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Kinetics of Mass Transfer During the Adsorption of Ions of Heavy Metals by Natural Clinoptilolite
by
Yusubov, F. V.
, Veliyeva, G. V.
in
Adsorbents
/ Adsorption
/ Adsorptivity
/ Analysis
/ Classical Mechanics
/ Complex Systems
/ Diffusion
/ Engineering
/ Engineering Thermodynamics
/ Equilibrium
/ Heat and Mass Transfer
/ Heat resistance
/ Heavy metals
/ Industrial Chemistry/Chemical Engineering
/ Kinetics
/ Mass transfer
/ Mathematical models
/ Metal industry
/ Metal ions
/ Miscellanea
/ Thermodynamics
/ Zinc compounds
2025
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Kinetics of Mass Transfer During the Adsorption of Ions of Heavy Metals by Natural Clinoptilolite
by
Yusubov, F. V.
, Veliyeva, G. V.
in
Adsorbents
/ Adsorption
/ Adsorptivity
/ Analysis
/ Classical Mechanics
/ Complex Systems
/ Diffusion
/ Engineering
/ Engineering Thermodynamics
/ Equilibrium
/ Heat and Mass Transfer
/ Heat resistance
/ Heavy metals
/ Industrial Chemistry/Chemical Engineering
/ Kinetics
/ Mass transfer
/ Mathematical models
/ Metal industry
/ Metal ions
/ Miscellanea
/ Thermodynamics
/ Zinc compounds
2025
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Do you wish to request the book?
Kinetics of Mass Transfer During the Adsorption of Ions of Heavy Metals by Natural Clinoptilolite
by
Yusubov, F. V.
, Veliyeva, G. V.
in
Adsorbents
/ Adsorption
/ Adsorptivity
/ Analysis
/ Classical Mechanics
/ Complex Systems
/ Diffusion
/ Engineering
/ Engineering Thermodynamics
/ Equilibrium
/ Heat and Mass Transfer
/ Heat resistance
/ Heavy metals
/ Industrial Chemistry/Chemical Engineering
/ Kinetics
/ Mass transfer
/ Mathematical models
/ Metal industry
/ Metal ions
/ Miscellanea
/ Thermodynamics
/ Zinc compounds
2025
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Kinetics of Mass Transfer During the Adsorption of Ions of Heavy Metals by Natural Clinoptilolite
Journal Article
Kinetics of Mass Transfer During the Adsorption of Ions of Heavy Metals by Natural Clinoptilolite
2025
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Overview
A mathematical model of mass transfer and diffusion during the adsorption of the ions of heavy metals Pb
2+
, Cd
2+
, Zn
2+
, and Ni
2+
from solutions has been developed. The isotherms and kinetic curves of adsorption of the indicated metals by natural clinoptilolite, and also the dependence of the adsorption of these ions on pH of the solution have been determined. It has been established that the process of separation is more intense at pH 6.2–7. The regularities of the influence of the concentration of the adsorptive in the solution on the total mass-transfer coefficient and the effective coefficient of diffusion in it have been determined.
Publisher
Springer US,Springer,Springer Nature B.V
Subject
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