THE AIR SEPARATION PRODUCTS: ARE THERE ANY RESERVES IMPROVE THEIR PRODUCTION AND USE?

Authors

DOI:

https://doi.org/10.18198/j.ind.gases.2014.0751

Keywords:

Cryogenic Engineering, Air separation, Oxygen, Nitrogen, Argon, Rare gases, Compressors, Thermal insulation, Tanks for liquid cryogenic products, Cryogenic transportation, Armature, Efficiency, Safety

Abstract

The fifteenth international seminar on a topical problem of increasing the efficiency and safety of air separation products production (30th September-3th October 2014, Minsk, Belarus) has gathered over 45 experts from 40 enterprises and companies of 10 countries. Manufacturers of the equipment and those who use it for separating oxygen, nitrogen and argon from air, which are required for modern manufactures and technologies, took part in the seminar. The companies engaged in the gas business also showed interest to the seminar. The organizer of the seminar was UA-SIGMA, the Ukrainian Association of Manufactures of Industrial Gases. At the seminar 20 reports have been presented and discussed. In the reports the state and prospects of developing research, engineering and design work on the problem topics of the seminar have been described. Active and interested perception of the information, the contacts with the experts enabled the seminar participants to improve their qualification, to get recommendations necessary for the further improvement of the equipment that is created and used. The content of the reports is considered. The conclusion was drawn that it was important to hold such a seminar in connection with a growing demand for air separation products as well as higher requirements to the level of efficiency and safety of air separation plants.

Author Biography

Г. К. Лавренченко, The Ukrainian Association of Industrial Gases Manufacturers «UA-SIGMA», POB 188, Odessa-26, Ukraine, 65026

G.K. Lavrenchenko, Doctor of Technical Sciences

References

Lavrenchenko G.K. (2003). Personnel support of the enterprises manufactures the products of air separation// Tekhnicheskie Gazy. [Industrial Gases]. — № 3. — P. 2-7. (Rus.).

Lavrenchenko G.K. (2004). Development of the system of continuous education to the production worker// Tekhnicheskie Gazy. [Industrial Gases]. — № 4. — P. 2-6. (Rus.).

Kapitsa P.L. (1981). Experiment. Theory. Practice. — М.: Nauka. — 496 p. (Rus.).

Small land lining// Ans. editor О.Ya. Cheremnyih. (2014). — Nizhniy Tagil: AO «Uralkriomash».— 160 p. (Rus.).

Lenskiy A.B., Cheremnyih O.Ya., Lavrenchenko G.K. (2013). Liquid oxygen and hydrogen: from Tsiolkovsky's rocket to the «Energy-Buran» space rocket complex// Tekhnicheskie Gazy. [Industrial Gases]. — № 5. — P. 3-14. (Rus.).

Cheremnyih O.Ya. (2013). The new generation of cryogenic railway tanks for transportation of air separation liquid products// Tekhnicheskie Gazy. [Industrial Gases].— № 5. — P. 66-72. (Rus.).

Kortikov A.V., Tarasova E.Yu. ( 2014). Principles accumulative distillation and the possibilities her application in the air low-temperature separation process// Tekhnicheskie Gazy. [Industrial Gases]. — № 5. — P. 32-36. (Rus.).

Faynshteyn V.I. (2009). Maintenance of explosion safety of air separation plants: retrospective analysis of the problem and modern state// Tekhnicheskie Gazy. [Industrial Gases]. — № 2. — P. 60-66. (Rus.).

Faynshteyn V.I. (2014). Oxygen, nitrogen, argon - safety in production and use. — М.: Intermet Inzhiniring. — 220 p. (Rus.).

Voronin I.B. (2008). Features and characteristics triaxial semitrailer for storage and transportations cryoproducts// Tekhnicheskie Gazy. [Industrial Gases].— № 2. — P. 67-72. (Rus.).

Kryakovkin V.P., Klebleev T.I., Lenskiy A.B. (2014). Cryogenic pipelines: from designing to putting into operation// Tekhnicheskie Gazy. [Industrial Gases]. — № 4. — P. 67-72. (Rus.).

Lavrenchenko G.K. ( 2014). Liquefied natural gas: prospects of production and use// Tekhnicheskie Gazy. [Industrial Gases]. — № 3. — P. 3-10. (Rus.).

Pavlov N.V., Ivanov K.A. (2013). The use of atmospheric evaporators in the systems of storage and gasification of liquid cryogenic products// Tekhnicheskie Gazy. [Industrial Gases]. — № 4. — P. 70-72. (Rus.).

Bondarenko V.L., Simonenko Yu.M. (2013). Cryogenic technologies of rare gases extraction. — Odessa: Astroprint. — 312 p.

Grafov A.P., Sirosh A.S, Ionov M.I., Brateyko S.V. (2014). The experience of reconstruction of the complex for helium liquefaction of «Iceblick» company// Tekhnicheskie Gazy. [Industrial Gases]. — № 5. — P. 62-72. (Rus.).

Bondarenko V.L., Kislyiy A.N. Stefanovskiy A.N., Dyachenko O.V. (2014). The experience in obtaining krypton and xenon of high-purity// Tekhnicheskie Gazy. [Industrial Gases].— № 2. — P. 49-56. (Rus.).

Kozlovskiy A.V., Markovskiy S.N., Mozhaev A.N. et al. (2007). Application of mass-spectrometers for organization of gas analysis on manufactures of air separation products and especially pure gases// Tekhnicheskie Gazy. [Industrial Gases].— № 1. — P. 67-72. (Rus.).

Lavrenchenko G.K., Kopyitin A.V. (2014). Developments and further improvement of CES-technologies// Tekhnicheskie Gazy. [Industrial Gases]. — № 4. — С. 24-31.

Vasserman A.A. Galkin V.N., Krasilovskaya D.A. (2014). Analytical description of the liquid-vapor equilibrium in binary mixtures containing rare gases// Tekhnicheskie Gazy. [Industrial Gases]. — № 6. — P. 51-57. (Rus.).

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PROBLEMS OF INDUSTRY