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Study of the degradation process of ofloxacin with free chlorine by using ESI-LCMSMS: Kinetic study, by-products formation pathways and fragmentation mechanisms

机译:ESI-LCMSMS研究氧氟沙星在游离氯中的降解过程:动力学研究,副产物形成途径和裂解机理

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This study was conducted to gain a better understanding of the fate of fluoroquinolone antibacterial ofloxacin (OFX) which is the free available chlorine (FAC) in order to determine its effect during water chlorination process. The Direct reactions of FAC with OFX were quite rapid. A half-life of 7.7 s was measured under pseudo-first order conditions in the presence of an excess of total chlorine ([FAC](0) = 13 mu M and [OFX](0) = 0.55 mu M at pH 7.2 and 20 degrees C in buffered reagent water. Free chlorine reactions rates were of first-order type in both substrate and oxidant with specific second-order rate constants of 6.8 x 10(3) M-1 s(-1). No induced back reactions or other interference by using thiosulfate to stop the chlorination reaction was shown. The seven products of the reaction were determined by using the LC/MS/MS analysis. Structures were investigated due to the explication of transitions obtained at different CID energies by LC-ESI-MS/MS. Pathways of the formations of these by-products were presented in this study and pathways of the fragmentations of pseudo molecular ions of the structures proposed were presented in supplementary files. (C) 2017 Elsevier Ltd. All rights reserved.
机译:进行这项研究是为了更好地了解氟喹诺酮抗菌氧氟沙星(OFX)的命运,后者是一种游离有效氯(FAC),以确定其在水氯化过程中的作用。 FAC与OFX的直接反应非常迅速。在过量的总氯存在下,在伪一级反应条件下测得的半衰期为7.7 s([FAC](0)= 13μM,[OFX](0)= 0.55μM,pH 7.2和在缓冲试剂水中20摄氏度,游离氯反应速率在底物和氧化剂中均为一阶类型,特定二阶速率常数为6.8 x 10(3)M-1 s(-1)。或通过使用硫代硫酸盐终止氯化反应而产生的其他干扰,通过LC / MS / MS分析确定了反应的七个产物,并通过LC-ESI分析了在不同CID能量下获得的跃迁,从而研究了结构-MS / MS。在本研究中介绍了这些副产物的形成途径,并在补充文件中介绍了所提议结构的假分子离子碎片化的途径(C)2017 Elsevier Ltd.保留所有权利。

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