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内部研发的亲一氧化碳阴离子表面活性剂的吸附行为

Adsorption behavior of in-house developed CO-philic anionic surfactants.

作者信息

Talebian SeyedehHosna, Sagir Muhammad

机构信息

Department of Chemical and Petroleum Engineering, Faculty of Engineering, Ilam University, Ilam province, Iran.

Institute of Chemical and Environment Engineering, Khwaja Fareed University of Engineering and InformationTechnology, Rahim yar khan, Pakistan.

出版信息

Sci Rep. 2024 Oct 18;14(1):24500. doi: 10.1038/s41598-024-76496-6.

Abstract

Incorporating CO-philic functionalities into surfactant structure is proposed to address the drawbacks of conventional foaming agents such as premature rupture of lamellae in contact with oil, surfactant loss due to adsorption on rock or partitioning between oil and water, and salinity and temperature tolerance issues. Increased activity at the gas/water interface and less surfactant adsorption to the rock due to the presence of CO-philic chains results in higher foam durability in the presence of oil. In the present paper, a comprehensive study on the adsorption of anionic CO-philic surfactants onto sandstone rock surface is performed to understand adsorption mechanisms through the addition of CO-philic tail groups in surfactant structure by observing the changes in concentration, static adsorption, and point of zero charge measurements. The static adsorption tests, Fourier Transform Infrared, and the X-ray Photoelectron Spectroscopy techniques were employed to investigate the interaction of surfactants with crushed Berea sandstone core sample at 90 °C. The static adsorption values of the S (single-tail), D (double-tail), and T (triple-tail) anionic surfactants were reported to be 0.53, 0.40, and 0.6 mg /g, respectively. The effect of alkali on the adsorption process of surfactants was also investigated and the adsorption of synthesized surfactants was found significantly low in alkaline conditions. A variety of analyses, including model fitting along with kinetics and thermodynamics studies at 30, 40, and 50 °C were performed to predict the adsorption behavior. The adsorption isotherm was found to best fit in Langmuir model. The process showed the best fit in the pseudo-second-order reaction kinetics model. The spontaneity of the adsorption process was verified by thermodynamic feasibility studies of the process.

摘要

有人提出将亲CO官能团引入表面活性剂结构,以解决传统发泡剂的缺点,如与油接触时薄片过早破裂、由于吸附在岩石上或在油和水之间分配导致的表面活性剂损失,以及耐盐性和耐温性问题。由于存在亲CO链,在气/水界面处活性增加,且表面活性剂对岩石的吸附减少,从而在有油存在的情况下具有更高的泡沫耐久性。在本文中,对阴离子亲CO表面活性剂在砂岩岩石表面的吸附进行了全面研究,通过观察浓度、静态吸附和零电荷点测量的变化,了解通过在表面活性剂结构中添加亲CO尾基的吸附机制。采用静态吸附试验、傅里叶变换红外光谱和X射线光电子能谱技术,研究了90℃下表面活性剂与破碎的Berea砂岩岩心样品之间的相互作用。据报道,单尾(S)、双尾(D)和三尾(T)阴离子表面活性剂的静态吸附量分别为0.53、0.40和0.6mg/g。还研究了碱对表面活性剂吸附过程的影响,发现合成表面活性剂在碱性条件下的吸附量极低。进行了各种分析,包括在30、40和50℃下的模型拟合以及动力学和热力学研究,以预测吸附行为。发现吸附等温线最符合朗缪尔模型。该过程最符合拟二级反应动力学模型。通过该过程的热力学可行性研究验证了吸附过程的自发性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a71/11489688/4ada2d9be298/41598_2024_76496_Fig1_HTML.jpg

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