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Ryzhkov Ilya Igorevich
Curriculum vitae

General information

Last nameRyzhkov
First nameIlya
Second nameIgorevich
CitizenshipRussia
DOBFeb 2, 1980
Martial statusmarried
Work address50/44, Akademgorodok, Krasnoyarsk, Russia, 660036
Phone+7 391 2907528
E-mailWrite e-mail
Academic degreePhD in Physics and Mathematics
Doctor of Physical and Mathematical Sciences
 

Education

1987 — 1997Secondary school 32
1997 — 2002Krasnoyarsk State Technical University, Applied mathematics
2000 — 2003Krasnoyarsk State Technical University, Translator of the English language in the field of professional communication
2005PhD in Physics and Mathematics (Differential equations), PhD Thesis «Invariant submodels and exact solutions of thermal diffusion equations»
Novosibirsk State University
2014Doctor of Physical and Mathematical Sciences (Mechanics of fluids, gas, and plasma), Thesis «Structures and stability of convective flows in pure fluids and multicomponent mixtures with thermal diffusion»
Institute of Continuous Media Mechanics UB RAS, Perm
 

Professional background

09.2002 — 10.2005Institute of Computational Modelling SB RAS, post-graduate student
11.2005 — 09.2009Institute of Computational Modelling SB RAS, junior researcher
01.2006 — 03.2009Postdoctoral fellow, Department of Chemical Physics, Free University of Brussels (Belgium)
10.2009 — 05.2015Institute of Computational Modelling SB RAS, senior researcher
06.2015 — presentInstitute of Computational Modelling SB RAS, chief researcher
 

Teaching

09.2009 — 08.2011Siberian Federal University, Associate Professor, Department of Mathematical Modelling and Control Processes
Lectures on «Mathematical models of convection»
09.2014 — presentSiberian Federal University, Professor, Department of Applied Mathematics and Information Security
Lectures on «Mathematical modelling»
Lectures on «Equations of mathematical physics»
 

Research interests

Prof. Ilya I. Ryzhkov is a specialist in the field of physical chemistry, materials science, membrane technologies, heat and mass transfer processes, and mathematical modeling. He participated in the preparation and implementation of experiments on heat and mass transfer processes in liquid mixtures in microgravity conditions (in Parabolic flights and International Space Station). In 2015, Ilya I. Ryzhkov founded the Laboratory of Nanomaterials and Transfer Processes at the Krasnoyarsk Scientific Center and developed research in the area of electric-field controlled membrane transport. The research group led by I. Ryzhkov has proposed new types of ceramic membranes with controlled ion selectivity and new mathematical models of ion transport in such membranes. In 2019, he worked as an invited researcher in University of Twente and European Center of Excellence for sustainable water technology (Wetsus), The Netherlands.
The Hirsch Index of Ilya I. Ryzhkov is 13 (WoS, Scopus), and he is the author of over 60 scientific papers in peer-reviewed journals.
Google scholar profile
He supervised 9 bachelor and master students theses on mathematical modelling and physical chemistry. Presently, he is a supervisor of two PhD students. During the last 5 years, the following research projects have been realized under his supervision:
  1. RFBR project 15–01–03293-a «The study of thermal diffusion separation in colloidal suspensions and binary mixtures near critical solution temperature», 2015–2017.
  2. RFBR project 18–38–20046-mol_a_ved «Development and improvement of active nanoporous membrane technology for tunable separation of liquid mixtures», 2019–2020.
  3. RFBR-KSF project 18–48–242011-rmk «Mathematical modelling of synthesis and ionic transport properties of conductive nanoporous membranes», 2019–2020.
  4. RFBR project 18–29–19078-mk «Experimental and theoretical study of carbon layers formation in nanostructured alumina materials», 2019–2021.
  5. RSF project 15–19–10017 «Experimental and theoretical study of new selectivity mechanisms in active nanomembranes for separation of liquid media», 2015–2017.
 

Association membership

Member of International Working Group «Physics of Membrane Processes»
Member of European Low Gravity Research Association (ELGRA)
Member of European Space Agency Topical Team «Diffusion in non-metallic liquids»
Member of Expert Council for Presidential research funding program
Expert of Krasnoyarsk Science Foundation, Russian Foundation for Basic Research, Russian
Science Foundation, NWO foundation (The Netherlands)
 

Selected publications

  1. Minakov A. V., Simunin M. M., Ryzhkov I. I.
    Modelling of ethanol pyrolysis in a commercial CVD reactor for growing carbon layers on alumina substrates. International Journal of Heat and Mass Transfer, 2019. V. 145, 118764. Q1, IF=4.947.

  2. Zhang L., Biesheuvel P. M., Ryzhkov I. I.
    Theory of ion and water transport in electron-conducting membrane pores with pH-dependent chemical charge. Physical Review Applied, 2019. V. 12 (1), 014039. Q1, IF=4.194.

  3. Solodovnichenko V. S., Simunin M. M., Lebedev D. V., Voronin A. S., Emelianov A. V., Mikhlin Y. L., Parfenov V. A., Ryzhkov I. I.
    Coupled thermal analysis of carbon layers deposited on alumina nanofibres. Thermochimica Acta, 2019. V. 675, P. 164–171. Q2, IF=2.762.

  4. Kozlova S., Mialdun A., Ryzhkov I., Janzen T., Vrabec J., Shevtsova V.
    Do ternary liquid mixtures exhibit negative main Fick diffusion coefficients? Physical Chemistry Chemical Physics, 2019. V. 21 (4), P. 2140–2152. Q1, IF=3.43.

  5. Ryzhkov I. I., Kozlova S. V.
    The transient separation of multicomponent mixtures in a cylindrical thermogravitational column. International journal of heat and mass transfer, 2018. V. 126, P. 660–669. Q1, IF=4.947.

  6. Ryzhkov I. I., Lebedev D. V., Solodovnichenko V. S., Minakov A. V., Simunin M. M.
    On the origin of membrane potential in membranes with polarizable nanopores. Journal of Membrane Science, 2018. V. 549. P. 616–630. Q1, IF=7.183.

  7. Ryzhkov I. I., Lebedev D. V., Solodovnichenko V. S., Shiverskiy A. V., Simunin M. M.
    Induced-charge enhancement of diffusion potential in membranes with polarizable nanopores. Physical Review Letters, 2017. V. 119, 226001. Q1, IF=8.385.

  8. D. V. Lebedev, V. S. Solodovnichenko, M. M. Simunin, I. I. Ryzhkov
    The effect of electric field on the ion transport on nanoporous membranes with conductive surface. Petrol. Chem. 58 (6) (2018) 474–481. Q3, IF=1.038.

  9. Solodovnichenko V. S., Lebedev D. V., Bykanova V. V., Shiverskiy A. V., Simunin M. M., Parfenov V. A., Ryzhkov I. I.
    Carbon coated alumina nanofiber membranes for selective ion transport. Advanced Engineering Materials, 2017, V. 19, 1700244. Q1 (http://www.scimagojr.com), IF=3.217.

  10. Ryzhkov I. I., Minakov A. V.
    Theoretical study of electrolyte transport in nanofiltration membranes with constant surface potential / charge density. Journal of membrane science, 2016. V. 520, P. 515–528. Q1, IF=7.183.