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Промышленные установки для разделения смесей при температурах 68…78 K

Инженерный журнал: наука и инновации

# 8·2017 9

вых технологий. Область интересов: криогенные технологии разделения много-

компонентных газовых смесей. e-mail:

ysim1@yandex.ru

Industrial plants for separating mixtures at temperatures

of 68...78 K by freezing

© V.L. Bondarenko

1

, A.A. Chigrin

2

, B.A. Pilipenko

2,3

,

Yu.M. Simonenko

3

1

Bauman Moscow State Technical University, Moscow, 107005, Russia

2

Cryoin Engineering Ltd, Odessa, 65026, Ukraine

3

Odessa National Academy of Food Technologies, Odessa, 65039, Ukraine

The article deals with physical principles of separating binary and multicomponent mix-

tures due to the phase transition of a gas-solid body. We estimated the temperature effect

on the concentration of the effluent flow and the degree of extraction of the desired prod-

uct. We also give examples of applying desublimation in xenon enrichment processes,

separation of light inert gases and purification of gas concentrates from high-boiling

impurities.

Keywords:

desublimation, rare gases, separation, gas mixtures

REFERENCES

[1]

Simonenko Yu.M.

Gasworld

, 2014, iss. 36, pp. 38–41.

[2]

Bondarenko V.L., Simonenko Yu.M.

Cryogenic Technologies of Rare Gases

Extraction

. Odessa, Astroprint Publ., 2013, 332 p.

[3]

Bondarenko V.L., Podgornyi A.V., Simonenko Yu.M.

Vestnik MGTU im. N.E. Bau-

mana. Ser. Mashinostroenie — Herald of the Bauman Moscow State Technical

University. Series Mechanical Engineering

,

2002, special iss. “Kholodil'naya,

kriogennaya tekhnika, sistemy konditsionirovaniya i zhizneobespecheniya”

[Refrigerating, cryogenic devices, air conditioning and life support systems],

pp. 11–14.

[4]

Arkharov A.M., Arkharov I.A., Bondarenko V.L. Neon-Helium Mixtures Sepa-

ration by Adsorption and Freezing.

4th Annual Polymer Producers Conference.

Topical Conference Proceedings, AIChE 2000 Spring National Meeting. March

5–9, 2000, Atlanta, GA, USA

. American Institute of Chemical Engineers, N.Y,

2000, pp. 71–79.

[5]

Arkharov А.М., Bondarenko V.L., Simonenko Yu.M.

Technical gases —

Industrial gases

, 2004, no. 3, pp. 27–37.

[6]

Rabinovich V.А., Vasserman А.А., Nedostup V.I., Veksler L.S.

Teplofizicheskie

svoystva neona, argona, kriptona i ksenona

[Thermal properties of neon, argon,

krypton and xenon]. Мoscow, Izd. Standartov Publ., 1976, 636 p.

[7]

Simonenko Yu.M.

Gasworld

, 2013, iss. 26, pp. 18–19.

[8]

Simonenko Yu.M., Bondarenko A.V., Chigrin A.A., Shevich Yu.A.

Chemical and

Petroleum Engineering

,

2016, vol. 51, issue 9–10, pp 707–713. DOI:

10.1007/s10556-016-0109-5

Available at:

http://link.springer.com/article/10.1007/

s10556-016-0109-5 (accessed

September 10, 2016).

Bondarenko V.L.

(b. 1955) graduated from Odessa Technological Institute of Refrigera-

tion Industry in 1977. Dr. Sc. (Eng.), Academician of the International Academy of Re-