首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Phototransformation of three selected pharmaceuticals, naproxen, 17 alpha-Ethinylestradiol and tetracycline in water: Identification of photoproducts and transformation pathways
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Phototransformation of three selected pharmaceuticals, naproxen, 17 alpha-Ethinylestradiol and tetracycline in water: Identification of photoproducts and transformation pathways

机译:三种选定的药物,萘普生,17个α-乙尼雌二醇和水中四环素的光电改性:鉴定光调节和转化途径

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摘要

Transformation products (TPs) may be formed during various processes, however, it was proved that one of the main mechanisms responsible for degradation of pharmaceuticals in natural waters is photolysis. Three compounds were selected, tetracycline (TC), 17-alpha-ethinylestradiol (EE2) and naproxen (NAP), for degradation experiments which were performed using a xenon lamp emitting light with a spectrum closely approximating that of natural sunlight. Identification of photodegradation products was achieved via liquid chromatography coupled with high resolution quadrupole time-of-flight mass spectrometry (LC-QTOE-MS) providing accurate mass measurements and MS/MS experiments for structural elucidation. Results indicate that degradation of compounds under the study follows pseudo-first-order kinetics. Photolysis rate constants (k) were determined and half-lifes (t(1/2)) calculated to be 11, 120, and 13 min for TC, EE2 and NAP, respectively. Xenon lamp irradiation led to the formation of several photoproducts. Many of them have been identified for the first time. LC-QTOF-MS analysis allowed for the identification of seven, four, and eight TPs of TC, EE2 and NAP, respectively. Finally, the presence of parent compounds and identified TPs was investigated in various real-world water samples. Only three degradation products of 17-alpha-ethinylestradiol and naproxen were detected in wastewater effluent and treated water samples. Quantitative structure-activity relationship (QSAR) approach was applied in order to estimate physical-chemical properties of selected pharmaceuticals and their TPs. This allowed predicting the fate of all analytes in the aqueous environment.
机译:在各种过程中可以形成转化产物(TPS),然而,证明了负责天然水中药物降解的主要机制之一是光解。选择三种化合物,四环素(Tc),17-α-乙烯醇二醇(EE2)和萘普生(NAP),用于使用氙灯发射光的降解实验,其具有与自然阳光紧密近似的光谱。通过液相色谱法与高分辨率四极其飞行时间质谱(LC-QTOE-MS)偶联的液相色谱法实现光降解产物的鉴定,为结构阐明提供精确的质量测量和MS / MS / MS / MS / MS实验。结果表明,该研究下的化合物的降解遵循伪第一阶动力学。测定光解率常数(k),分别测定和半衰期(T(1/2)),分别计算为TC,EE2和NAP的11,120和13分钟。氙灯照射导致形成几种光propratucts。他们中的许多人是第一次确定的。 LC-QTOF-MS分析允许鉴定七,四和八个TP的TC,EE2和NAP。最后,在各种现实世界水样中研究了母体化合物和鉴定的TPS的存在。在废水流出物和处理的水样中检测到17-α-乙烯雌二醇和萘普生的三种降解产物。施用定量结构 - 活性关系(QSAR)方法以估计所选药物及其TPS的物理化学性质。这允许预测水环境中所有分析物的命运。

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