首页> 外文期刊>Journal of Molecular Liquids >Assessing the impact of an ionic liquid on NaCl/KCl/polymer water-based mud (WBM) for drilling gas hydrate-bearing sediments
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Assessing the impact of an ionic liquid on NaCl/KCl/polymer water-based mud (WBM) for drilling gas hydrate-bearing sediments

机译:评估离子液体对NaCl / KCl /聚合物水基泥浆(WBM)的影响,用于钻井液轴承沉积物

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Herein, 1-methyl-3-octylimidazolium tetrafluoroborate (OMIM-BF4) was tested as a potential additive to enhance the rheological and hydrate inhibition properties of polymer water-based muds (WBMs) for drilling natural gas hydrate sediments. API standards were adopted for the mud testing with and without OMIM-BF4, while the hydrate study was conducted using a high-pressure reactor at 8 MPa and -2 degrees C. The presence of OMIM-BF4 efficiently improved the rheological properties of the PAC and XGUM based muds by decreasing their flow behavior index by 4.97% and 47.77% and increasing their consistency index by 96.00% and 33.63%, respectively. The XGUM based mud system exhibited efficient rheological properties suitable for drilling hydrate reservoir compared with the PAC based mud system with and without OMIM-BF4. The Hershel-Bulkley model best predicted the rheological properties of all the mud systems by exhibiting less Mean Percentage Error (MPE) values in the range of 1.39% - 24.71%. Furthermore, the presence of OMIM-BE4 greatly inhibited methane hydrate formation in both PAC and XGUM water-based mud systems due to its kinetic inhibition efficiency mainly arising from its long alkyl chain hydrophobic adsorption activity on the hydrate crystals. (C) 2019 Elsevier B.V. All rights reserved.
机译:这里,测试1-甲基-3-辛基咪唑鎓四氟硼酸盐(OMIM-BF4)作为潜在的添加剂,以提高聚合物水基泥浆(WBMS)的流变和水合物抑制性能,用于钻井天然气水合物沉积物。使用API​​标准用于泥浆测试,无需OMIM-BF4,而使用高压反应器在8MPa和-2℃下进行水合物研究。omim-bf4的存在有效地改善了PAC的流变性质通过将流动行为指数降低4.97%和47.77%,并将其稠度分别提高96.00%和33.63%,将其流动行为指数降低了4.97%。与具有oMim-BF4的PAC基泥浆系统相比,XGUM基泥系统表现出适用于钻井水合物贮存器的有效流变性能。 Hershel-Bulkley模型通过表现出较少的平均百分比误差(MPE)值,最佳预测所有泥浆系统的流变性能,范围为1.39%-24.71%。此外,由于其在水合物晶体上的长烷基链疏水吸附活性主要产生的动力学抑制效率,OMIM-BE4的存在极大地抑制了PAC和XGUM水基泥浆系统中的甲烷水合物形成。 (c)2019 Elsevier B.v.保留所有权利。

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