Influence of salt and temperature on the rheological and filtration properties of cellulose Nanofiber/bentonite water-based drilling fluids

Muhammad Arqam Khan , Kaihe Lv , Jinsheng Sun , Haokun Shen , Yaxuan Zhang , Abdullahi Ahmed Noor , Shaine Mohammadali Lalji , Chaozheng Liu , Mei-Chun Li
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Abstract

Water-based drilling fluids (WBDFs) are popular due to their lower cost and superior environmental friendliness. The high thermal stability, high aspect ratio, and fiber-like structure of cellulose nanofibers (CNFs) have made them viable candidates for rheology and filtration modification in bentonite WBDFs (BT-WBDFs), because they can produce high levels of hydration and entanglement when dispersed in water, even at very low concentrations under harsh drilling condition. However, the rheology and filtration performance of CNF/BT-WBDFs in high temperature and high saline conditions remains largely unexplored. Herein, the influence of high temperature and high salt content on the rheological and filtration properties of CNF/BT-WBDFs was investigated. Two types of CNFs, i.e., TEMPO-mediated oxidized CNFs (T-CNFs) and mechanically disintegrated CNFs (M-CNFs) were applied. It was observed that the M-CNFs exhibited more effectiveness in enhancing the rheological properties of BT-WBDFs, while T-CNFs demonstrated superior filtration-reducing properties of BT-WBDFs. M-CNFs often exhibit a highly branched and tangled network, resulting in superior rheological properties; whereas the presence of more negative charge on the surface of T-CNFs enhanced the electrostatic repulsion with bentonite particles, preventing bentonite from flocculating or aggregating, resulting in reduced fluid loss. Furthermore, the T-CNF/BT-WBDFs showed better resistance to salt contamination compared to hot rolling, whereas the M-CNF/BT-WBDFs demonstrated better defense against hot rolling than salt contamination. However, the addition of salt in combination with high-temperature hot rolling severely affected the rheological properties as well as the filtration-reducing capabilities of both T-CNF/BT- and M-CNF/BT-WBDFs. The study highlighted the importance of CNF types on the rheological and filtration properties of WBDFs under high temperature and saline conditions, providing valuable insights for the potential application of CNFs in temperature-resistant and salt-tolerant drilling fluids.
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盐和温度对纤维素纳米纤维/膨润土水基钻井液流变和过滤特性的影响
水基钻井液(WBDF)因其较低的成本和优越的环境友好性而广受欢迎。纤维素纳米纤维(CNFs)具有高热稳定性、高纵横比和纤维状结构,这使其成为膨润土水基钻井液(BT-WBDFs)流变和过滤改性的可行候选材料,因为即使在苛刻的钻井条件下浓度很低,它们分散在水中时也能产生高水平的水合和缠结。然而,CNF/BT-WBDFs 在高温和高盐度条件下的流变性和过滤性能在很大程度上仍未得到研究。本文研究了高温和高含盐量对 CNF/BT-WBDFs 流变和过滤性能的影响。应用了两种类型的 CNF,即 TEMPO 介导的氧化 CNF(T-CNF)和机械分解 CNF(M-CNF)。结果表明,M-CNFs 在增强 BT-WBDFs 流变特性方面更有效,而 T-CNFs 则在减少 BT-WBDFs 过滤方面表现优异。M-CNF 通常表现为高度支化和缠结的网络,因此流变性能优异;而 T-CNF 表面存在更多的负电荷,增强了与膨润土颗粒的静电斥力,防止膨润土絮凝或聚集,从而减少了流体损失。此外,与热轧相比,T-CNF/BT-WBDF 显示出更好的抗盐污染能力,而 M-CNF/BT-WBDF 则显示出比盐污染更好的抗热轧能力。然而,在高温热轧过程中添加盐会严重影响 T-CNF/BT 和 M-CNF/BT-WBDF 的流变特性和降滤能力。该研究强调了 CNF 类型对高温和含盐条件下 WBDF 的流变和过滤性能的重要影响,为 CNF 在耐温耐盐钻井液中的潜在应用提供了宝贵的启示。
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