Comparison of dispersed phase holdup and slip velocity in chemical systems with different interfacial tension in an L-shaped pulsed sieve-plate extraction column
Author:
Publisher
Elsevier BV
Subject
Waste Management and Disposal,Energy Engineering and Power Technology,Safety, Risk, Reliability and Quality,Nuclear Energy and Engineering
Reference48 articles.
1. Experimental investigation on regime transition and characteristic velocity in a horizontal-vertical pulsed sieve-plate column;Akhgar;RSC Adv.,2017
2. Experimental investigation on the mean drop size and drop size distribution in an L-shaped pulsed sieve-plate column;Amani;Separ. Sci. Technol.,2017
3. Two-phase pressure drop and flooding characteristics in a horizontal-vertical pulsed sieve-plate column;Amani;Int. J. Heat Fluid Flow,2017
4. Modeling of mass transfer coefficient using response surface methodology in a horizontal-vertical pulsed sieve-plate extraction column;Ardestani;Prog. Nucl. Energy,2021
5. Mean drop behavior in different standard liquid-liquid extraction systems on an L-shaped pulsed sieve-plate column: experimental and modeling;Ardestani;RSC Adv.,2022
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1. A new approach for scale-up of pulsed disc and doughnut columns based on the similarity principle;Separation and Purification Technology;2025-01
2. Densities, viscosities, and refractive indices of binary mixtures of tri-n-butyl phosphate with propan-2-ol and butan-2-ol at 303.15, 308.15, 313.15, 318.15, and 323.15 K;The Journal of Chemical Thermodynamics;2024-05
3. Experimental modeling of slip velocity in an L-shape pulsed packed extraction column using response surface methodology;Annals of Nuclear Energy;2024-04
4. Interfacial relaxation of droplets caused by mass transfer in a pulsed column;AIChE Journal;2024-03-11
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