higher ozone dose increased the toxicity of the solution for more BP-3 being degraded and more intermediates formed, suggesting that the sole ozonation is not an effect approach for the degradation of BP-3 and some other energy should be combined.
机译:苯甲酮3(BP-3)是一种流行的紫外线吸收化学品,对水生生态系统和人类健康有不利影响。我们首次确定了BP-3的反应动力学常数及其与质子臭氧或羟基自由基(中心点OH)反应的去质子模式。与BP-3或BP-3(-)反应的分子臭氧的常数为1.03(+/- 0.21)x 10(2)或1.85(+/- 0.098)x 10(5)M-1 s( -1)。并且,BP-3与中心点OH反应的常数为9.74(+/- 0.21)x 10(9)或10.13(+/- 0.25)x 10(9)M-1 s(-1),使用4 -氯苯甲酸和苯并三唑分别作为参考化合物。通过LC-MS / MS鉴定了分子臭氧(12种)或中心点OH氧化(18种)中生成的中间体。臭氧化中BP-3的去除效率取决于臭氧的初始浓度,BP-3和基质水质。 BP-3臭氧化的解毒取决于以小球藻为探针的初始臭氧剂量。较高的臭氧剂量会增加溶液的毒性,导致更多的BP-3降解并形成更多的中间体,这表明单独的臭氧化不是BP-3降解的有效方法,应结合其他一些能量。

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