首页> 外文期刊>Journal of Petroleum Science & Engineering >Shale inhibitive properties of polyether diamine in water-based drilling fluid NHanyi ZhongDSchool of Petroleum Engineering, China University of Petroleum, Qingdao, 266555, China
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Shale inhibitive properties of polyether diamine in water-based drilling fluid NHanyi ZhongDSchool of Petroleum Engineering, China University of Petroleum, Qingdao, 266555, China

机译:聚醚二胺在水基钻井液中的页岩抑制性能N Hanyi D 中国石油大学石油工程学院,青岛266555

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摘要

In this paper, the shale hydration inhibitive properties of polyether diamine (PEDA) in drilling fluid system were studied. The inhibition was evaluated by bentonite inhibition test and bulk hardness test. The results indicate that the inhibition properties of PEDA are superior to potassium chloride which is a kind of conventional inhibitor, and can be improved with decrease of pH value. The inhibition mechanism of PEDA was investigated via Fourier transform infrared spectroscopy. X-ray diffraction, zeta potential measurement and surface tension analysis. After being added into the drilling fluid system, the low-molecular-weight PEDA can intercalate into the lattice of clay. The protonated diammonium ions exchange sodium ions and neutralize the negative charges of clay interlayer, which reduces hydration repulsion of diffuse electric double layer. Moreover, hydrogen bonding between PEDA and silica of clay surface can form in the process. The coordination of electrostatic interaction and hydrogen bonding expels water molecules out of the clay gallery and binds the plates together, which leads to the dehydration of clay. Otherwise, monolayer adsorption of PEDA on the interlayer of clay weakens the hydrophilicity of clay particles which further inhibits water ingress.
机译:本文研究了聚醚二胺(PEDA)在钻井液体系中的页岩水化抑制性能。通过膨润土抑制试验和堆积硬度试验评价该抑制作用。结果表明,PEDA的抑制性能优于氯化钾,后者是一种常规抑制剂,可随着pH值的降低而提高。通过傅里叶变换红外光谱研究了PEDA的抑制机理。 X射线衍射,ζ电位测量和表面张力分析。添加到钻井液系统中后,低分子量PEDA可以插入到粘土晶格中。质子化的二铵离子交换钠离子并中和粘土夹层的负电荷,从而降低了扩散双电层的水合排斥力。而且,在该过程中,PEDA和粘土表面的二氧化硅之间可以形成氢键。静电相互作用和氢键的配合将水分子从粘土通道中排出,并将板结合在一起,从而导致粘土脱水。否则,PEDA在粘土夹层上的单层吸附会削弱粘土颗粒的亲水性,从而进一步抑制水分的进入。

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