| Literature DB >> 35067878 |
Qiang Li1,2,3, Fuling Wang4, Kobina Forson5, Jinyan Zhang6, Chenglin Zhang6, Juan Chen6, Ning Xu7,8, Yanling Wang9,10.
Abstract
The fracturing property of liquid CO2 fracturing fluid varies greatly due to the rheology of fracturing fluid during fracturing process. The main objective of this investigation is to study the rheology property of thickened liquid CO2 by measuring the viscosity of thickened liquid CO2 in different physical parameters of this prepared thickener and explain the causes of rheological changes. The results show that thickener content, branching content, and molecular weight of a thickener for all could significantly improve the rheology of liquid CO2; the consistency coefficient K increased as they rose, but the rheological index n presented a decreased trend. Meanwhile, the mesh structure is proposed as a model to explain the rheological changes, and the large wetting angle means an excellent backflow, low reservoir damage, and low adsorption property. These results herein provide a basic reference to improve the CO2 fracturing technology and molecular design of CO2 thickener.Entities:
Keywords: Backflow property,Greenhouse effect; CO2 fracturing; Carbon utilization; Rheology property
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Year: 2022 PMID: 35067878 DOI: 10.1007/s11356-021-18169-9
Source DB: PubMed Journal: Environ Sci Pollut Res Int ISSN: 0944-1344 Impact factor: 4.223