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Synthesis and characterization of imidazolium asphaltenes poly (ionic liquid) and application in asphaltene aggregation inhibition of heavy crude oil

机译:亚咪唑吡唑鎓聚(离子液体)的合成与表征及其在沥青质聚集抑制重原油的应用

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New ionic liquids were synthesized from asphaltene colloids that aggregate in the petroleum sludge precipitated in the storage tanks and transportation petroleum pipeline. The alkyl side chains on the asphaltenes were oxidized to polynuclear aromatic carboxylic acids that catalyzed the formation of imidazolium ionic liquid cations. Heptylamine, glyoxal, and p-hydroxybenzaldehyde were used to prepare 1,3-diheptyl and 1,3-diheptyl-2-hydroxyphenyl imidazolium cations conjugated with asphaltenes carboxylate anions as AsIL and AHIL ionic liquids, respectively. The chemical structure, surface charges, particle sizes, thermal stability and thermal characteristics were assessed. The impact of AsIL and AHIL on the dispersion, solubilization, and inhibition precipitation of asphaltenes in the binary solvents and heavy crude oil was studied. The results demontrate that the prepared ionic liquid containing aromatic (AHIL) acts as an asphaltene dispersing and solubilizing agent to inhibit the asphaltene precipitation more than that containing AsIL.
机译:从沥青质胶体合成新的离子液体,该胶体在储存罐和运输石油管道中沉淀的石油污泥中聚集。沥青质上的烷基侧链被氧化成多核芳族羧酸,催化咪唑鎓离子液体阳离子的形成。使用庚酰胺,乙二醛和对羟基苯甲醛制备1,3-二庚基和1,3-二庚基-2-羟基苯基咪唑酰基咪唑,分别与Asil和Ahil离子液体分别缀合。评估化学结构,表面电荷,颗粒尺寸,热稳定性和热特性。研究了ASIL和AHIL对二元溶剂和重原油中沥青质的分散,溶解和抑制沉淀的影响。结果展示了含有芳族(AhIL)的制备的离子液体用作沥青质分散和增溶剂以抑制比含有ASIL的沥青质沉淀的溶解剂。

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