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一种用作水基钻井液高性能页岩稳定剂的聚合物微球乳液。

A polymer microsphere emulsion as a high-performance shale stabilizer for water-based drilling fluids.

作者信息

Xu Jian-Gen, Qiu Zhengsong, Zhao Xin, Mou Tingbo, Zhong Hanyi, Huang Weian

机构信息

School of Petroleum Engineering, China University of Petroleum (East China) Qingdao 266580 Shandong P. R. China

出版信息

RSC Adv. 2018 Jun 7;8(37):20852-20861. doi: 10.1039/c8ra03492c. eCollection 2018 Jun 5.

Abstract

Interest in using nanomaterials to improve shale stability during drilling operations has been increasing. Herein, a polymer microsphere emulsion (PME) as a high-performance shale stabilizer for water-based drilling fluids (WDFs) was prepared emulsion polymerization. The particle sizes in PME in aqueous solution ranged from 90 to 320 nm. PME was found to exhibit excellent salt tolerance and temperature resistance. The plugging performance of PME was tested through pressure transmission tests. The results indicated that the polymer microspheres in PME could effectively plug shale pores and reduce shale permeability. In addition, rolling recovery tests were used to evaluate the shale hydration inhibition performance of PME. It was found that PME showed great performance for decreasing shale hydration potential. These factors make PME a promising shale stabilizer for WDFs used to drill shale formations.

摘要

在钻井作业期间,利用纳米材料改善页岩稳定性的兴趣一直在增加。在此,通过乳液聚合制备了一种聚合物微球乳液(PME)作为水基钻井液(WDF)的高性能页岩稳定剂。PME在水溶液中的粒径范围为90至320纳米。发现PME具有优异的耐盐性和耐热性。通过压力传递试验测试了PME的封堵性能。结果表明,PME中的聚合物微球可以有效地封堵页岩孔隙并降低页岩渗透率。此外,采用滚动回收率试验来评估PME对页岩水化的抑制性能。发现PME在降低页岩水化潜力方面表现出色。这些因素使得PME成为用于钻探页岩地层的水基钻井液的一种有前景的页岩稳定剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9aed/9080944/43ed7ccc7cb8/c8ra03492c-f1.jpg

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