Journal of Petroleum Science & Engineering2022,Vol.21210.DOI:10.1016/j.petrol.2022.110204

Multi-alkylated aromatic amides amphiphiles effectively stabilize the associated asphaltene particles in crude oil

Yang, Fei Duan, Ze Liu, Daiwei Li, Chuanxian Sun, Guangyu Zhang, Hao Yao, Bo
Journal of Petroleum Science & Engineering2022,Vol.21210.DOI:10.1016/j.petrol.2022.110204

Multi-alkylated aromatic amides amphiphiles effectively stabilize the associated asphaltene particles in crude oil

Yang, Fei 1Duan, Ze 1Liu, Daiwei 1Li, Chuanxian 1Sun, Guangyu 1Zhang, Hao 1Yao, Bo1
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作者信息

  • 1. China Univ Petr East China
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Abstract

As an economic and efficient method, asphaltene dispersants are widely used to inhibit the precipitation of asphaltenes in the crude oil tank. In this study, a series of multi-alkylated aromatic amides (MAA) amphiphiles containing benzene rings and a different number of alkyl side chains were synthesized and evaluated as asphaltene dispersants for the Saudi crude oil. After adding 500 ppm MAA-3, the initial flocculation point of the oil sample is significantly increased from 42.48% to 70.94%, the size of asphaltene aggregates is reduced from 3.99 +/- 0.2 mu m to 1.45 +/- 0.2 mu m, and the viscosity of the oil sample has increased by 21.77%. The influence of the number of alkyl side chains on the performance of asphaltene dispersants was also studied. The result shows that increasing the number of the alkyl side chain is beneficial to improve the performance of dispersant, and the MAA has the best performance of dispersing asphaltenes at the number of alkyl side chains of 3 (MAA-3). The molecular simulation (MS) further verified the experimental results from the perspective of interaction energy.

Key words

Multi-alkylated/Aromatic amides/Asphaltenes precipitation/Dispersive state/ALKYLBENZENE-DERIVED AMPHIPHILES/POLYISOBUTYLENE SUCCINIMIDES/PRECIPITATION/SURFACTANTS/SOLVENTS/RESINS/WETTABILITY/DEPOSITION/MORPHOLOGY/BEHAVIOR

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出版年

2022
Journal of Petroleum Science & Engineering

Journal of Petroleum Science & Engineering

ISSN:0920-4105
被引量6
参考文献量40
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