Conductometric Titration of Metformin Hydrochloride: Simulation and Experimentation

A. O. Valdivia, Carlos Montaño-Osorio, Y. M. Vargas-Rodríguez
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引用次数: 2

Abstract

In order to teach students, the importance of conductometric titrations in this work, we present a laboratory experiment to quantify the amount of metformin hydrochloride in a tablet. The quantification was carried out through the evaluation of the chloride by silver nitrate. The titration and the end point were followed by conductometric titration, as well as by potentiometric and visually by the Volhard method. In addition, the theoretical conductivities of the metformin hydrochloride solution were calculated when known volumes of titrant are added, using the limit conductivity data for each of the ions present in the literature. To simulate the conductometric titration, the calculated conductivity values were plotted based on the volume of silver nitrate added. A comparison between techniques is made in order to determine the best monitoring method, being this one conductimetry to detect the equivalence point for metformin hydrochloride with 0.99±0.03, according to relative standard deviation (% RSD). Simulated titration curves adequately describe obtained results in an experimental way. The conductometric titration is the best method for quantification since it shows less dispersion between obtained results and has the highest concordance among results. Their application is shown through the analysis and conductometric titration simulations.
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盐酸二甲双胍的电导滴定:模拟与实验
为了让学生了解电导滴定法在这项工作中的重要性,我们提出了一个定量片剂中盐酸二甲双胍含量的实验室实验。通过硝酸银对氯离子的评价进行定量。用电导滴定法、电位滴定法和目视法测定滴定和终点。此外,利用文献中存在的每个离子的极限电导率数据,在加入已知体积的滴定剂时,计算了盐酸二甲双胍溶液的理论电导率。为了模拟电导率滴定,根据硝酸银的加入量绘制了计算出的电导率值。通过对两种方法的比较,确定了最佳的监测方法,该方法检测盐酸二甲双胍的等当点的相对标准偏差(% RSD)为0.99±0.03。模拟滴定曲线以实验的方式充分描述了得到的结果。电导滴定法是最好的定量方法,因为它所得到的结果之间的分散较小,结果之间的一致性最高。通过分析和电导滴定模拟表明了它们的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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