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Asphaltenes and Waxes Do Not Interact Synergistically and Coprecipitate in Solid Organic Deposits

机译:沥青和蜡在固体有机沉积物中不会协同作用并共沉淀

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摘要

Waxes and asphaltenes are the major components in organic deposits from petroleum fluids.A key unresolved issue is whether there are significant intermolecular interactions between wax and asphaltene molecules during precipitation that would lead to synergy and coprecipitation,i.e.,the phase change of one class inducing the precipitation of the other class.To address this,we studied six organic deposits in great chemical and physical detail:three that we categorized as predominantly wax deposits,two that were asphaltenic deposits,and one that seemed to be an organic acid deposit.Chemical analyses,included elemental analysis,Fourier transform infrared(FTIR)spectroscopy,high-temperature simulated distillation,melting range measurement,and solubility experiments,performed on both parent crude oils and their corresponding deposits.The wax deposits contain in excess of 44 wt % waxes,and the complement of the deposits was occluded oil,water,and inorganic solids.Less than 6.2%(w/w)of these deposits were asphaltenes.Waxy-deposit waxes have higher melting points,longer straight-chain methylene,higher carbon number distributions,and higher molecular weights than their parent crude waxes.Asphaltenic-deposit waxes have properties that are almost identical to their parent crude oil waxes.Asphaltenic deposits contained >27 wt % asphaltenes.The properties of asphaltenes isolated from asphaltenic deposits were compared with the properties of asphaltenes isolated from their parent crude oils.The metal content and apparent VPO molecular weight of asphaltenic-deposit asphaltenes are significantly higher than those of corresponding crude-oil asphaltenes.The solubility of asphaltenic-deposit asphaltenes is much lower than the solubility of asphaltenes from their parent crude oils.The results indicate that the asphaltenes in the wax deposits are likely a component of the occluded oil in the deposit.A key conclusion of our work is that there is no evidence for any intermolecular interaction between waxes and asphaltenes to suggest synergy in precipitation.In fact,the evidence very much points to only one of these components undergoing a phase change and precipitating in an organic deposit and the other component simply being a portion of the crude oil occluded in the deposit.
机译:蜡和沥青质是石油流体有机沉积物中的主要成分。一个关键的未解决问题是,在沉淀过程中蜡和沥青质分子之间是否存在显着的分子间相互作用,从而导致协同作用和共沉淀,即一类相变导致为了解决这个问题,我们对六个有机沉积物进行了详细的化学和物理详细研究:我们将其中三个分类为蜡沉积物,将其中两个分类为沥青质沉积物,将其中的一个看似是有机酸沉积物。包括元素分析,傅立叶变换红外光谱(FTIR),高温模拟蒸馏,熔程测量和溶解度实验,均针对母体原油及其相应的沉积物进行。蜡沉积物中所含蜡超过44 wt%,沉积物的补充物是油,水和无机固体,含量低于6.2%(w / w)蜡质沉积蜡具有比母体原油蜡更高的熔点,更长的直链亚甲基,更高的碳原子数分布和更高的分子量。沥青质沉积蜡的特性几乎与其母体原油蜡相同。沥青质沉积物中含> 27 wt%的沥青质。从沥青质沉积物中分离出的沥青质与从其母体原油中分离出的沥青质进行了比较。沥青质沉积沥青质中的金属含量和表观VPO分子量均显着高于那些沥青质沉积的沥青质的溶解度远低于其母体原油中沥青质的溶解度。结果表明,蜡质沉积物中的沥青质很可能是沉积物中封闭油的一种成分。我们工作的一个关键结论是,没有任何分子间相互作用的证据。实际上,有证据表明,这些成分中只有一种会发生相变并沉淀在有机沉积物中,而另一种成分只是在原油中所含的一部分原油。存款。

著录项

  • 来源
    《Energy & fuels》 |2005年第4期|p.1360-1375|共16页
  • 作者

    Xiaoli Yang; Peter Kilpatrick;

  • 作者单位

    Department of Chemical Engineering,North Carolina State University,Raleigh,North Carolina 27695-7905;

    Department of Chemical Engineering,North Carolina State University,Raleigh,North Carolina 27695-7905;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TK-;
  • 关键词

  • 入库时间 2022-08-18 00:43:30

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