ENERGETICS OF THE HOST-GUEST INTERACTIONS IN NALTA MOLECULAR SIEVES. THE STEPWISE NATURE OF THE HEAT CURVE OF ADSORPTION.

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Аннотация:

The paper analyzes the isotherm and differential heats of adsorption of carbon dioxide in NaLTA and establishes the molecular host-guest mechanism of interactions in the molecular sieve matrix.

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Как цитировать:

Raxmatkarieva , F. ., & Davlatova , O. . (2022). ENERGETICS OF THE HOST-GUEST INTERACTIONS IN NALTA MOLECULAR SIEVES. THE STEPWISE NATURE OF THE HEAT CURVE OF ADSORPTION. Евразийский журнал медицинских и естественных наук, 2(12), 217–222. извлечено от https://in-academy.uz/index.php/EJMNS/article/view/6335

Библиографические ссылки:

Kikuchi, R. CO2 Recovery and Reuse in the Energy Sector, Energy Resource Development and Others: Economic and Technical Evaluation of Large-Scale CO2 Recycling // Energy nViron, 2003. 14 (4). P. 383-395.

Meier, W. M.; Olson, D. H. Atlas of Zeolite Structures in Structure Commission of the International Zeolite Association, Elsevier: Amsterdam, 1978.

Siriwardane, R. V., Shen, M. S., Fisher, E. P., Poston, J. A. Adsorption of

CO2 on Molecular Sieves and Activated Carbon // Energy Fuels. 2001. 15.

P. 279-284.

Goj, A.; Sholl, D. S., Akten, E. D., Kohen, D. Atomistic Simulations of CO2

and N2 Adsorption in Silica Zeolites: The Impact of Pore Size and Shape // J.

Phys. Chem. B. 2002. 106. P. 8367-8375.

Maurin, G.; Llewellyn, P. L.; Poyet, Th.; Kuchta, B. Charge Transport in Self-Organized π-Stacks of p-Phenylene Vinylene Oligomers // J. Phys. Chem. B. 2005. 109. 125. P. 18267–18274.

Savitz, S., Myers, A. L., Gorte, R. Gas adsorption in zeolites // J. Microporous

Mesoporous Mater. 2000. 37. P. 33-39.

Siriwardane, R. V., Shen, M. S., Fisher, E. P., Poston, J. A. Adsorption of CO2

on Molecular Sieves and Activated Carbon // Energy Fuels 2001 15. P. 279-

Jacobs, P. A.; Van Santen, R. A. Zeolites: Facts, Figures, Futures // Stud.

Surf. Sci. Catal A and B. 1989. 49:835.

Ruthven, D. M., Shamasuzzaman, F., Knaebel, K. S. Pressure Swing Adsorption // VCH Publishers: New York, 1994.

Harlick, P. J. E., Handan Tezel, F. An experimental adsorbent screening study for CO2 removal from N2 // Microporous Mesoporous Mater. 2004. 76. P. 71-79.

Boddenberg B., Rakhmatkariev G. U., etc. A Calorimetrical and Statistical

Chemical Physics. 2002. vol. 4. P. 4171-4180.

Rakhmatkarieva F.G., Rakhmatkariev G.U. Guro V.P. Microcalorimetric

study of carbon dioxide adsorption in BaY zeolite // Austrian Journal of

Technical and Natural Sciences. 2015. №11-12. P. 77-81.

Mentzen B.F., Rakhmatkariev G.U. Host-guest Interactions in Zeolitic Nanostructured MFI Type Materials: Complementarity of X-ray Powder Diffraction, NMR Spectroscopy, Adsorption Calorimetry and Computer Simulations // Узб. хим. журн. 2007. № 6. С. 10-31.

Rakhmatkariev G.U. Mechanism of Adsorption of Water Vapor by Muscovite: A Model Based on Adsorption Calorimetry // Clays and Clay

Minerals, 2006, V. 54. P. 423-430.

Rakhmatkariev G.U., Irgashev O.K. Heats of water vapor adsorption in

NaX zeolite // Uzb. Khim. Zh. 2010. №2. С. 12-14.

Lyapin, S. B., Rakhmatkarieva, F. G., Rakhmatkariev, G. U. Atomic –

Absorption determination of ion – exchange cations in zeolites // Chem.

Journal. Kz. 2015. № 3. P. 304–310.

Handbook of Chemistry and Physics, ed. R.C. Weast, CRC Press,

Cleveland. 1975. 56th edn.

Rakhmatkariev, G.U., Isirikyan A.A. A Complete description of the adsorption isotherm by the equations of the volumetric micropore occupancy theory, Izv. An SSSR, Ser. chem. 1988. № 11. P. 2644-2645.