深共晶溶剂改性石墨烯作为水基钻井液的润滑剂

Fengbao Liu, Jinsheng Sun, Zhilei Zhang, Yuan Geng, Xinyu Zhou, Wen Yue, Yuxiu An
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引用次数: 0

摘要

摘要深、超深钻井技术的发展是开发超深油气田的关键。随着超深井数量的增加,部分超深井井底温度接近250℃。高温高压环境会影响钻井仪器的稳定性和寿命,也会影响钻井液的密度、流变性和稳定性,使井筒稳定性难以保持。大扭矩、高摩擦等问题影响井下钻井的安全性和钻井效率。在钻井液中加入润滑剂是一种有效的方法。本研究以氯化胆碱(ChCl)和聚乙二醇(PEG)为原料合成深度共晶溶剂(DES),并将DES与石墨烯(G)复合制备环保型水基钻井液润滑剂DES/G,通过红外光谱、粒度分析和电镜测试对润滑剂结构进行表征。同时,通过极压润滑试验机和摩擦磨损试验机对润滑油的使用效果进行了评价,并对滤饼的附着系数进行了测试。在低于200°C的温度下,DES/G显著提高了钻井液和滤饼的润滑性能。附着系数控制在0.1以内,还原率超过30%。随着润滑剂用量的增加,DES/G始终保持较低的粘附系数值,分别为0.03803 ~ 0.06253(180℃)和0.0414 ~ 0.07337(200℃)。此外,它还表现出较高的还原率,最高可达64%。该润滑剂通过吸附在金属表面形成强润滑涂层,将钻具之间的滑动摩擦转化为滚动摩擦,从而提高润滑性能。感谢中国石油天然气股份有限公司科技开发项目(2022ZG06)、国家自然科学基金(52274011)、高温高压油气安全高效钻完井工程基础理论与方法(U19B6003-05)的资助。披露声明作者未报告潜在的利益冲突。本研究得到国家自然科学基金资助[52274011];中国石油天然气集团公司科技开发项目[2022ZG06]。
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Deep eutectic solvent modified graphene as a lubricant for water-based drilling fluid
ABSTRACTDeep and ultra-deep drilling technology development is critical to the exploitation of ultra-deep oil and gas deposits. As the number of ultra-deep wells increases, the bottom hole temperature of certain ultra-deep wells approaches 250°C. The high-temperature and high-pressure environment can influence the stability and longevity of drilling instruments, as well as the density, rheology, and stability of drilling fluid, making wellbore stability difficult to maintain. Problems such as high torque and high friction affect the safety of downhole drilling and drilling efficiency. Adding lubricant to drilling fluid is an effective way. In this study, choline chloride (ChCl) and polyethylene glycol (PEG) were used to synthesize a deep eutectic solvent (DES), and an environmentally friendly water-based drilling fluid lubricant DES/G was prepared by compounding the DES with graphene (G). Infrared spectrum, particle size analysis, and electron microscope tests were used to characterize the structure of the lubricant. At the same time, the effect of lubricant was evaluated by extreme pressure lubricity tester and friction and wear tester, and the adhesion coefficient of filter cake was tested. At temperatures below 200°C, DES/G demonstrated a significant enhancement in the lubricating properties of drilling fluids and filter cakes. The adhesion coefficient was controlled within 0.1, and the reduction rate was exceeding 30%. With increasing dosage of the lubricant, DES/G consistently maintained a low adhesion coefficient value of 0.03803 to 0.06253 (at 180°C) and 0.0414 to 0.07337 (at 200°C). Furthermore, it exhibited higher values of reduction rate, reaching a maximum of 64%. The lubricant can increase lubricating performance by adsorbing on the metal surface to generate a strong lubricating coating and converting the sliding friction between drilling tools to rolling friction.KEYWORDS: Deep eutectic solventgraphenelubricantdrilling fluidcholine chloride AcknowledgementsWe would like to thank the Financial Support of Scientific Research and Technology Development Projects of China National Petroleum Corporation Limited (2022ZG06) and the National Natural Science Foundation of China (52274011) and basic theory and method of safe and efficient drilling and completion engineering in high-temperature and high-pressure oil gas (U19B6003-05) for this work.Disclosure statementNo potential conflict of interest was reported by the author(s).Additional informationFundingThe work was supported by the National Natural Science Foundation of China [52274011]; Scientific research and technology development projects of China National Petroleum Corporation Limited [2022ZG06].
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