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A novel graphene/triolein complex-based lubricant for improving high temperature water-based drilling fluid

Drilling engineering plays a pivotal role in the exploration and extraction of subsurface resources. It heavily depends on drilling fluid, which serves various essential functions including cooling the drill bit, removing drilled cuttings, maintaining formation pressure equilibrium, stabilizing the...

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Detalles Bibliográficos
Autores principales: Geng, Yuan, Zhang, Zhilei, Yan, Zhiyuan, Yuan, Yuehui, Zhou, Xinyu, Yue, Wen, An, Yuxiu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10685091/
https://www.ncbi.nlm.nih.gov/pubmed/38035226
http://dx.doi.org/10.1039/d3ra04850k
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author Geng, Yuan
Zhang, Zhilei
Yan, Zhiyuan
Yuan, Yuehui
Zhou, Xinyu
Yue, Wen
An, Yuxiu
author_facet Geng, Yuan
Zhang, Zhilei
Yan, Zhiyuan
Yuan, Yuehui
Zhou, Xinyu
Yue, Wen
An, Yuxiu
author_sort Geng, Yuan
collection PubMed
description Drilling engineering plays a pivotal role in the exploration and extraction of subsurface resources. It heavily depends on drilling fluid, which serves various essential functions including cooling the drill bit, removing drilled cuttings, maintaining formation pressure equilibrium, stabilizing the wellbore, transmitting hydraulic pressure, and safeguarding oil and gas reservoirs. Nonetheless, drilling fluid encounters multiple obstacles such as leakage control, waste fluid management, prevention of wellbore collapse, avoidance of hole enlargement, and environmental preservation. In order to surmount these challenges, the introduction of lubricants into the drilling fluid yields a multitude of advantages, encompassing equipment safeguarding, enhanced drilling efficiency, preservation of wellbore integrity, and bolstered drilling safety. These factors hold crucial significance in ensuring the triumph of drilling operations. This paper presents the introduction of a new lubricant derived from triolein. Following the preparation of graphene and triolein, they were incorporated into the drilling fluid system. A set of tests was subsequently conducted after aging at 240 °C for 16 hours. To assess the impact of the lubricant on the drilling fluid, an examination of rheological and filtration properties was conducted. Additionally, investigations into the friction coefficient, adhesion coefficient, and extreme pressure lubricity were carried out to evaluate the lubricating performance of the drilling fluid. Adding lubricants at a temperature of 240 degrees Celsius has successfully controlled the adhesion coefficient of the drilling fluid to below 0.2, reaching a minimum of 0.055, resulting in a reduction rate of over 70%. This indicates that the lubricant performs well at high temperatures, effectively reducing friction and enhancing drilling speed.
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spelling pubmed-106850912023-11-30 A novel graphene/triolein complex-based lubricant for improving high temperature water-based drilling fluid Geng, Yuan Zhang, Zhilei Yan, Zhiyuan Yuan, Yuehui Zhou, Xinyu Yue, Wen An, Yuxiu RSC Adv Chemistry Drilling engineering plays a pivotal role in the exploration and extraction of subsurface resources. It heavily depends on drilling fluid, which serves various essential functions including cooling the drill bit, removing drilled cuttings, maintaining formation pressure equilibrium, stabilizing the wellbore, transmitting hydraulic pressure, and safeguarding oil and gas reservoirs. Nonetheless, drilling fluid encounters multiple obstacles such as leakage control, waste fluid management, prevention of wellbore collapse, avoidance of hole enlargement, and environmental preservation. In order to surmount these challenges, the introduction of lubricants into the drilling fluid yields a multitude of advantages, encompassing equipment safeguarding, enhanced drilling efficiency, preservation of wellbore integrity, and bolstered drilling safety. These factors hold crucial significance in ensuring the triumph of drilling operations. This paper presents the introduction of a new lubricant derived from triolein. Following the preparation of graphene and triolein, they were incorporated into the drilling fluid system. A set of tests was subsequently conducted after aging at 240 °C for 16 hours. To assess the impact of the lubricant on the drilling fluid, an examination of rheological and filtration properties was conducted. Additionally, investigations into the friction coefficient, adhesion coefficient, and extreme pressure lubricity were carried out to evaluate the lubricating performance of the drilling fluid. Adding lubricants at a temperature of 240 degrees Celsius has successfully controlled the adhesion coefficient of the drilling fluid to below 0.2, reaching a minimum of 0.055, resulting in a reduction rate of over 70%. This indicates that the lubricant performs well at high temperatures, effectively reducing friction and enhancing drilling speed. The Royal Society of Chemistry 2023-11-29 /pmc/articles/PMC10685091/ /pubmed/38035226 http://dx.doi.org/10.1039/d3ra04850k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Geng, Yuan
Zhang, Zhilei
Yan, Zhiyuan
Yuan, Yuehui
Zhou, Xinyu
Yue, Wen
An, Yuxiu
A novel graphene/triolein complex-based lubricant for improving high temperature water-based drilling fluid
title A novel graphene/triolein complex-based lubricant for improving high temperature water-based drilling fluid
title_full A novel graphene/triolein complex-based lubricant for improving high temperature water-based drilling fluid
title_fullStr A novel graphene/triolein complex-based lubricant for improving high temperature water-based drilling fluid
title_full_unstemmed A novel graphene/triolein complex-based lubricant for improving high temperature water-based drilling fluid
title_short A novel graphene/triolein complex-based lubricant for improving high temperature water-based drilling fluid
title_sort novel graphene/triolein complex-based lubricant for improving high temperature water-based drilling fluid
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10685091/
https://www.ncbi.nlm.nih.gov/pubmed/38035226
http://dx.doi.org/10.1039/d3ra04850k
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