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MOLECULAR DYNAMICS SIMULATION OF STRUCTURAL RELAXATION OF ASPHALTENE MACROMOLECULES

机译:沥青质大分子结构松弛的分子动力学模拟

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For asphaltene obtained from vacuum residues of three different kinds of crude oils (Khafji, Maya and Iranian-Light), the energy-minimum conformation calculated by molecular mechanics ― dynamics simulations showed that aggregated structures of asphaltene molecules through noncovalent interactions are the most stable conformation. Changes of aggregated structures by solvent soaking were investigated by using the molecular dynamics calculation. In quinoline, part of aggregates seemed to be dissociated at 573 K, while, in 1-methylnaphthalene it was not observed. The mechanism of coke formation originated from asphaltene aggregates during heating will be discussed on the basis of the solvent effect estimated by the simulation and the experimentally obtained data.
机译:对于从三种不同原油(Khafji,Maya和伊朗光)的真空残留得到的沥青质,通过分子力学 - 动力学模拟计算的能量 - 最小构象显示,通过非价相互作用的沥青质分子的聚集结构是最稳定的构象。通过使用分子动力学计算研究了通过溶剂浸泡的聚集结构的变化。在喹啉中,部分聚集体似乎在573k下解离,而在未观察到1-甲基萘。在加热过程中起源于沥青质聚集体的焦炭形成机制将基于模拟估计的溶剂效应和实验获得的数据。

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