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Retention and Release of Scale Inhibitor in Different Clay Minerals

机译:不同粘土矿物质中的抑制和释放

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Addition of scale inhibitor into the reservoir allowing its adsorption and or precipitation into the rock formation and subsequent release during production is one of the most common treatments used in oil field industries to avoid scale formation. Little is known however about the surface chemistry of scale inhibitor interaction with the various mineral phases present in subsea rock formations. This paper presents some recent work investigating these interactions with the spectroscopic techniques commonly employed in surface chemistry. Uptake of NTMP, a model scale inhibitor, by kaolin, halloysite and montmorillonite has been monitored by liquid phase ~(31)P NMR spectroscopy. ~(31)P NMR has also been used to follow the release of scale inhibitor during desorption experiments. The adsorbed inhibitor has been detected directly and quantified with X-ray photoelectron spectroscopy (XPS). XPS combined with argon ion etching has also been able to distinguish between inhibitor adsorbed onto the external surface of the clays and occluded into the interlayer spacing.
机译:向储层中添加抑制剂抑制剂,允许其吸附和或沉淀到岩层中,随后在生产过程中释放是油田工业中最常见的治疗方法之一,以避免规模地形成。然而,关于水垢抑制剂的表面化学与底层岩层中存在的各种矿物相的相互作用的表面化学。本文介绍了最近研究这些相互作用的一些工作,与表面化学中的常用光谱技术相互作用。通过液相〜(31)P NMR光谱监测了高效,霍氏素和蒙脱石,高岭土抑制剂,模型规模抑制剂的摄取。 〜(31)P NMR还用于在解吸实验期间遵循抑制抑制剂的释放。已直接检测到吸附抑制剂并用X射线光电子谱(XPS)定量。结合氩离离子蚀刻的XPS也能够区分吸附在粘土的外表面上并堵塞到层间间隔中。

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