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Investigation of the performance of biocompatible gas hydrate inhibitors via combined experimental and DFT methods

机译:通过组合实验和DFT方法研究生物相容性气水合物抑制剂的性能

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In this work, three ionic liquids (ILs) from the bio-compatible family of choline cations attached to anions of varying hydrophobicity namely: choline acetate (ChOAc), choline bistriflamide (ChNtf(2)), and choline chloride (ChCl), have been tested for their gas hydrate inhibition properties for methane and a multicomponent Qatari natural gas type mixture (QNG-S1). A rocking-rig assembly (RC-5) has been used to obtain the pressure-temperature (P-T) loops for the studied systems in absence/presence of inhibitors. Two concentrations of 1 and 5 wt% for the choline IL-inhibitors have been chosen which shows distinct effectiveness towards studied single and multi-component hydrate systems. Hydrate suppression temperatures (Delta T) have been calculated from the obtained dissociation data for quantitative analysis of inhibition effect of ILs and its trends against pressure dependence were discussed. Further, to understand the mechanism of hydrate formation and dissociation, the imaging of a complete P-T loop for CH4 + 5 wt% ChNtf2 system has been performed using a borescope camera attached to gas hydrate autoclave (GHA) apparatus. Furthermore, the main features of the interaction mechanism between selected ionic liquids and hydrate structures were elucidated at the molecular level through quantum chemical calculations by using density functional theory (DFT) methods. The results on the effectiveness of bio-compatible ILs as hydrate inhibitors compared to their conventional counterparts have been proposed in the manuscript. (C) 2017 Elsevier Ltd.
机译:在这项工作中,来自生物相容性胆碱阳离子的三种离子液体(ILS)附着在不同疏水性的阴离子中,即:醋酸胆碱(CHOAC),胆碱双氨基丙胺(CHNTF(2))和氯化胆碱(CHCL),具有已经测试了它们的甲烷的天然气水合物抑制性能和多组分Qatari天然气型混合物(QNG-S1)。在不存在/存在抑制剂的情况下,已经使用摇摆钻井平台组件(RC-5)来获得所研究的系统的压力 - 温度(P-T)环。已经选择了胆碱IL-抑制剂的两种浓度为1和5wt%,其朝向研究单组分和多组分水合物系统具有明显的有效性。水合物抑制温度(Delta T)已经从获得的解离数据计算了ILS的抑制作用的定量分析,并且讨论了其对压力依赖性的趋势。此外,为了了解水合物形成和解离的机制,已经使用连接到气体水合物高压釜(GHA)装置的障碍物相机进行CH4 + 5wt%CHNTF2系统的完整P-T环的成像。此外,通过使用密度泛函理论(DFT)方法,在分子水平上阐明了所选离子液体和水合物结构之间的相互作用机理的主要特征。在稿件中提出了与常规对应物相比生物相容性ILS作为水合物抑制剂的有效性的结果。 (c)2017年elestvier有限公司

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