Preparation, Characterization, and Performance of a Modified Polyacrylamide-Sericite Gel

Author:

Jin Haibo123ORCID,Wang Xu34,Yang Haizhong5,He Guangxiang34,Li Xiaogang34,Guo Xiaoyan34ORCID,Li Lizhu34

Affiliation:

1. State Key Laboratory of Shale Oil and Gas Enrichment Mechanisms and Effective Development, SINOPEC Research Institute of Petroleum Engineering, Beijing 102206, China

2. Institute of Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 102206, China

3. Beijing Institute of Petrochemical Technology, College of New Materials and Chemical Engineering, Beijing 102617, China

4. Beijing Key Laboratory of Fuels Cleaning and Advanced Catalytic Emission Reduction Technology, Beijing 102617, China

5. Sinopec Shengli Oil Field Gudong Oil Production Plant, Dongying 257237, China

Abstract

In this study, a modified chemical plugging agent is prepared with the aim to reduce the well moisture content and improve the efficiency of oilfield development. In comparison to other chemical plugging agents, the composite gels plugging agents have excellent blocking capacity and erosion resistance. In this study, optimal conditions for the preparation of plugging agents were explored. The results showed that the performance of polyacrylamide-sericite (PAM-sericite) gel improved at a polymerization temperature of 60 °C, a crosslinker concentration of 0.5%, an initiator concentration of 0.75%, an acrylamide concentration of 10.0%, and a sericite concentration of 10.0%. The characterization of PAM-sericite gel showed a certain fold-like shape with a smoother surface, indicating that the doped sericite makes the plugging agent more compact and firm. It was also found that the blocking ratio of the plugging agent can potentially reach 99.5% after the addition of sericite. Moreover, failure stress of the skeleton structure and the water swelling degree were increased by 63.5% and 51.2%, respectively. Additionally, long-term stability, temperature resistance, pressure resistance and pressure stability also showed improvement to varying degrees. It was concluded that this gel has better stability against different kinds of salt solutions and is not affected by particle size.

Funder

Opening foundation of State Key Laboratory of Shale Oil and Gas Enrichment Mechanisms and Effective Development

Undergraduates Research Training Program

Publisher

MDPI AG

Subject

General Materials Science

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