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采用阀上实验室(LAV)方法进行顺序注射电位滴定法测定氯化物。

Sequential injection with lab-at-valve (LAV) approach for potentiometric determination of chloride.

作者信息

Jakmunee Jaroon, Patimapornlert Lop, Suteerapataranon Siripat, Lenghor Narong, Grudpan Kate

机构信息

Department of Chemistry, Faculty of Science, Chiang Mai University, Chiang Mai 50200, Thailand; Institute for Science and Technology Research and Development, Chiang Mai University, Chiang Mai 50200, Thailand.

出版信息

Talanta. 2005 Feb 15;65(3):789-93. doi: 10.1016/j.talanta.2004.08.007.

Abstract

Sequential injection with "Lab-at-Valve (LAV)" approach is demonstrated for potentiometric determination of chloride. The LAV flow-through electrode system consists of two Ag/AgCl electrodes: one as a reference electrode, silver chloride activated surface-silver wire soaked in a constant-concentration chloride ion solution in a small tube covered with a polymer-membrane, another as a working electrode (a similar silver chloride activated surface-silver wire) placed in a flow channel. The electrode system is attached at one port of a 10 port multiposition valve. A modified autoburette was used as a propelling device. Using SI operation via a program written in-house, based on LabVIEW((R)), a standard/sample is inserted, via the selection valve, in potassium nitrate as an electrolyte and water is used as a carrier. The zones are transported from the holding coil to the flow cell to monitor the difference in potential due to concentration cell behavior. The potential difference is then recorded as a peak. Peak height is proportional to logarithm of chloride concentration. The SI-LAV for chloride determination is very simple, fast, precise, accurate, automatic and economical. Applications to mineral drinking water and surface water have been made. The results agree with those of IC and titrimetric methods.

摘要

采用“阀上实验室(LAV)”方法进行顺序注射,用于电位法测定氯化物。LAV流通式电极系统由两个Ag/AgCl电极组成:一个作为参比电极,即氯化银活化表面的银线浸泡在覆盖有聚合物膜的小管中的恒定浓度氯离子溶液中,另一个作为工作电极(类似的氯化银活化表面的银线)置于流动通道中。该电极系统连接在一个10端口多位阀的一个端口上。使用改进的自动滴定管作为推进装置。通过基于LabVIEW(R)编写的内部程序进行顺序注射操作,将标准品/样品通过选择阀插入硝酸钾作为电解质中,并用水作为载流子。这些区域从保持线圈传输到流通池,以监测由于浓差电池行为引起的电位差。然后将电位差记录为一个峰。峰高与氯化物浓度的对数成正比。用于测定氯化物的顺序注射-阀上实验室方法非常简单、快速、精确、准确、自动且经济。已应用于矿泉饮用水和地表水的检测。结果与离子色谱法和滴定法的结果一致。

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