测量溶液成分替代滴定法评估玻璃的耐水解性。

Q3 Medicine
Susan L Schiefelbein, K Deenamma Vargheese, Robert A Schaut, Ela Bakowska, Misty N Riesbeck, Daniel D Kramer, William H Stull
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引用次数: 0

摘要

建议采用测量溶液成分的方法来替代滴定法确定滴定体积,滴定体积是评估药品包装用玻璃容器耐水解性的重要依据。在新方法中,不用滴定样品和空白溶液,而是通过电感耦合等离子体质谱法测量它们的成分,然后使用一组系数和一个简单的方程式将这些成分转换为滴定体积。这些系数是利用成熟的稀水溶液热力学数据和模型推导出来的,因此可以根据溶液成分计算出 pH 值,然后在滴定剂逐渐加入溶液的过程中,将滴定模拟为一系列 pH 值计算。在本文中,我们解释了如何模拟滴定,描述了如何得出一组系数,并提供了实验证据,证明新方法得出的滴定体积等同于滴定体积。由于新方法难度更大、成本更高,因此并不能取代标准方法和药典方法中的滴定法。它的价值在于可以进行以前不可能进行的耐水解性研究,提供有关水解溶液成分的额外信息,揭示玻璃腐蚀的重要方面,并提供有关滴定的见解,为改进标准滴定程序提供可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement of Solution Composition as an Alternative to Titration for Evaluating the Hydrolytic Resistance of Glass.

The measurement of solution composition is proposed as an alternative to titration to determine titration volume, which is the figure of merit for evaluating the hydrolytic resistance of glass containers for pharmaceutical packaging. In the new method, instead of titrating the sample and blank solutions, their compositions are measured by inductively coupled plasma mass spectrometry, and these compositions are converted to titration volume using a set of coefficients and a simple equation. The coefficients were derived using the well-developed thermodynamic data and models for dilute aqueous solutions, which make it possible to calculate the pH from the solution composition and then simulate a titration as a series of pH calculations as titrant is progressively added to the solution. In this article, we explain how a titration can be simulated, describe how the set of coefficients was derived, and provide experimental evidence that the titration volume from the new method is equivalent to that from titration. Since the new method is more difficult and expensive, it is not meant as a replacement for titration in the standard and pharmacopeial methods. Its value lies in enabling previously impossible hydrolytic resistance studies, supplying additional information about the composition of the hydrolytic solution that reveals important aspects of glass corrosion, and providing insights about titration that point to possible improvements in the standard titration procedures.

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来源期刊
CiteScore
1.90
自引率
0.00%
发文量
34
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