Probing the interactions between asphaltenes and a PEO-PPO demulsifier at oil-water interface: Effect of temperature

被引:1
作者
Huang, Yueying [2 ]
Mao, Xiaohui [1 ]
Yang, Diling [2 ]
Qiao, Chenyu [2 ]
Zhang, Ling [2 ,3 ]
Wang, Jingyi [2 ,4 ]
Zhang, Hao [2 ]
Zeng, Hongbo [2 ]
机构
[1] Donghua Univ, Coll Mat Sci & Engn, Shanghai 201620, Peoples R China
[2] Univ Alberta, Dept Chem & Mat Engn, Edmonton, AB T6G 1H9, Canada
[3] Zhengzhou Univ, Sch Chem Engn, Zhengzhou 450001, Peoples R China
[4] Southwest Petr Univ, Coll Chem & Chem Engn, Chengdu 610500, Sichuan, Peoples R China
基金
加拿大创新基金会; 加拿大自然科学与工程研究理事会;
关键词
Asphaltenes-stabilized emulsion; PEO-PPO copolymer; Temperature effect; Interfacial behaviors; Surface forces; DYNAMIC SURFACE-TENSION; CRUDE-OIL; ADSORPTION-KINETICS; INTERACTION MECHANISM; NONIONIC SURFACTANTS; ENERGY-DISSIPATION; LANGMUIR FILMS; BEHAVIOR; EMULSIONS; STABILITY;
D O I
10.1016/j.jcis.2024.09.101
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Hypothesis: Asphaltenes are primary stabilizers in water-in-oil (W/O) emulsions that cause corrosion and fouling issues. In oil sands industry, oil/water separation processes are generally conducted at high temperatures. A high temperature is expected to impact the interactions between asphaltenes and emulsion breakers (EBs), consequently influencing demulsification performance. Experiments: The adsorption and interactions of asphaltenes and a PEO-PPO type EB (Pluronic F68) at the oil-water interface were investigated at various temperatures, using tensiometer, quartz crystal microbalance with energy dissipation (QCM-D), and atomic force microscopy (AFM). The effect of temperature on EB's demulsification performance was explored through bottle tests. Additionally, demulsification mechanisms were studied using direct force measurements with the droplet probe AFM technique. Findings: Dynamic interfacial tension and QCM-D results demonstrate that the PEO-PPO type EB exhibits higher interfacial activity than asphaltenes and can disrupt rigid asphaltene films at the oil-water interfaces. Elevated temperatures accelerate the displacement of adsorbed asphaltenes by EB molecules, leading to sparse interfacial films, rapid droplet coalescence, and improved demulsification efficiency (supported by AFM and bottle test results). This work provides valuable insights into interfacial interactions between asphaltenes and EB at different temperatures, enhancing the understanding of demulsification mechanisms and offering useful implications for the development of efficient EBs to enhance oil/water separation performance.
引用
收藏
页码:1096 / 1111
页数:16
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