Kreiba, Ali (2000) The rheological properties of aqueous polyacrylamide solutions. Masters thesis, Concordia University.
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Abstract
Polyacrylamide solutions are extensively used as chemical additives or processing aids in the manufacturing of paper and paperboard products. In addition, they have been widely used in enhanced oil recovery. In this thesis, an experimental work has been carried out to provide a complete and comprehensive study of the rheological properties of polyacrylamide solutions using cone-and-plate rheometery. Polyacrylamide concentrations in the tested solutions ranged by weight from 2 to 5%. The scope of the study includes the measurements of steady-state behavior, transient shear stress and yield stress response, thixotropic, creep recovery, and dynamic responses for each concentration. The findings resulted in several conclusions regarding the rheological properties of polyacrylamide solutions. They have shown a strong shear-thinning behavior for all concentrations. The dynamic viscosity showed two different behaviors--shear-thinning region and shear-thickening region. Significant transient behavior has been observed for all concentrations of polyacrylamide solutions. The yield stress of PAM solutions increased with increasing concentrations. Three different behaviors of thixotropy test have been observed--thixotropy, antithixotropy, and time dependent. Finally, the viscous part of PAM solutions was always higher than the elastic part.
Divisions: | Concordia University > Gina Cody School of Engineering and Computer Science > Mechanical and Industrial Engineering |
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Item Type: | Thesis (Masters) |
Authors: | Kreiba, Ali |
Pagination: | xi, 103 leaves : ill. ; 29 cm. |
Institution: | Concordia University |
Degree Name: | M.A. Sc. |
Program: | Mechanical and Industrial Engineering |
Date: | 2000 |
Thesis Supervisor(s): | Esmail, Nabil |
Identification Number: | TP 1180 P54K74 2000 |
ID Code: | 1231 |
Deposited By: | Concordia University Library |
Deposited On: | 27 Aug 2009 17:17 |
Last Modified: | 13 Jul 2020 19:48 |
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