可行的SI可追溯溴酸盐测定化学计量反应

IF 0.8 4区 工程技术 Q4 CHEMISTRY, ANALYTICAL
Toshiaki Asakai
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引用次数: 1

摘要

根据不同的化学反应,采用不同的分析方法来评价化学纯度是减少每种方法的未知偏差贡献,建立可靠的参考物质的有效途径之一。本文介绍了银沉淀滴定法和铁氧化还原反滴定法在溴酸盐离子测定中的新应用,不同于传统的硫代硫酸盐滴定法。溴酸盐离子经常被用作氧化还原滴定的标准,以及通过仪器分析来评价水和食品质量。在这些仪器分析中需要测量的不是离子的氧化还原特性,而是化学物质的质量分数。溴酸盐离子用传统的氧化还原滴定法测定:在酸性碘化钾溶液中溴酸盐离子释放的碘(三碘化物)用标准的硫代硫酸钠溶液滴定。本文中描述的新的滴定方法可以直接评估离子的质量分数,而无需在常规反应中进行碘释放过程,并提供可靠的分析分析。这些方法也被用于碘离子的测定,这是有用的标准之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Feasible stoichiometric reactions for SI traceable bromate assays

Feasible stoichiometric reactions for SI traceable bromate assays

Evaluating chemical purities by different analytical methods based on different reactions is one of the effective approaches to decrease the contribution of unknown biases that each method has, and to establish reliable reference materials. This paper describes new applications of precipitation titration with silver(I) and redox back titration with iron(II) to the assays of bromate ions which were different from a conventional titrimetric reaction with thiosulfate ions. Bromate ions are often used as a standard for redox titration as well as for evaluating water and food quality by instrumental analyses. Required measurands in these instrumental analyses are not redox properties of the ions, but the mass fraction in chemicals. Bromate ions have been determined by a conventional redox titration: iodine (triiodide) liberated by bromate ions in an acidic potassium iodide solution has been titrated with a standardized sodium thiosulfate solution. New titrimetric approaches described in the present paper directly allow to evaluate the mass fraction of the ions without iodine liberation processes in the conventional reaction, and contribute reliable analytical assays. These approaches were also attempted to the assays of iodate ions, which is one of the useful standards.

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来源期刊
Accreditation and Quality Assurance
Accreditation and Quality Assurance 工程技术-分析化学
CiteScore
1.80
自引率
22.20%
发文量
39
审稿时长
6-12 weeks
期刊介绍: Accreditation and Quality Assurance has established itself as the leading information and discussion forum for all aspects relevant to quality, transparency and reliability of measurement results in chemical and biological sciences. The journal serves the information needs of researchers, practitioners and decision makers dealing with quality assurance and quality management, including the development and application of metrological principles and concepts such as traceability or measurement uncertainty in the following fields: environment, nutrition, consumer protection, geology, metallurgy, pharmacy, forensics, clinical chemistry and laboratory medicine, and microbiology.
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