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Molecular Analysis on Retardation on Polyacrylamide in High Salinity and High Temperature Conditions.

Authors :
Amir, Z.
Said, I. M.
Jan, B. M.
Khalil, M.
Source :
AIP Conference Proceedings; 2019, Vol. 2168 Issue 1, p020061-1-020061-7, 7p, 4 Graphs
Publication Year :
2019

Abstract

Salinity effect on retardation efficiency of ammonium chloride (NH<subscript>4</subscript>Cl) on the polyacrylamide (PAM) that influences the gelation time of PAM-based polymer gel is an interesting phenomenon. This paper presents a concise investigation of molecular interaction of PAM with NH<subscript>4</subscript>Cl in high salinity conditions. This study quantified the ionic bonding of carboxylate group of PAM with ammonium ion of NH<subscript>4</subscript>Cl. Zeta potential and hydrodynamic radius of the prepared polymer solutions were measured using zeta potential analyzer and dynamic light scattering (DLS) technology, respectively. High salinity is represented in high concentration of sodium chloride (NaCl). From the experimental results, it shows that without NaCl and NH<subscript>4</subscript>Cl, the whole absolute value number of the zeta potential of polyacrylamide seems to increase linearly, while the hydrodynamic radius shows a significant increase. In addition, zeta potential and hydrodynamic radius of PAM decreases with salinity. The absolute value of zeta potential reduces with the concentration of NH<subscript>4</subscript>Cl as retarder. On the other hand, the hydrodynamic radius tends to increase with NH<subscript>4</subscript>Cl retarder. It may be because of tighter bonding of NH<subscript>4</subscript><superscript>+</superscript> ions with carboxylate groups of polymer. The zeta potential and hydrodynamic radius are fairly affected by the exposure time of polymer to high temperature. Higher salinity reduces the effectiveness of polymer to stretch and it in turns decreases the zeta potential and hydrodynamic radius. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0094243X
Volume :
2168
Issue :
1
Database :
Complementary Index
Journal :
AIP Conference Proceedings
Publication Type :
Conference
Accession number :
139510357
Full Text :
https://doi.org/10.1063/1.5132488