Surface reaction diffusion of sublimating substances

Authors

  • Dmitriy Vladimirovich Permikin Ural Federal University named after the first President of Russia B.N. Yeltsin
  • Vladimir Sergeevich Zverev Ural Federal University named after the first President of Russia B.N. Yeltsin

DOI:

https://doi.org/10.7242/1999-6691/2012.5.1.12

Keywords:

surface reaction diffusion, reaction front, moving boundary, numerical and analytical solutions

Abstract

The phenomenon of solid-phase diffusion over the surface of substances accompanied by a chemical reaction is considered. The purpose of the research is to describe the concentration of substances and the surface layer growth of the reaction product. The model, which takes into account the redistribution of diffusion fluxes and the diffusant sublimation, is constructed. It is the system of parabolic equations complicated by a moving unknown boundary. An algorithm for computing the finite-difference solution based on the method of front straightening is developed. Estimation of the characteristic times of the processes observed makes it possible to construct an analytical approximation. Numerical and analytical solutions agree well in a wide range of model parameter values, including limiting cases. This allowed us to identify the law for the surface layer growth with time, which has the order .

Downloads

Download data is not yet available.

References

Neiman A.Ya. Cooperative transport in oxides: diffusion and migration processes involving Mo (VI), W (VI), V (V) and Nb (V) // Solid State Ionics. - 1996. - V. 83, N. 3-4. - S. 263-273. DOI
Nejman A.A., Guseva A.F. Novye dannye o mehanizme massoperenosa pri tverdofaznyh reakciah. II. Poverhnostnye i elektropoverhnostnye avlenia // Kinetika i kataliz. - 1999. - T. 40, No 1. - S. 38-49.
Nejman A.A., Utumov V.U., Karpov S.G., Kostikov U.P., Siatova M.V. Tverdofaznoe rastekanie i kristallizacia vysokotemperaturnyh oksidov. Sistemy M2O3/Al2O3, M2O3/ZrO2(Y2O3); (M=In,Ga,Cr) // Poverhnost’. - 2000. - No 3. - S. 52-61.
Neiman A., Guseva A., Trifonova M. Surface reaction diffusion during formation of molybdates and tungstates // Solid State Ionics. - 2001. - V. 141-142. - P. 321-329. DOI
Guseva A., Neiman A., Konisheva E., Trifonova M., Gorbunova E. The interface transport of V2O5 and WO3 into CaMo(W)O4 stimulated by an electric field // Surface Science. - 2002. - V. 507-510. - P. 140-145. DOI
Nejman A.A., Guseva A.F. Trifonova M.V., Suhankina I.V. Poverhnostnaa reakcionnaa diffuzia pri sinteze molibdatov i vol’framatov: rol’ fazovogo sostava produktov // Zurnal neorganiceskoj himii. - 2005. - T. 50, No 3. - S. 367-372.
Yelfimov Yu.A., Ivanov A.O. A Mathematical model of surface-reaction diffusion // Int. J. Fluid Mech. Research - 2000. - V. 27, N. 2-4. - P. 312-319.
Levenskih A.V., Ivanov A.O. Matematiceskoe modelirovanie poverhnostnoj reakcionnoj diffuzii. Cislennoe resenie // Matematiceskoe modelirovanie v estestvennyh naukah: Tez. dokl., XIV Vseros. sk.-konf. mol. uc., Perm’. - Perm’: PGTU, 2005. - S. 43.
Permikin D.V. Issledovanie modeli poverhnostnoj reakcionnoj diffuzii pri uslovii frontal’nogo vzaimodejstvia vesestv // Problemy teoreticeskoj i prikladnoj matematiki: Tr. 37-oj region. molod. sk.-konf., Ekaterinburg, 2-6 fevrala 2006 g. - Ekaterinburg: UrO RAN - S. 259-263.
Zverev V.S. Modelirovanie poverhnostnoj reakcionnoj diffuzii i cislennoe resenie // Matem. modelirovanie. - 2010. - T. 22, No 7. - S. 82-92.
Himiceskaa enciklopedia: V 5 t. / Gl. red. I.L. Knunanc i N.S. Zefirov. - M: Sovetskaa enciklopedia, Bol’saa rossijskaa enciklopedia, 1988-1998.
Kartasov E.M. Analiticeskie metody v teorii teploprovodnosti tverdyh tel. - M.: Vyss. sk., 2001. - 550 s.
Aleksandrov D.V. K teorii zarozdenia dvuhfaznoj zony koncentracionnogo pereohlazdenia // DAN. - 2003. - T. 392, No 3. - S. 322-327.
Samarskij A.A., Vabisevic P.N. Vycislitel’naa teploperedaca. - M.: Editorial URSS, 2003. - 784 s.
Kalitkin N.N. Cislennye metody. - M.: Nauka, 1978. - 512 s.
Fisher J.C. Calculation of diffusion penetration curves for surface and grain boundary diffusion // J. Appl. Phys. - 1951. - V. 22, N. 1. - P. 74-77. DOI

Published

2012-05-01

Issue

Section

Articles

How to Cite

Permikin, D. V., & Zverev, V. S. (2012). Surface reaction diffusion of sublimating substances. Computational Continuum Mechanics, 5(1), 100-106. https://doi.org/10.7242/1999-6691/2012.5.1.12