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Updated: Aug 6, 2026

Studying Surfactant Effects on Hydrate Crystallization at Oil-Water Interfaces Using a Low-Cost Integrated Modular Peltier Device
Published on: March 18, 2020
Effect of hydrophobic and hydrophilic groups on physicochemical properties of nonionic gemini surfactants for
Muhammad Israr1, Masooma Nazar1, Ahmad Mahboob1
1Center for Integrative Petroleum Research, College of Petroleum Engineering and Geosciences, King Fahd University of Petroleum and Minerals, 31261, Dhahran, Saudi Arabia.
Abstract:
In recent years, the continuous surge in developing stable surfactants capable of withstanding harsh reservoir conditions has attracted considerable attention for enhanced oil recovery (EOR) applications. In this context, four new nonionic gemini surfactants (NGS-1, NGS-2, NGS-3, and NGS-4) with different tail groups and different ethoxy units were synthesized. The surfactants were prepared using various alkyl ethoxylated alcohols as tails and α,α'-dibromo-p-xylene as the spacer, and their structures were confirmed by NMR and FTIR. The thermal stability was evaluated using a thermal gravimetric analyzer (TGA), while solubility tests were performed in deionized water and saline water. Furthermore, surface properties, such as critical micelle concentration (CMC), surface tension at CMC (γCMC), maximum surface excess (Гmax), and minimum area per molecule (Amin), Gibbs free energy of micellization ([Formula: see text] and Gibbs free energy of adsorptions ([Formula: see text] were determined. The results showed that most synthesized surfactants displayed excellent solubility, except for NGS-3, which contained fewer number of ethoxy units. However, the incorporation of some additional ethoxy units in the surfactant structure (NGS-4) improved solubility under saline conditions. TGA thermograms demonstrated that the thermal decomposition temperatures of all surfactants were above the reservoir temperature (90 °C). The CMC results indicated that surfactants with long linear alkyl chains exhibited lower CMC values compared to those with branched alkyl chains. These results revealed the impact of the chemical structures of these surfactants in achieving the desired characteristics for the oilfield application in harsh conditions.
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