Lazaro Ruiz-Virgen, Miguel Angel Hernández-Martínez, Gabriela Martínez-Mejía, Rubén Caro-Briones, José Manuel del Río, Mónica Corea
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引用次数: 0
摘要
摘要 利用乳液聚合技术合成了不同形态的 pH 和热敏聚合物纳米粒子。通过重量测量技术、动态光散射(DLS)、电泳、傅立叶变换红外光谱(FT-IR)、扫描电子显微镜(SEM)和 X 射线衍射(XRD)对材料进行了表征。比容热力学性质是通过密度(ρ)和声速(u)的测量计算得出的,它们受聚合物颗粒中官能团的比例和位置以及温度的影响。流变特性也进行了测量,观察到聚合物材料具有非牛顿和假塑性行为,因为它们的粘度值随着剪切速率的升高而降低((\left(\dot{\gamma }\right))。此外,为了试图阐明这些材料与油藏中的方解石岩可能发生的行为,还用 CaCl2 处理了这些材料,并观察了平均粒径、胶体稳定性和聚合物链构象的变化。结果表明,合成的聚合物颗粒可用作与石油工业方解石中的钙离子(Ca2+)相互作用的剂量剂。
Study of Thermodynamic and Rheological Properties of Sensitive Polymeric Nanoparticles as a Possible Application in the Oil Industry
pH and thermo-sensitive polymeric nanoparticles with different morphology were synthesized by means of emulsion polymerization techniques. The materials were characterized by gravimetric techniques, dynamic light scattering (DLS), electrophoresis, Fourier transform infrared spectroscopy (FT-IR), scanning electron microscopy (SEM) and X-Ray diffraction (XRD). The specific volumetric thermodynamic properties were calculated from density (ρ) and sound velocity (u) measurement and they are influenced by the proportions and location of the functional groups in the polymeric particles and the temperature. Rheological properties were also measured, observing that polymeric materials were a non-Newtonian and pseudo-plastic behavior because of they have a decrease in viscosity \(\left(\eta \right)\) values as the shear rate rises \(\left(\dot{\gamma }\right)\). In addition, to try to elucidate the behavior that the materials could have with calcite rock in the oil reservoirs, the materials were treated with CaCl2, and changes in the average particle size, colloidal stability and conformation of polymeric chains were observed. The obtained results show that the synthesized polymeric particles could be applied as a possible dosing agent in the interaction with calcium ions (Ca2+) in the calcite rock for petrol industry.
期刊介绍:
Journal of Solution Chemistry offers a forum for research on the physical chemistry of liquid solutions in such fields as physical chemistry, chemical physics, molecular biology, statistical mechanics, biochemistry, and biophysics. The emphasis is on papers in which the solvent plays a dominant rather than incidental role. Featured topics include experimental investigations of the dielectric, spectroscopic, thermodynamic, transport, or relaxation properties of both electrolytes and nonelectrolytes in liquid solutions.