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An environmental friendly and biodegradable shale inhibitor based on chitosan quaternary ammonium salt

机译:一种基于壳聚糖季铵盐的环保型可生物降解的页岩抑制剂

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In this paper, the inhibition of chitosan quaternary ammonium salt (HTCC) in the drilling fluid was studied. The inhibition was evaluated by linear swelling test, mud making test and rolling recovery. The results indicated that the inhibition of HTCC was better than polyether amino, which be used widely in the oil flied as the excellent shale inhibitor. Especially HTCC is an environmental friendly and biodegradable. The inhibition mechanism of HTCC was investigated by Fourier transform infrared spectroscopy, X-ray diffraction, Scanning electron microscopy, Zeta potential, Gel strength measurement analysis. The negative charge in the surface of montmorillonite (MMT) was neutralized by the positive charge. HTCC was absorbed and coated in the surface and intercalated in the interlayer of MMT, which reduced the hydration repulsion of diffuse electric double layer and leaded to the inhibiting hydration of clay. Hydrogen bonding between hydroxyl, amino groups in the HTCC and the surface of clay can be formed in the process. The coordination of electrostatic interaction and hydrogen bonding prevented the water molecules from the gallery of clay, which resulted from the absorption and intercalation of HTCC in the surface and interlayer of MMT. The high molecular weight of HTCC was coated in the surface of MMT, which further expelled the hydration swelling of clay. It kept the high inhibition even if the ether bond hydrolysis partly in high temperature, comparing to polyether amino which the inhibition be reduced. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文研究了壳聚糖季铵盐(HTCC)在钻井液中的抑制作用。通过线性溶胀试验,制泥试验和轧制回复率来评价抑制率。结果表明,对HTCC的抑制作用优于聚醚氨基,聚醚氨基被广泛用作油页岩抑制剂中。 HTCC特别是一种环境友好且可生物降解的产品。通过傅里叶变换红外光谱,X射线衍射,扫描电镜,Zeta电位,凝胶强度测量分析等方法研究了HTCC的抑制机理。蒙脱石(MMT)表面的负电荷被正电荷中和。 HTCC被吸收并包覆在表面,并插入MMT的中间层中,从而降低了扩散双电层的水合排斥力,从而抑制了粘土的水合作用。在该过程中,可以形成羟基,HTCC中的氨基与粘土表面之间的氢键。静电相互作用和氢键的配合阻止了水分子进入粘土通道,这是由于HTCC在MMT的表面和夹层中的吸收和嵌入所致。高分子量的HTCC被涂在MMT的表面,进一步驱赶了粘土的水合溶胀。与聚醚氨基相比,即使在高温下醚键部分水解,它也能保持较高的抑制率。 (C)2015 Elsevier B.V.保留所有权利。

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