Capillary Zone Electrophoresis of Eleven Priority Phenols with Amperometric Detection
I Chih. Chen, Chen‐Wen Whang
Abstract
I Chih. Chen, Chen‐Wen Whang
Abstract
Abstract A scheme for separation and detection of eleven priority phenols using capillary zone electrophoresis (CZE) coupled with amperometric detection is described. With a capillary of I.D. 50 μm and length 62.5 cm at 9 kV and an electrophoretic buffer of 20 mM CHES (pH 10.1), complete separation of the eleven compounds was achieved in less than 17 min. Amperometric detection was carried out using a carbon fiber microelectrode of diameter 9 μm inserted into the end of the detection capillary. Linearity over two orders of magnitude was generally obtained for the eleven priority phenols. With an electrode potential+1.10 V (vs. Ag/AgCl reference), the concentration limits of detection were in the sub‐ppm (10−6 M) level. This method was successfully applied to analysis of priority phenols in industrial waste water.
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Abstract A scheme for separation and detection of eleven priority phenols using capillary zone electrophoresis (CZE) coupled with amperometric detection is described. With a capillary of I.D. 50 μm and length 62.5 cm at 9 kV and an electrophoretic buffer of 20 mM CHES (pH 10.1), complete separation of the eleven compounds was achieved in less than 17 min. Amperometric detection was carried out using a carbon fiber microelectrode of diameter 9 μm inserted into the end of the detection capillary. Linearity over two orders of magnitude was generally obtained for the eleven priority phenols. With an electrode potential+1.10 V (vs. Ag/AgCl reference), the concentration limits of detection were in the sub‐ppm (10−6 M) level. This method was successfully applied to analysis of priority phenols in industrial waste water.
Key concepts: Chemistry, Capillary electrophoresis, Amperometry, Chromatography, Phenols, Electrophoresis, Capillary action, Organic chemistry