Methods for the SI-traceable value assignment of the purity of organic compounds (IUPAC Technical Report)

Author:

Westwood Steven1ORCID,Lippa Katrice2,Shimuzu Yoshitaka3,Lalerle Beatrice4,Saito Takeshi3,Duewer David2,Dai Xinhua5,Davies Stephen6,Ricci Marina7,Baldan Annarita8,Lang Brian2,Sarge Stefan9,Wang Haifeng5,Pratt Ken2,Josephs Ralf1,Mariassy Mikael10,Pfeifer Dietmar11,Warren John12,Bremser Wolfram11,Ellison Stephen13,Toman Blaza2,Nelson Michael2,Huang Ting5,Fajgelj Ales14,Gören Ahmet15,Mackay Lindsey6,Wielgosz Robert1

Affiliation:

1. Bureau International des Poids et Mesures (BIPM) , Sèvres , France

2. National Institute of Standards and Technology (NIST) , Gaithersburg , MD , USA

3. National Metrology Institute of Japan (NMIJ) , Tsukuba , Japan

4. Laboratoire Nationale de Métrologie et d’Essais (LNE) , Paris , France

5. National Institute of Metrology (China) (NIM) , Beijing , China

6. National Measurement Institute Australia (NMIA) , North Ryde , NSW , Australia

7. European Commission, Joint Research Centre (JRC) , Geel , Belgium

8. Nederlands Metrologisch Instituut (VSL) , Delft , The Netherlands

9. Physikalisch-Technische Bundesanstalt (PTB) , Braunschweig , Germany

10. Slovak Institute of Metrology (SMU) , Bratislava , Slovakia

11. Bundesanstalt für Materialforschung und -Prüfung (BAM) , Berlin , Germany

12. Jazz Pharmaceuticals , Sittingbourne , UK

13. LGC Limited , Kingston , UK

14. International Atomic Energy Agency , Vienna , Austria

15. Kimya Bölümü, Gebze Teknik Üniversitesi , Gebze , Turkey

Abstract

AbstractThe “purity” of an organic compound typically refers, in practice, to an assignment of the mass fraction content of the primary organic component present in the material. The “purity” value of an organic primary calibrator material is the ultimate source of metrological traceability of any quantitative measurement of the content of that compound in a given matrix. The primary calibrator may consist of a Certified Reference Material (CRM) whose purity has been assigned by the CRM producer or a laboratory may choose to value-assign a material to the extent necessary for their intended application by using appropriately valid methods. This report provides an overview of the approach, performance and applicability of the principal methods used to determine organic purity including mass balance, quantitative NMR, thermal methods and direct-assay techniques. A statistical section reviews best practice for combination of data, value assignment as the upper limit values corresponding to 100 % purity are approached and how to report and propagate the standard uncertainty associated with the assigned values.

Funder

International Union of Pure and Applied Chemistry

Publisher

Walter de Gruyter GmbH

Subject

General Chemical Engineering,General Chemistry

Reference237 articles.

1. L. A. K. Stavely (Ed.). Characterization of Chemical Purity – Organic compounds, International Union of Pure and Applied Chemistry, Physical Chemistry Division, Butterworth & Co. Ltd, London, UK (1971).

2. W. Richter, G. Dube. Metrologia 34, 13 (1997), https://doi.org/10.1088/0026-1394/34/1/3.

3. D. Duewer, R. Parris, E. White, W. May, H. Elbaum. Natl. Inst. Stand. Technol. Spec. Publ. 1012, (September 2004).

4. Home Page: CCQM Organic Analysis Working Group https://www.bipm.org/en/committees/cc/ccqm/wg/ccqm-oawg [active 7/6/2021].

5. Home Page: International Committee for Weights and Measures (CIPM) https://www.bipm.org/en/committees/ci/cipm [active 7/6/2021].

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