Degradation of Acetaminophen and Its Transformation Products in Aqueous Solutions by Using an Electrochemical Oxidation Cell with Stainless Steel Electrodes

被引:31
作者
Lopez Zavala, Miguel Angel [1 ]
Espinoza Estrada, Eunice [1 ]
机构
[1] Tecnol Monterrey, Water Ctr Latin Amer & Caribbean, Ave Eugenio Garza Sada Sur 2501, Monterrey 64849, Nuevo Leon, Mexico
来源
WATER | 2016年 / 8卷 / 09期
关键词
acetaminophen; anodic oxidation; DC densities; electrochemical oxidation with active chlorine; transformation products; BORON-DOPED DIAMOND; WASTE-WATER TREATMENT; PHOTOCATALYTIC DEGRADATION; UVA LIGHT; PARACETAMOL; PHARMACEUTICALS; PHOTODEGRADATION; MINERALIZATION; MECHANISMS; OZONATION;
D O I
10.3390/w8090383
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In this study, a novel electrochemical oxidation cell using stainless steel electrodes was found to be effective in oxidizing acetaminophen and its transformation products in short reaction times. Aqueous solutions of 10 mg/L-acetaminophen were prepared at pH 3, 5, 7, and 9. These solutions were electrochemically treated at direct current (DC) densities of 5.7 mA/cm(2), 7.6 mA/cm(2), and 9.5 mA/cm(2). The pharmaceutical and its intermediates/oxidation products were determined by using high pressure liquid chromatography (HPLC). The results showed that electrochemical oxidation processes occurred in the cell. Acetaminophen degradation rate constants increased proportionally with the increase of current intensity. High current densities accelerated the degradation of acetaminophen; however, this effect diminished remarkably at pH values greater than 5. At pH 3 and 9.5 mA/cm(2), the fastest degradation of acetaminophen and its intermediates/oxidation products was achieved. To minimize the wear down of the electrodes, a current density ramp is recommended, first applying 9.5 mA/cm(2) during 2.5 min or 7.6 mA/cm(2) during 7.5 min and then continuing the electrochemical oxidation process at 5.7 mA/cm(2). This strategy will hasten the acetaminophen oxidation, extend the electrode's life, and shorten the reaction time needed to degrade the pharmaceutical and its intermediates/oxidation products. DC densities up to 9.5 mA/cm(2) can be supplied by photovoltaic cells.
引用
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页数:12
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