Abstract
In Chaps. 10–12 were presented convection–diffusion and average-concentration models of chemical (Boyadjiev and Boyadjiev in Bul Chem Commun 49(3):706–710 [1]), co-current absorption (Boyadjiev and Boyadjiev in Bul Chem Commun 49(3):711–719 [2]) and countercurrent absorption (Boyadjiev and Boyadjiev in Bul Chem Commun 49(3):720–728 [3]) processes in industrial column apparatuses, where an axial modification of the axial velocity radial non-uniformity along the column height exists and the radial velocity component is not equal to zero. This problem is solved in the cases of the physical and chemical adsorption processes in the industrial column apparatuses (Boyadjiev and Boyadjiev in J Eng Thermophys 27(1) [4]).
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References
Boyadjiev B, Boyadjiev C (2017) New models of industrial column chemical reactors. Bul Chem Commun 49(3):706–710
Boyadjiev B, Boyadjiev C (2017) New models of industrial column absorbers. 1. Co-current absorption processes. Bul Chem Commun 49(3):711–719
Boyadjiev B, Boyadjiev C (2017) New models of industrial column absorbers. 1. Counter-current absorption processes. Bul Chem Commun 49(3):720–728
Boyadjiev B, Boyadjiev C (2018) A new approach for modeling of industrial absorption columns. J Eng Thermophys 27(1)
Boyadjiev C, Doichinova M, Boyadjiev B, Popova-Krumova P (2016) Modeling of column apparatus processes. Springer, Berlin, Heidelberg
Boyadjiev C, Boyadjiev B, Popova-Krumova P, Doichinova M (2015) An innovative approach for adsorption column modeling. Chem Eng Technol 38(4):675–682
Boyadjiev B, Doichinova M, Boyadjiev C (2015) Computer modelling of column apparatuses. 2. Multistep modeling approach. J Eng Thermophys 24(4):362–370
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Boyadjiev, C., Doichinova, M., Boyadjiev, B., Popova-Krumova, P. (2018). Industrial Column Adsorber. In: Modeling of Column Apparatus Processes. Heat and Mass Transfer. Springer, Cham. https://doi.org/10.1007/978-3-319-89966-4_13
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DOI: https://doi.org/10.1007/978-3-319-89966-4_13
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