Development of metrological support for quantitative NMR analyzers
https://doi.org/10.20915/2077-1177-2018-14-1-2-39-48
Abstract
The first part of the article presents the history of creating quantitative NMR analyzers of oil content and humidity of oil crop seeds and their by-products. The developed NMR analyzers differ from similar devices in the availability of metrological support (reference materials (RMs) of approved type) and an extended range of moisture measurement (5–20)%. The main metrological characteristics of the developed NMR analyzer are given. The second part of the article deals with problems solved in the process of carrying out the scientific research work on the development of metrological support for quantitative NMR analyzers. Based on the tasks set, the most optimal substances imitating oil and water components contained in the oil crops and their by-products were selected. The imitation substances in question provide long-term stability of the developed RMs, erewhile being chemically inert to each other, environmentally safe? and allowing an imitation of oil and water in oil crops and their by-products. Organosilicon fluids with (35–40) ms and (95–130) spin-spin relaxation times of protons ms are proposed as an oil imitator. To imitate water, a one-component self-vulcanizing organosilicon compound, which is applied to paper strips with a thin coat, is used in the developed type-approved RMs. In conclusion, the article presents perspective directions of developing RMs of mass fraction imitators of typical fatty acids in the oil of oil crops (sunflower, linseed, and rapeseed).
About the Authors
S. M. PrudnikovRussian Federation
Sergey M. Prudnikov – D. Sc. (Eng.), Professor, Head of the Department of Physical Methods of Research
17 Filatova St., Krasnodar, 350038
B. Ya. Vityuk
Russian Federation
Boris Ya. Vityuk – Ph.D (Eng.), Lead Engineer at the Department of Physical Methods of Research
17 Filatova St., Krasnodar, 350038
O. S. Agafonov
Russian Federation
Oleg S. Agafonov – Ph.D (Eng.), Senior Researcher at the Department of Physical Methods of Research
17 Filatova St., Krasnodar, 350038
References
1. GOST 22391–2015 Sunflower. Technical conditions. Moscow, Standartinform Publ., 2015. 7 pp. (In Russ.).
2. GOST 10856–96 Seeds of oilseeds. Method for determination of humidity. Moscow, Standartinform Publ., 2010. 6 p. (In Russ.)
3. GOST 10857–64 Seeds of oilseeds. Method for determination of oil content. Moscow: Standartinform Publ., 2010. 6 p. (In Russ.)
4. Yazov AN, Chernyshev VM, Avakumov AK, Polyakov VF (1983) A method for quantifying the fat content of food products. Certificate of authorship USSR, 1043537, 23 Sept 1983 (In Russ.)
5. Sventitskii EN, Chizhik VI (1965) Application of the method of nuclear magnetic resonance for quantitative analysis. In: Collected volume. Leningrad State University named after A. A. Zhdanov. Leningrad, 1965. 215 p. (In Russ.)
6. Prudnikov SM, Dzhioev TE, Panyushkin VT (1998) Expressmethod for determining the quality of oilseeds based on the regularities of nuclear magnetic relaxation characteristics. In: IV traditional scientific and technical conference, the CIS countries «Processes and equipment of ecological production». Volgograd, 1998, p. 34. (In Russ.).
7. Prudnikov SM, Vityuk BYa, Zverev AV et al. Instrumental control of the quality of oil seeds and their processing products. Oils and fats. 2010;5–6:5–6. (In Russ.)
8. Farrar T, Becker E. Pulse and Fourier spectroscopy of NMR. Moscow: Mir; 1973. 253 p. (In Russ.).
9. Mineev VG. Workshop on agrochemistry. (2001) Teaching aid. Publishing House of Moscow State University, Moscow. (In Russ.)
10. Popov PS, Aspiotis EKh. (1973) Determination of seed oil content by nuclear magnetic resonance method. In: Collection. Methods of biological research in the selection of oil crops, Krasnodar, p. 120 (In Russ.)
11. Aspiotis HE (1978) Performing bulk analyzes for oil and moisture by nuclear magnetic resonance. In: Collection of materials of the VII International Conference on Sunflower, Published in Kolos, Krasnodar, 1978. (in Russ.)
12. Aspiotis EKh, Vityuk BYa, Prudnikov SM et al. (1983) A method for the simultaneous determination of oil and water of oilseed seeds. Certificate of authorship USSR, 1192492, 1983. (In Russ.).
13. Aspiotis EKh, Vityuk BYa, Malakhov EI et al.(1985) Nuclear-magnetic quantitative express analyzer. Certificate of authorship USSR, 1160289, 1985. (In Russ.)
14. Vityuk BYa, Aspiotis EKh. Standard samples for planning and verification of NMR analyzers of oil content and moisture of oilseeds. In: Abstracts of the First All-Union Conference, Spectroscopy of coordination compounds, Krasnodar, 1980. (In Russ.)
15. Federal scientific center «all-Russian research Institute of oilseeds named after V. S. Pustovoit» (2016) NMR analyzer AMV-1006M. Operating manual MR 2.00495.964 RE. Krasnodar. (In Russ.)
16. Vityuk BYa. (1986) Influence of physicochemical properties of oil seeds on the parameters of nuclear magnetic relaxation and increasing the accuracy of their determination by the quality of the nuclear magnetic resonance method. Dissertation, Federal scientific center «all-Russian research Institute of oilseeds named after V. S. Pustovoit».(in Russ.)
17. Dolgov ON, Voronkov MG, Grinblat MP. (1975) Siliconorganic liquid rubbers and materials based on them. Leningrad. (in Russ.).
18. Reihofeld L (1980) Chemistry and technology of organosilicon elastomers. Chemistry, Leningrad. p 234 (In Russ.)
19. Bazhant V, Khvalovsky V, Ratouski I (1960) Silicones. Silicone compounds, their preparation, properties and application. Moscow, p 710. (In Russ.)
20. Agafonov OS, Prudnikov SM, Zverev LP, Sklyarov SV. Nuclear magnetic relaxation characteristics of protons flax oil seeds with different fatty acid composition. Oil crops. Scientific and technical Bulletin of VNIIMK. 2017;1(169):43–48. (In Russ.)
21. Prudnikov SM, Agafonov OS, Zverev LV, Viktorova EP, Shakhray TA. The influence of the mass fraction of oleic acid on the NMR characteristics of the protons contained in sunflower seeds and sunflower oils. Technology and Commodity Research of Innovative Food Products. 2017; 5(46): 3–8. (in Russ.).
22. Federal law «On ensuring the uniformity of measurements» No FZ-102 of 26/06/2008. Available at: www. http://fundmetrology.ru/depository/01_npa/102-fz_2015.pdf. (In Russ.)
Review
For citations:
Prudnikov S.M., Vityuk B.Ya., Agafonov O.S. Development of metrological support for quantitative NMR analyzers. Measurement Standards. Reference Materials. 2018;14(1-2):39-48. (In Russ.) https://doi.org/10.20915/2077-1177-2018-14-1-2-39-48

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