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首页> 外文期刊>Environmental chemistry letters >Enhanced aminophenols monitoring using in-channel amperometric detection with dual-channel microchip capillary electrophoresis
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Enhanced aminophenols monitoring using in-channel amperometric detection with dual-channel microchip capillary electrophoresis

机译:使用通道内安培检测和双通道微芯片毛细管电泳增强的氨基酚监测

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摘要

Improved techniques are needed to monitor toxic aminophenols in industrial wastewater. Microchip capillary electrophoresis (CE)-electrochemical detection (ECD) can be used to develop miniaturized system providing on-site monitoring. Here, a dual-channel microchip CE-ECD has been applied for the monitoring of aminophenols. The effect of conductance and capacitance between a working electrode and a reference electrode has been studied to minimize the noise that was generated in the amperometric detection. A mixture of aminophenols dissolved in a running buffer has been monitored. A separation efficiency with a plate number of 4770 and a high linear concentration dependence from 100 nM to 1 mM have been achieved for p-aminophenol. As a result, the analysis system has been applied for the monitoring of the pollutants with low detection limits of p-aminophenol (14.6 nM), o-aminophenol (10.6 nM) and m-aminophenol (15.3 nM). Here, we show that a wastewater sample from a natural gas refinery can be monitored using the microchip CE-ECD system.
机译:需要改进的技术来监测工业废水中的有毒氨基酚。微芯片毛细管电泳(CE)-电化学检测(ECD)可用于开发提供现场监测的小型化系统。在这里,双通道微芯片CE-ECD已用于监测氨基酚。已经研究了工作电极和参比电极之间的电导和电容的影响,以最大程度地减小在安培检测中产生的噪声。已监测了溶解在运行缓冲液中的氨基酚混合物。对氨基苯酚已经获得了板数为4770的分离效率和100 nM至1 mM的高线性浓度依赖性。结果,该分析系统已用于监测对氨基苯酚(14.6 nM),邻氨基苯酚(10.6 nM)和间氨基苯酚(15.3 nM)的检测限较低的污染物。在这里,我们表明可以使用微芯片CE-ECD系统监控天然气精炼厂的废水样品。

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