Ministry of Science and Technological Development, Republic of Serbia

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Ministry of Science and Technological Development, Republic of Serbia

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Mass transfer and fluid flow visualization in packed and fluidized beds by the adsorption method

Bošković-Vragolović, Nevenka; Garić Grulović, Radmila; Grbavčić, Željko; Pjanović, Rada

(Maik Nauka/Interperiodica/Springer, New York, 2009)

TY  - CONF
AU  - Bošković-Vragolović, Nevenka
AU  - Garić Grulović, Radmila
AU  - Grbavčić, Željko
AU  - Pjanović, Rada
PY  - 2009
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/573
AB  - Mass transfer coefficient (j D ) between fluid and column wall in liquid packed and fluidized beds of spherical inert particle has been studied experimentally using adsorption method. Experiments were conducted in column 40 mm in diameter for packed and fluidized beds. In all runs mass transfer rates were determined in presence of spherical glass particles 2.06 mm in diameter. This paper introduced adsorption method as very suitable method for studies of mass transfer and for fluid flow visualization. The adsorption method is based on the dynamic adsorption of an organic dye onto a surface covered with a thin layer of a porous adsorbent. Local and average mass transfer coefficients were determinated from the surface color intensity of the foils of silica gel. Correlation j D = f(Re) was derived using mass transfer coefficients data.
PB  - Maik Nauka/Interperiodica/Springer, New York
C3  - Russian Journal of Physical Chemistry A
T1  - Mass transfer and fluid flow visualization in packed and fluidized beds by the adsorption method
VL  - 83
IS  - 9
SP  - 1550
EP  - 1553
DO  - 10.1134/S0036024409090246
ER  - 
@conference{
author = "Bošković-Vragolović, Nevenka and Garić Grulović, Radmila and Grbavčić, Željko and Pjanović, Rada",
year = "2009",
abstract = "Mass transfer coefficient (j D ) between fluid and column wall in liquid packed and fluidized beds of spherical inert particle has been studied experimentally using adsorption method. Experiments were conducted in column 40 mm in diameter for packed and fluidized beds. In all runs mass transfer rates were determined in presence of spherical glass particles 2.06 mm in diameter. This paper introduced adsorption method as very suitable method for studies of mass transfer and for fluid flow visualization. The adsorption method is based on the dynamic adsorption of an organic dye onto a surface covered with a thin layer of a porous adsorbent. Local and average mass transfer coefficients were determinated from the surface color intensity of the foils of silica gel. Correlation j D = f(Re) was derived using mass transfer coefficients data.",
publisher = "Maik Nauka/Interperiodica/Springer, New York",
journal = "Russian Journal of Physical Chemistry A",
title = "Mass transfer and fluid flow visualization in packed and fluidized beds by the adsorption method",
volume = "83",
number = "9",
pages = "1550-1553",
doi = "10.1134/S0036024409090246"
}
Bošković-Vragolović, N., Garić Grulović, R., Grbavčić, Ž.,& Pjanović, R.. (2009). Mass transfer and fluid flow visualization in packed and fluidized beds by the adsorption method. in Russian Journal of Physical Chemistry A
Maik Nauka/Interperiodica/Springer, New York., 83(9), 1550-1553.
https://doi.org/10.1134/S0036024409090246
Bošković-Vragolović N, Garić Grulović R, Grbavčić Ž, Pjanović R. Mass transfer and fluid flow visualization in packed and fluidized beds by the adsorption method. in Russian Journal of Physical Chemistry A. 2009;83(9):1550-1553.
doi:10.1134/S0036024409090246 .
Bošković-Vragolović, Nevenka, Garić Grulović, Radmila, Grbavčić, Željko, Pjanović, Rada, "Mass transfer and fluid flow visualization in packed and fluidized beds by the adsorption method" in Russian Journal of Physical Chemistry A, 83, no. 9 (2009):1550-1553,
https://doi.org/10.1134/S0036024409090246 . .
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