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Multiwalled Carbon Nanotubes and Graphene Oxide as nano-additives in Water-Based Drilling Fluid for Enhanced Fluid-Loss-Control Gel Strength

机译:多壁碳纳米管和石墨烯作为水性钻井液中的纳米添加剂,用于增强流体损失控制和凝胶强度

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Water-based drilling fluid (WBDF) with low permeability and tangible gel strength is highly preferable in drilling industry to have uninterrupted drilling operations. Hence, it is crucial to sustain certain rheological properties of WBDF such as viscosity, gel strength and fluid-loss. Recent studies have identified various nano-additives with the ability to enhance the specific rheological properties of WBDF. In this paper, the enhancement of fluid loss control and gel strength of WBDF were studied using various combination of nano-additives multiwalled carbon nanotubes (MWCNT) and graphene oxide (GO). The synthesized MWCNT improved the gel strength independently without enhancing the fluid loss control of WBDF as the result of its hydrophobic characteristics. GO impressively enhanced the fluid loss control of WBDF with or without the presence of MWCNT but does not contribute significantly in terms of gel strength.
机译:具有低渗透性和有形凝胶强度的水性钻井液(WBDF)在钻井工业中非常优选具有不间断的钻井操作。因此,维持WBDF的某种流变性质如粘度,凝胶强度和流体损失至关重要。最近的研究已经确定了各种纳米添加剂,具有增强WBDF的特异性流变性质的能力。在本文中,使用纳米添加剂多壁碳纳米管(MWCNT)和石墨烯(GO)的各种组合研究了WBDF的流体损失控制和凝胶强度的增强。合成的MWCNT独立地改善了凝胶强度,而不会随着其疏水特性而增强WBDF的流体损失控制。在没有MWCNT的情况下,令人印象深刻地增强了WBDF的流体损失控制,但在凝胶强度方面没有显着贡献。

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