Co-adsorption behaviors of asphaltenes and different flow improvers and their impacts on the interfacial viscoelasticity
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Co-adsorption behaviors of asphaltenes and different flow improvers and their impacts on the interfacial viscoelasticity
Chinese Journal of Chemical EngineeringVol. 48, Issue 8, Pages: 149-157(2022)
Affiliations:
1. College of Pipeline and Civil Engineering, China University of Petroleum (East China),Qingdao,China,266580
2. School of Petroleum Engineering, Guangdong University of Petrochemical Technology,Maoming,China,525000
3. Shandong Key Laboratory of Oil & Gas Storage and Transportation Safety,Qingdao,China,266580
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Published:2022
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Hao Zhang, Daiwei Liu, Jiangbo Wen, Guangyu Sun, Chuanxian Li, Xinya Chen, Huihui Zhang, Ze Duan. Co-adsorption behaviors of asphaltenes and different flow improvers and their impacts on the interfacial viscoelasticity[J]. Chinese Journal of Chemical Engineering, 2022, 48(8): 149-157.
DOI:
Hao Zhang, Daiwei Liu, Jiangbo Wen, Guangyu Sun, Chuanxian Li, Xinya Chen, Huihui Zhang, Ze Duan. Co-adsorption behaviors of asphaltenes and different flow improvers and their impacts on the interfacial viscoelasticity[J]. Chinese Journal of Chemical Engineering, 2022, 48(8): 149-157.DOI:
Co-adsorption behaviors of asphaltenes and different flow improvers and their impacts on the interfacial viscoelasticity
and polymethylsilsesquioxane (PMSQ) are proven to be effective to enhance the flowability of crude oil. However
the addition of these flow improvers may change the stability of the emulsion and make the crude oil treatment process challenging. In this research
the impacts of different flow improvers on the interfacial properties of the emulsions containing asphaltenes are systematically investigated. The co-adsorption behaviors of the flow improvers and asphaltenes are analyzed through dynamic interfacial tension (DIFT). The rheological properties of the interfacial layer after the adsorption are explored
via
dilational viscoelasticity. Significant difference is observed in the structural properties of the interface adsorbed by different flow improvers
which is attributed to different interactions between the flow improvers and asphaltenes. To investigate these interactions
conductivity
asphaltenes precipitation
dynamic light scattering (DLS)
and contact angle experiments are conducted systematically. Results show that EVA and POA can alter the interfacial properties by changing the asphaltene dispersion state. The interaction between EVA and asphaltenes is stronger than that between POA and asphaltenes due to the difference in molecular structures. Unlike EVA and POA
the change of interfacial property with the addition of PMSQ
is attributed to the partial adsorption of asphaltenes on PMSQ.
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