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A Batch-Wise Flow Analyzer For The Determination Of Chloride In Potable Waters Using Differential Electrolytic Potentiometry

机译:差示电解电位计的间歇式流量分析仪,用于测定饮用水中的氯化物

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A batch-wise flow system for the determination of chloride in drinking water is described. For the first time, a sequential injection analysis performed using a programmable syringe pump is used to replace the sequential injection instrument. Direct current differential electrolytic potentiometry was applied as a detector. The heights of the resulting differential curves were found to be affected by different experimental conditions such as the current density, the flow rate and the concentrations of the solutions used. These conditions were carefully optimized by applying the univariate method. A current density of 1.18μ Acm~(-2), a flow rate of 600 ml min~(-1) and a concentration range of 2.83-14.03 μg ml~(-1) were found to be the optimum conditions. A combination of Ag-AgCl electrodes using the direct current polarization was found to give excellent results. The limit of detection of chloride was found to be 0.93 μg ml~(-1).
机译:描述了一种用于确定饮用水中氯化物的分批流动系统。第一次,使用可编程注射泵执行的顺序注射分析被用来代替顺序注射仪器。直流差动电解电位计用作检测器。发现所产生的微分曲线的高度受到不同实验条件的影响,例如电流密度,流速和所用溶液的浓度。通过应用单变量方法仔细优化了这些条件。发现电流密度为1.18μAcm〜(-2),流速为600 ml min〜(-1),浓度范围为2.83-14.03μgml〜(-1)为最佳条件。发现使用直流极化的Ag-AgCl电极的组合可提供出色的结果。氯化物的检出限为0.93μgml〜(-1)。

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