Investigation of cylinder pre-treatments for the stability of ammonia gas reference materials

IF 0.8 4区 工程技术 Q4 CHEMISTRY, ANALYTICAL Accreditation and Quality Assurance Pub Date : 2022-07-14 DOI:10.1007/s00769-022-01510-1
Elena Amico di Meane, Richard J. C. Brown, Paul J. Brewer, Valerio Ferracci, Janneke I. T. van Wijk
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Abstract

This report describes work to evaluate the performance of different commercial and proprietary cylinder treatments in improving the stability of ammonia reference materials in high pressure cylinders. Gas mixtures of 100 µmol/mol and 10 µmol/mol ammonia in nitrogen were prepared gravimetrically at both NPL and VSL. Comparative measurements at each amount-of-substance fraction were used to assess which passivation technique minimised the loss of ammonia upon preparation. The results indicate little difference between the commercial treatments, except at lower amount-of-substance fractions (10 μmol/mol). The variation observed in performance might be explained by the different abilities of the various treatments to prevent the adsorption of ammonia molecules on the internal surfaces of the cylinder, although the role of residual water on the cylinder surface in reacting with ammonia is unclear.

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气瓶预处理对氨气标准物质稳定性的影响
本报告描述了评估不同商业和专有钢瓶处理在提高高压钢瓶中氨标准物质稳定性方面的性能的工作。分别在NPL和VSL用重量法制备了100µmol/mol和10µmol/mol氨氮混合气体。在每个物质分数的比较测量被用来评估哪种钝化技术在制备时最大限度地减少氨的损失。结果表明,除物质含量较低(10 μmol/mol)外,两种工业处理之间差异不大。观察到的性能变化可能是由于各种处理防止氨分子在钢瓶内表面吸附的能力不同,尽管钢瓶表面残留的水在与氨反应中的作用尚不清楚。
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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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