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首页> 外文期刊>Analytica chimica acta >DETERMINATION OF TOTAL PHENOLS IN WATERS AND WASTEWATERS USING FLOW INJECTION WITH ELECTROCHEMICAL DETECTION - AN ALTERNATIVE TO THE STANDARD COLORIMETRIC PROCEDURE
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DETERMINATION OF TOTAL PHENOLS IN WATERS AND WASTEWATERS USING FLOW INJECTION WITH ELECTROCHEMICAL DETECTION - AN ALTERNATIVE TO THE STANDARD COLORIMETRIC PROCEDURE

机译:流动注射电化学检测法测定废水和废水中的总酚-一种标准的比色法替代方法。

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A new flow injection (FI) method using a dual electrochemical detector is described for the analysis of total phenols in water and wastewater samples. The method relies upon in-line oxidative electrochemical removal or elimination of interferences at an upstream large surface area (coulometric) electrode combined with oxidative detection of all phenols at an amperometric electrode. Using the ESA dual electrode high sensitivity cell and a phosphate buffer carrier stream (pH 6.8), the ideal potentials were found to be +0.35 V for the coulometric electrode and +0.78 V for the sensing amperometric electrode. The method is fast, with sampling frequencies around 60 h(-1) and precision is typically 0.1-4%. Several synthetic aqueous samples were analysed by the FI and colorimetric methods and compared with results obtained using reversed-phase liquid chromatography (LC). More reliable data were obtained for samples containing para-substituted phenols and nitrophenols with plots of FI vs. LC data resulting in correlation coefficients of r(2) = 0.71 and r(2) = 0.79, respectively, whereas the standard colorimetric method vs. LC data gave correlation coefficients of r(2) = 0.29 and r(2) = 0.04, respectively. The method was applied to the analysis of five industrial wastewaters. [References: 18]
机译:描述了一种使用双电化学检测器的新型流动注射(FI)方法,用于分析水和废水样品中的总酚。该方法依赖于在线氧化电化学去除或消除上游大表面积(电量法)电极上的干扰,并结合对安培电极上所有酚的氧化检测。使用ESA双电极高灵敏度电池和磷酸盐缓冲载流(pH 6.8),库仑电极的理想电势为+0.35 V,感测电流电极的理想电势为+0.78V。该方法快速,采样频率约为60 h(-1),精度通常为0.1-4%。通过FI和比色法分析了几种合成水性样品,并与使用反相液相色谱(LC)获得的结果进行了比较。对于含有对位取代苯酚和硝基苯酚的样品,通过FI与LC数据作图可获得更可靠的数据,分别得出相关系数r(2)= 0.71和r(2)= 0.79,而标准比色法vs. LC数据给出的相关系数分别为r(2)= 0.29和r(2)= 0.04。该方法用于五种工业废水的分析。 [参考:18]

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