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Biodegradable polyethylene glycol-based ionic liquids for effective inhibition of shale hydration

机译:可生物降解的基于聚乙二醇的离子液体,可有效抑制页岩水化

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摘要

A series of ionic liquids based on polyethylene glycol (PEG) with different molecular weights were prepared for inhibiting shale hydration and swelling. The antiswelling ratio was measured to investigate the effect of different PEG-based ionic liquids on bentonite volume expansion, and it has shown that the ionic liquid based PEG200, i.e. PEG with molecular weight of 200, exhibited superior inhibition. The structures of the PEG200-based ionic liquids were characterized by H-1 NMR studies. The XRD results indicated that the PEG200-based ionic liquids intercalated into sodium montmorillonite (Na-MMT) reducing the water uptake by the clay. The formation of complexes of Na-MMT and PEG200-based ionic liquids was also verified by FTIR spectroscopy. Thermal degradation analysis suggested that the PEG200-based ionic liquids accessed the interlamellar spaces of Na-MMT and reduced the water content of the complexes obtained. Moreover, no breaks and collapse were observed on the shale samples after immersion in PEG200-based ionic liquid solutions. All the PEG200-based ionic liquids showed biodegradability and potential application in effective inhibition for clay hydration.
机译:制备了一系列不同分子量的基于聚乙二醇(PEG)的离子液体,以抑制页岩的水合作用和溶胀。测量了抗溶胀率以研究不同的基于PEG的离子液体对膨润土体积膨胀的影响,并且已经表明基于离子液体的PEG200,即分子量为200的PEG,表现出优异的抑制作用。通过H-1 NMR研究表征了基于PEG200的离子液体的结构。 XRD结果表明,基于PEG200的离子液体嵌入到蒙脱酸钠(Na-MMT)中,减少了粘土对水的吸收。 Na-MMT和基于PEG200的离子液体的复合物的形成也通过FTIR光谱进行了验证。热降解分析表明,基于PEG200的离子液体进入Na-MMT的层间空间,并降低了所得配合物的水含量。而且,在浸入基于PEG200的离子液体溶液中之后,在页岩样品上没有观察到破裂和塌陷。所有基于PEG200的离子液体均显示出可生物降解性,并且在有效抑制粘土水合作用方面具有潜在的应用前景。

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