Optical-emission spectrometry method with inductively coupled plasma for determining the mass concentration of phosphorus in an oil-water emulsion
https://doi.org/10.21122/1683-6065-2021-2-49-53
Abstract
A method for determining the mass concentration of phosphorus in a water-oil emulsion used for wire drawing by inductively coupled plasma optical emission spectrometry has been developed. Phosphorus enters the emulsion after etching the wire in a solution of orthophosphoric acid, which removes oxides that have appeared in the process of forming brass. It is one of the determined indicators that additionally characterizes the state of the emulsion during operation.
This creates an insoluble phosphate film. The resulting phosphate film layer should not be too thick, as it has a negative effect on further processing (an additional factor of contamination of the emulsion on thin drawing).
The most promising method for determining harmful impurities in an emulsion, including phosphorus, is optical emission spectrometry with inductively coupled plasma. The method is based on the sputtering of the analyzed sample in an argon plasma excited by a high-frequency electromagnetic field. To determine the mass concentration of phosphorus, it is necessary to perform calibration of the inductively coupled plasma spectrometer. To check the correctness of the calibration, a control sample is used, which is prepared from the state standard sample (SSS) of the composition of an aqueous solution of phosphate ions. Next, it is necessary to prepare working samples of solutions of water-oil emulsion. Then, the mass concentration of phosphorus in the analyzed sample is measured using an inductively coupled plasma optical emission spectrometer Ultima Expert (HORIBA, France).
Accuracy indicators, extended uncertainty of measurement results for the method are calculated in accordance with STB ISO 5725-2.
About the Authors
N. A. Zmeeva,Belarus
Zhlobin City, Gomel Region, Belarus, 37, Promyshlennaya str.
O. Yu. Vinokurova
Belarus
Zhlobin City, Gomel Region, Belarus, 37, Promyshlennaya str.
References
1. Juhvec A. I. Volochil’noe proizvodstvo [Drawing production]. Mosсow, Metallurgija Publ., 1965, vol. 1, 375 p.
2. Perlin I. L., Ermanok M. Z. Teorija volochenija [Drawing theory] Moscow, Metallurgija Publ., 1971, 448 p.
3. Tompson M., Uolsh D. Prakticheskoe rukovodstvo po spektrometricheskomu analizu s induktivno-svjazannoj plazmoj [A Practical Guide to Inductively Coupled Plasma Spectrometric Analysis]. Moscow, Nedra Publ., 1988.
4. Vasil’ev V. P. Analiticheskaja himija. Fiziko-himicheskie metody analiza [Analytical chemistry. Physicochemical methods of analysis]. Moscow, Vysshaja shkola Publ., vol. 2, 1989.
5. Garmash A. V. Vvedenie v spektroskopicheskie metody analiza. Opticheskie metody analiza [Introduction to spectroscopic methods of analysis. Optical analysis methods]. Moscow, 1995.
6. Pejsahson I. V. Optika spektral’nyh priborov [Spectral instrument optics]. Leningrad, 1970.
7. Dvorkin V. I. Metrologija i obespechenie kachestva kolichestvennogo himicheskogo analiza [Metrology and quality assurance of quantitative chemical analysis]. Moscow, Himija Publ., 2001, 263 p.
Review
For citations:
Zmeeva, N.A., Vinokurova O.Yu. Optical-emission spectrometry method with inductively coupled plasma for determining the mass concentration of phosphorus in an oil-water emulsion. Litiyo i Metallurgiya (FOUNDRY PRODUCTION AND METALLURGY). 2021;(2):49-53. (In Russ.) https://doi.org/10.21122/1683-6065-2021-2-49-53