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Partially hydrophobized hyperbranched polyglycerols as non-ionic reactive shale inhibitors for water-based drilling fluids

机译:部分疏水化的超支化聚甘油作为水性钻井液的非离子型活性页岩抑制剂

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The oil and gas industry demands drilling fluids that would be able to minimize the wellbore instability faced during the drilling of reactive shales. In this work we describe the synthesis of hydrophobized hyperbranched polyglycerols (HPG) with unique design and properties to be used as non-ionic reactive shale inhibitors. In association with KCI, HPG showed a superior performance in comparison with unmodified hyperbranched polyglycerol and with the commercial day reactivity inhibitors PEG400 and PDADMAC. Intact cuttings recoveries were around 80%. The proposed inhibition mechanism suggests the formation of a complex between HPGs and K+ ions and its penetration into the clay interlayer spacing to minimize the shale-water interactions and remove water molecules present in the clay galleries. In addition, these aggregates formed by the amphiphilic structures would cause obstruction of the clay minerals pore throats, thereby making it even more difficult for the penetration of water molecules. (C) 2016 Elsevier B.V. All rights reserved.
机译:石油和天然气工业需要钻井液,这些钻井液必须能够最大程度地减少反应性页岩钻井过程中面临的井筒不稳定性。在这项工作中,我们描述了具有独特设计和性能的疏水化超支化聚甘油(HPG)的合成,可用作非离子活性页岩抑制剂。与未改性的超支化聚甘油以及商业日反应性抑制剂PEG400和PDADMAC相比,HPG与KCI结合表现出优异的性能。完整的插条回收率约为80%。拟议的抑制机制表明,HPG和K +离子之间会形成络合物,并渗透到粘土夹层空间中,从而使页岩水相互作用最小化,并去除粘土画廊中存在的水分子。此外,由两亲结构形成的这些聚集体将导致粘土矿物的孔喉阻塞,从而使水分子的渗透更加困难。 (C)2016 Elsevier B.V.保留所有权利。

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