以石墨-聚氯乙烯复合材料为阳极电化学降解美托洛尔:新副产物LC-TOF/MS解析与表征

F. Al-Qaim, Z. Mussa, A. Yuzir, K. Shameli
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引用次数: 3

摘要

美托洛尔(MTP)是治疗心力衰竭和高血压的药物之一。它经常在流入或流出的废水样品中检测到。研究了石墨-聚氯乙烯复合材料作为阳极在氯化钠等强电解质存在下对美托洛尔的降解。美托洛尔初始浓度、NaCl浓度和施加电压对其降解速率影响较大。在最佳条件下,初始浓度为2 mg/L, 30 min后去除率达95%以上;5000mg /L NaCl和5v。30 min后,美托洛尔的电化学反应能耗为0.665 Wh/mg,美托洛尔的动力学速率常数为0.0016 ~ 0.0801 min-1。对美托洛尔及其副产物进行了电化学降解。利用液相色谱-飞行时间/质谱法对美托洛尔的降解过程进行了研究和分析。以鉴定的中间体为基础,设计了美托洛尔的降解途径。
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Electrochemical Degradation of Metoprolol Using Graphite-PVC Composite as Anode: Elucidation and Characterization of New by-products Using LC-TOF/MS
Metoprolol (MTP) is one of pharmaceuticals used for treatment of heart failure and hypertension. It was frequently detected in wastewater samples either influent or effluent. The application of graphite-PVC composite as anode was investigated for the degradation of metoprolol in the presence of strong electrolyte such as sodium chloride (NaCl). The degradation rate was strongly influenced by initial concentrations of metoprolol, NaCl concentration and applied voltage. An initial concentration of 2 mg/L was eliminated more than 95% after 30 min under optimum conditions; 5000 mg/L NaCl and 5 V. The consumption energy of the electrochemical reaction was 0.665 Wh/mg for metoprolol after 30 min. The kinetic rate constant of metoprolol could be ranged between 0.0016 and 0.0801 min-1. The electrochemical degradation efficiency of metoprolol and its by-products has been achieved. The degradation of metoprolol produced four transformated products as investigated and elucidated using liquid chromatography-time of flight/mass spectrometry. The proposed degradation pathway of metoprolol was schemed on the base of the identified intermediates.
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