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"Regeneration of Spent Catalyst and Impregnation of Catalyst by Supercritical Fluid"
written by Farid M. Gumerov1, Bernard Le Neindre2, Timur R. Bilalov1, Ajrat A. Sagdeev3 ,
published by International Journal of Analytical Mass Spectrometry and Chromatography, Vol.4 No.4, 2016
has been cited by the following article(s):
[2]
Supercritical fluid CO2-extraction regeneration of nickel–molybdenum catalyst for hydrotreatment
Catalysis in Industry
2017
[3]
Treatment of different types of cotton fabrics by ammonium palmitate in a supercritical CO2 environment
The Journal of Supercritical Fluids
2017
[4]
Treatment of Cotton Fabrics by Ammonium Palmitate in a Supercritical CO2 Medium
Russian Journal of Physical Chemistry B
2017
[5]
Pyrolysis kinetic of alkaline and dealkaline lignin using catalyst
Journal of Polymer Research
2018
[6]
Mathematical Simulation of the Kinetics of Supercritical Fluid-Extraction Regeneration of a Heterogeneous Catalyst
Theoretical Foundations of Chemical Engineering
2018
[7]
Farid Mukhamedovich Gumerov1, Rustem Aituganovich Usmanov1, Sergei Valerevich Mazanov1
2017
[13]
ЭКСТРАКЦИОННЫЕ И ИМПРЕГНАЦИОННЫЕ ПРОЦЕССЫ С ИСПОЛЬЗОВАНИЕМ СВЕРХКРИТИЧЕСКОГО ФЛЮИДНОГО СОСТОЯНИЯ
2017
[18]
Competitive Transient Electrostatic Adsorption for In Situ Regeneration of Poisoned Catalyst
2019
[20]
High-Power Heat Transfer in Supercritical Fluids: Microscale Times and Sizes
2021
[26]
Prospective principles of catalyst utilization using supercritical fluid media
2021
[27]
Wear and corrosion properties of pure aluminum reinforced with (B4C+ Spent Catalyst) composite
2021
[28]
Enhanced Catalytic Pyrolysis of Biomass for High-Quality Biofuel Production
2021