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MULTICOMPONENT SYSTEMS WITH THREE-PHASE SPLITTING REGION

https://doi.org/10.32362/2410-6593-2016-11-6-15-27

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Abstract

A review of scientific publications that describe systems with a three-phase splitting region is presented. Mechanisms of a three-phase splitting region formation are shown. All the suggested classifications of diagrams with a three-phase splitting region are presented. Methods for studying the evolution of a three-phase splitting region are described. Problems connected with the mathematical modeling of liquid - liquid - liquid equilibrium are considered. The ability of mixtures to form three-phase splitting regions and opportunities of separating such mixtures by special methods is analyzed. A list of known systems with three and more liquid phases is presented.

About the Authors

A. V. Frolkova
Moscow Technological University (Institute of Fine Chemical Technologies)
Russian Federation
Moscow, 119571 Russia


A. A. Akishina
Moscow Technological University (Institute of Fine Chemical Technologies)
Russian Federation
Moscow, 119571 Russia


A. K. Frolkova
Moscow Technological University (Institute of Fine Chemical Technologies)
Russian Federation
Moscow, 119571 Russia


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273. Frolkova A.V., Akishina A.A., Ablizin M.A., Mayevskiy M.A. Feathers of calculation of material balance of quaternary splitting system separation flowsheet // High-Tech in Chemical Engineering – 2016 : Abstracts of XVI Int. Scientific Conf. (October 10–15, 2016, Moscow). Moscow: Moscow Technological University, 2016. P. 32.

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277. Frolkova A.V., Zakharova D.S., Frolkova A.K., Balbenov S.A. Fluid Phase Equilibria. 2016. V. 408. P. 10–14.

278. Tan Xian-Dong, Ji Qing-Rong, Chang ZhiDong The Chinese Journal of Process Engineering. 2006. V. 6. № 3. P. 363–368.

279. Guo L., Lee H.K. J. Chromatography A. 2011. V. 1218. № 28. P. 4299–4306.

280. McDonald C.M., Floudas C.A. AIChE Journal. 1995. V. 41. № 7. P. 1798–1814.

281. McDonald C.M., Floudas C.A. Computers & Chemical Engineering. 1997. V. 21. № 7. 821–822.

282. Carda-Broch S., Berthod A., Armstrong D.W. Anal. Bioanal. Chem. 2003. V. 375. № 2. P. 191–199.

283. Chen C.C., Evans L.B. AIChE Journal. 1986. V. 32. № 3. P. 444–454.

284. Timofeev V.S. Physico-chemical basics of technology of rectification of heteroazeotropic multicomponent mixtures: PhD dissertation. M.: MITHT, 1974. (in Russ).

285. Van Bochove G.H. Two- and Three-Liquid Phase Equilibria in Industrial Mixed Solvent Electrolyte Solutions: Experiments and Modeling of Systems of Importance for the Extraction of Caprolactam. IOS Press, Inc., 2003. 192 p.

286. Timofeev V.S., Serafimov L.A., Timoshenko A.V. Principles of technology of basic organic and petrochemical synthesis. M.: Vysshaya Shkola Publ., 2010. 408 p. (in Russ).

287. Lucia A., Dimaggio P.A., Depa P. Journal of Global Optimization. 2004. V. 29. № 3. P. 297–314.

288. Frolkova A.V., Ablizin M.A., Maevskii M.A., Frolkova A.K. Tonkie Khimicheskie Tekhnologii (Fine Chemical Technologies). 2016. V. 11 № 3. P. 44–47. (in Russ).

289. Arutyunian N.S., Arisheva E.A., Yanova L.I. Fat processing technology. Moscow: Agropromizdat, 1985. 368 p. (in Russ.).

290. Frolkova A.V., Akishina A.A., Ablizin M.A., Mayevskiy M.A. Feathers of calculation of material balance of quaternary splitting system separation flowsheet // High-Tech in Chemical Engineering – 2016 : Abstracts of XVI Int. Scientific Conf. (October 10–15, 2016, Moscow). Moscow: Moscow Technological University, 2016. P. 32.

291. Kalhweit M., Strey R., Busse G. J. Phys. Chem. 1990. V. 94. № 10. P. 3881–3894.

292. Andersen J.G., Koak N., de Loos T.W. Fluid Phase Equilibria. 1999. V. 163. № 2. P. 259–273

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294. Hartwig G.M., Hood G.C., Maycock R.L. J. Phys. Chem. 1955. V. 59. № 1. P. 52–54.

295. Griswold J., Klecka M.E., West R.V. Chem. Eng. Progr. 1948. V. 44. P. 839.

296. Huang K., Liu H. Liquid-liquid-liquid three phase extraction: A promising strategy for multi-metal separation from complex systems. // The 51 Annual Conference of Metallurgists of CIM (COM – 2012). Niagara, ON, Canada.

297. Pletnev I.V., Smirnova S.V., Khachatrian K.S., Zernov V.V. Russian Journal of General Chemistry.2004. V. 48. № 6. P. 51–58. (in Russ.).

298. Basheer C., Alnedhary A.A., Madhavarao B.S., Balasubramanian R., Lee H.K. J. Chromatography A. 2008. V. 1210. № 1. P. 19–24.

299. Boiadzhiev L. Theoret. Found. Chem. Eng. 1984. V. 18. № 6. P. 735-743. (in Russ.).

300. Tan Xian-Dong, Ji Qing-Rong, Chang ZhiDong The Chinese Journal of Process Engineering. 2006. V. 6. № 3. P. 363–368.

301. Guo L., Lee H.K. J. Chromatography A. 2011. V. 1218. № 28. P. 4299–4306.

302. Carda-Broch S., Berthod A., Armstrong D.W. Anal. Bioanal. Chem. 2003. V. 375. № 2. P. 191–199.

303. Timofeev V.S. Physico-chemical basics of technology of rectification of heteroazeotropic multicomponent mixtures: PhD dissertation. M.: MITHT, 1974. (in Russ).

304. Timofeev V.S., Serafimov L.A., Timoshenko A.V. Principles of technology of basic organic and petrochemical synthesis. M.: Vysshaya Shkola Publ., 2010. 408 p. (in Russ).

305. Frolkova A.V., Ablizin M.A., Maevskii M.A., Frolkova A.K. Tonkie Khimicheskie Tekhnologii (Fine Chemical Technologies). 2016. V. 11 № 3. P. 44–47. (in Russ).

306. Frolkova A.V., Akishina A.A., Ablizin M.A., Mayevskiy M.A. Feathers of calculation of material balance of quaternary splitting system separation flowsheet // High-Tech in Chemical Engineering – 2016 : Abstracts of XVI Int. Scientific Conf. (October 10–15, 2016, Moscow). Moscow: Moscow Technological University, 2016. P. 32.


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Frolkova A.V., Akishina A.A., Frolkova A.K. MULTICOMPONENT SYSTEMS WITH THREE-PHASE SPLITTING REGION. Fine Chemical Technologies. 2016;11(6):15-27. https://doi.org/10.32362/2410-6593-2016-11-6-15-27

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