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一种燃料热沉标准物质候选物的纯度定值及不确定度分析
引用本文:王志轩,徐强,杜咏梅,李春迎,孙道安,李娇毅,张皋,吕剑. 一种燃料热沉标准物质候选物的纯度定值及不确定度分析[J]. 计量学报, 2021, 42(6): 815-821. DOI: 10.3969/j.issn.1000-1158.2021.06.20
作者姓名:王志轩  徐强  杜咏梅  李春迎  孙道安  李娇毅  张皋  吕剑
作者单位:西安近代化学研究所氟氮化工资源高效开发与利用国家重点实验室,陕西西安710065
基金项目:国家自然科学基金(21905222)
摘    要:一种多环烃化合物作为超声速飞行器用燃料热沉标准物质候选物,对于燃料的热沉准确计量具有十分重要的意义.通过采用质量平衡和核磁定量两种不同测量原理的方法,对这种热沉标准物质候选物的纯度进行了定值,并进行了不确定度分析和评定.在此过程中,采用气相色谱法(GC-FID)对候选物的分装样品进行了均匀性检验和稳定性考察.研究结果表...

关 键 词:计量学  热沉  多环芳香烃  标准物质候选物  质量平衡  核磁定量  不确定度
收稿时间:2020-04-13

The Purity Value and Uncertainty Analysis of a Fuel Heat Sink Reference Material Candidate
WANG Zhi-xuan,XU Qiang,DU Yong-mei,LI Chun-ying,SUN Dao-an,LI Jiao-yi,ZHANG Gao,Lü Jian. The Purity Value and Uncertainty Analysis of a Fuel Heat Sink Reference Material Candidate[J]. Acta Metrologica Sinica, 2021, 42(6): 815-821. DOI: 10.3969/j.issn.1000-1158.2021.06.20
Authors:WANG Zhi-xuan  XU Qiang  DU Yong-mei  LI Chun-ying  SUN Dao-an  LI Jiao-yi  ZHANG Gao  Lü Jian
Affiliation:State Key Laboratory of Fluorine & Nitrogen Chemical, Xi'an Modern Chemistry Research Institute, Xi'an, Shaanxi 710065, China
Abstract:A kind of polycyclic hydrocarbon compound can be used as a candidate of fuel heat sink reference material for hypersonic aircrafts, which is of great significance on heat sink measurement. Two different methods, mass balance and quantitative nuclear magnetic resonance approaches were adopted to characterize the purity of the candidate. Moreover, main uncertainty contributions were analyzed, and then the uncertainty of the purity of the candidate was evaluated. In the process of purity valuation, GC-FID was used to test the homogeneity and stability of the subpackage samples. The results showed that the candidate has a good homogeneity, and can store for at least one year under normal storage conditions (20 ℃, 101.325 kPa). The purity of the candidate is 99.42% with the expanded uncertainty of 0.84% (k=2).
Keywords:metrology  heat sink  polycyclic hydrocarbon  reference material candidate  mass balance  quantitative nuclear magnetic  uncertainty  
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