Effect of pressure on the stability and ability to drying of water-saturated gases
DOI:
https://doi.org/10.15587/2312-8372.2016.76525Keywords:
pressure, crystalline hydrates, metals, spectroscopy, ligands, bond, electronegativity, hydrationAbstract
The inorganic salts-based solid phase adsorbents are often used as driers of gases or weakly polar liquids (for example – ethanol) as the cations of metal elements have the ability to readily form aquacomplex compounds, which easily solidify and form crystalline hydrates. However, since there is often a need to conduct drying gas from other pressure than atmospheric pressure, there is a need to carry out the dependence of properties of inorganic salts, which form crystalline hydrates, from the pressure.
Results based on the use of four different inorganic adsorbents have shown that the pressure increase accelerates dehydration and generally deepens its extent. It is caused both by van der Waals bonds and a more effective mechanism for the formation of bonds of the donor-acceptor mechanism. Effect of pressure increase on various adsorbents is uneven and is linked to the strength of relationships, which are formed by a cationic mechanism, and is also associated with coordination number of the central atom, its radius, the distance to its electron shells and the position in the periodic table.
The results make it possible to develop an adsorbent for effective drying gas to replace traditional gas drier, such as phosphorus (V) oxide, and sulfate (sulfuric) acid.
References
- Ahmetov, N. S. (2001). Obshchaia i neorganicheskaia himiia. Ed. 4. Moscow: Vysshaia shkola, izdatel'skii tsentr «Akademiia», 743.
- Abramov, V. V., Svistunov, G. P. (1989). Obshchaia i neorganicheskaia himiia, himicheskaia sviaz'. Obshchie predstavleniia. Ionnaia sviaz'. Metod valentnyh sviazei v teorii kovalentnoi sviazi. Vladimir: Vladimirskii politehnicheski institut, 47.
- Yaroshevskaia, H. M. (2003). Fizicheskaia himiia. Kazan': KGTU, 111.
- Kessler, Yu. M., Petrenko, V. E., Liashchenko, A. K. et al. (2003). Voda: struktura, sostoianie, sol'vatatsiia. Dostizheniia poslednih let. Moscow: Nauka, 403.
- Riabuhin, A. G. (2000). Effektivnye ionnye radiusy. Ental'piia kristallicheskoi reshetki. Ental'piia gidratatsii ionov. Cheliabinsk: YuUrGU, 115.
- Gainullina, I. P. (1999). Izbiratel'naia sol'vatatsiia zariazhennyh i elektroneitral'nyh chastits v vodnyh rastvorah D-gliukozy. Bishkek: Institut himii i himicheskoi tehnologii, 27.
- Dorling Kindersley Science Encyclopedia. 2nd Revised edition edition. (1997, August 21). Dorling Kindersley Publishers Ltd., 448.
- Goronovskii, I. T., Nazarenko, Yu. P., Nekriach, E. F.; In: Pilipenko, A. T. (1987). Kratkii spravochnik po himii. Ed. 5. Kyiv: Naukova Dumka, 58.
- Schwarz, U. (2004, January 1). Editorial: High-Pressure Crystallography and Synthesis. Zeitschrift für Kristallographie – Crystalline Materials, Vol. 219, № 6, IV–IV. doi:10.1524/zkri.219.6.iv.34634
- Takashima, S. (2001, April 5). The structure and dipole moment of globular proteins in solution and crystalline states: Use of NMR and X‐ray databases for the numerical calculation of dipole moment. Biopolymers, Vol. 58, № 4, 398–409. doi:10.1002/1097-0282(20010405)58:4<398::aid-bip1016>3.3.co;2-0
- Van der Waals Forces. (2010, August 2). BUTT:SURFACE FORCES O-BK. Wiley-Blackwell, 5–53. doi:10.1002/9783527629411.ch2
- Serezhkin, V. N., Pushkin, D. V. (2004). Kristallohimicheskie radiusy i koordinatsionnye chisla atomov. Samara: Gosudarstvennoe obrazovatel'noe uchrezhdenie «Samarskii gosudarstvennyi universitet», 60–62.
- Appendix 2: Periodic Table of the Elements (1 to 102), Shaded According to Number of Naturally Occurring Isotopes. (2005, November 29). Mass Spectrometry of Inorganic, Coordination and Organometallic Compounds. Wiley-Blackwell, 247–248. doi:10.1002/0470014318.app2
- Rozmanov, D. A., Sizova, O. V., Skripkin, M. Y., Burkov, K. A. (2005, November). The structure and the Raman vibrational spectrum of the beryllium aquacation. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, Vol. 62, № 1-3, 92–96. doi:10.1016/j.saa.2004.12.006
- Moomaw, A. S., Maguire, M. E. (2010, July 27). Cation Selectivity by the CorA Mg2+ Channel Requires a Fully Hydrated Cation. Biochemistry, Vol. 49, № 29, 5998–6008. doi:10.1021/bi1005656
- Komarov, S. A., Mironov, V. L., Romanov, A. N. (2000). Dielektricheskie svoistva peska, soderzhashchego kristallogidraty mineral'nyh solei. Barnaul: AGU, 60.
- Baletskaia, L. G. (2005). Neorganicheskaia himiia. Rostov-na-Donu: Feniks, 251.
- Kulikova, E. Yu. (2008). Fiziko-himicheskie protsessy v neravnovesnyh energonapriazhennyh sistemah blagorodnyi gaz – ftor, ozon i ravnovesnyh sistemah blagorodnyi gaz – zhidkost'. Ivanovo: Ivanovskii gosudarstvennyi universitet, 158.
- Bazhin, N. M. (2011). Zhurnal strukturnoi himii. Vol. 52. Rentgenovskie i elektronnye spektry i himicheskaia sviaz'. Sibirskoe otdelenie RAN, Institut neorganicheskoi himii im. A. V. Nikolaeva, 104.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2016 Николай Андреевич Блинков, Игорь Михайлович Рыщенко, Александр Иванович Русинов
This work is licensed under a Creative Commons Attribution 4.0 International License.
The consolidation and conditions for the transfer of copyright (identification of authorship) is carried out in the License Agreement. In particular, the authors reserve the right to the authorship of their manuscript and transfer the first publication of this work to the journal under the terms of the Creative Commons CC BY license. At the same time, they have the right to conclude on their own additional agreements concerning the non-exclusive distribution of the work in the form in which it was published by this journal, but provided that the link to the first publication of the article in this journal is preserved.