Organosiloxane-Modified Auricularia Polysaccharide (Si-AP): Improved High-Temperature Resistance and Lubrication Performance in WBDFs

Author:

Zhang Fan1ORCID,Wang Yu1,Wang Bo2,Geng Yuan3,Chang Xiaofeng4,Zhang Wenzhe2,Li Yutong1,Zhang Wangyuan1

Affiliation:

1. School of Petroleum Engineering, Xi’an Shiyou University, Xi’an 257015, China

2. Shaanxi Yanchang Petroleum (Group) Co., Ltd., Xi’an 710069, China

3. CNPC Engineering Technology R&D Co., Ltd., Beijing 102206, China

4. Chuanqing Drilling Engineering Company Ltd., Xi’an 710018, China

Abstract

This study introduces a novel organosilicon-modified polysaccharide (Si-AP) synthesized via grafting and comprehensively evaluates its performance in water-based drilling fluids (WBDFs). The molecular structure of Si-AP was characterized using Fourier-transform infrared spectroscopy (FTIR) and 1H-NMR experiments. Thermalgravimetric analysis (TGA) confirmed the good thermal stability of Si-AP up to 235 °C. Si-AP significantly improves the rheological properties and fluid loss performance of WBDFs. With increasing Si-AP concentration, system viscosity increases, API filtration rate decreases, clay expansion is inhibited, and drilling cuttings hydration dispersion is suppressed, especially under high-temperature conditions. Additionally, mechanistic analysis indicates that the introduction of siloxane groups can effectively inhibit the thermal degradation of AP chains and enhance their high-temperature resistance. Si-AP can form a lubricating film by adsorbing on the surface of clay particles, improving mud cake quality, reducing the friction coefficient, and significantly enhancing the lubricating performance of WBDFs. Overall, Si-AP exhibits a higher temperature-resistance limit compared to AP and more effectively optimizes the lubrication, inhibition, and control of the filtration rate of WBDFs under high-temperature conditions. While meeting the requirements of drilling fluid systems under high temperatures, Si-AP also addresses environmental concerns and holds promise as an efficient solution for the exploitation of deep-seated oil and gas resources.

Funder

National Natural Science Foundation of China

Open Fund of the State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation

Graduate Innovation Fund Project of Xi’an Shiyou University

Publisher

MDPI AG

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