Molecular analysis on retardation on polyacrylamide in high salinity and high temperature conditions

Zulhelmi Amir, I. M. Said, B. M. Jan, M. Khalil
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Abstract

Salinity effect on retardation efficiency of ammonium chloride (NH4Cl) 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 NH4Cl in high salinity conditions. This study quantified the ionic bonding of carboxylate group of PAM with ammonium ion of NH4Cl. 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 NH4Cl, 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 NH4Cl as retarder. On the other hand, the hydrodynamic radius tends to increase with NH4Cl retarder. It may be because of tighter bonding of NH4 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.
高盐高温条件下聚丙烯酰胺缓凝作用的分子分析
盐度对氯化铵(NH4Cl)对聚丙烯酰胺(PAM)缓凝效率的影响以及对PAM基聚合物凝胶形成时间的影响是一个有趣的现象。本文简要介绍了PAM与NH4Cl在高盐度条件下的分子相互作用。本研究量化了PAM羧酸基与NH4Cl铵离子的离子键。采用Zeta电位分析仪和动态光散射(DLS)技术分别测定了聚合物溶液的Zeta电位和水动力半径。高盐度表现为高浓度的氯化钠(NaCl)。实验结果表明,在没有NaCl和NH4Cl的情况下,聚丙烯酰胺的zeta电位的整个绝对值数呈线性增加,而流体动力半径则呈显著增加。此外,PAM的zeta电位和水动力半径随盐度的增加而减小。zeta电位的绝对值随着缓凝剂NH4Cl浓度的增加而减小。NH4Cl缓速剂的加入使水动力半径有增大的趋势。这可能是由于NH4离子与聚合物的羧酸基结合更紧密。zeta电位和流体动力半径受聚合物在高温下暴露时间的影响较大。较高的盐度降低了聚合物的拉伸效果,进而降低了zeta电位和流体动力半径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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