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Ionizing Electron Incidents as an Efficient Way to Reduce Viscosity of Heavy Petroleum Fluids

机译:电离电子事件是降低重石油流体粘度的有效方法

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摘要

The dependence on oil and the fact that petroleum conventional reservoirs are becoming depleted direct attentions toward unconventional-and harder to access-reservoirs. Among those, heavy and extremely heavy oil reservoirs and tar sands form a considerable portion of all petroleum resources. Conventional thermal and thermocatalytic refining methods are not affordable choices in some cases, as they demand a considerable energy investment. On the other hand, electron irradiation, as a novel technology, provides more promising results in heavy oil upgrading.Electron irradiation, as a method of delivering energy to a target molecule, ensures that most of the energy is absorbed by the molecule electronic structure. This leads to a very efficient generation of reactive species, which are capable of initiating chemical reactions. In contrast, when using thermal energy, only a small portion of the energy goes into the electronic structure of the molecule; therefore, bond rupture will result only at high energy levels.The effect of electron irradiation on different heavy petroleum fluids is investigated in this study. Radiation-induced physical and chemical changes of the fluids have been evaluated using different analytical instruments. The results show that high energy electron particles intensify the cracking of heavy hydrocarbons into lighter species. Moreover, irradiation is seen to limit any post-treatment reactions, providing products of higher stability. Depending on the characteristics of the radiolyzed fluid, irradiation may change the distribution pattern of the products, or the radiolysis process may follow the same mechanism that thermal cracking does.In addition to that, we have studied the effectiveness of different influencing variables such as reaction temperature, absorbed dose values, and additives on radiolytic reactions. More specifically, the following subjects are addressed in this study:*Radiation?induced chain reactions of heavy petroleum fluids*Complex hydrocarbon cracking mechanism*High and low temperature radiolysis*Synergetic effects of different chemical additives in radiolysis reactions*Time stability of radiation products
机译:对石油的依赖以及石油常规储层正在枯竭的事实直接引起了人们对非常规且难以进入的储层的关注。其中,重油和极重油藏以及焦油砂占所有石油资源的相当一部分。在某些情况下,传统的热催化精炼和热催化精炼方法不是可负担的选择,因为它们需要大量的能源投资。另一方面,电子辐照作为一种新技术,在重油提质方面提供了更有希望的结果。电子辐照作为一种向目标分子传递能量的方法,可确保大部分能量被分子电子结构吸收。这导致非常有效地产生反应物种,其能够引发化学反应。相反,当使用热能时,只有一小部分能量进入分子的电子结构。因此,键断裂只会在高能级下发生。本研究研究了电子辐照对不同重质石油流体的影响。辐射引起的流体物理和化学变化已使用不同的分析仪器进行了评估。结果表明,高能电子粒子加剧了重烃向轻质物质的裂解。此外,可以看出辐照限制了任何后处理反应,从而提供了更高的稳定性。取决于辐照液的特性,辐照可能会改变产物的分布方式,或者辐照过程可能遵循与热裂解相同的机理。此外,我们还研究了各种影响变量(例如反应)的有效性温度,吸收剂量值以及辐射分解反应中的添加剂。更具体地说,本研究涉及以下主题:*辐射引起的重质石油链反应*复杂的烃裂化机理*高低温辐射分解*辐射分解反应中不同化学添加剂的协同作用*辐射产物的时间稳定性

著录项

  • 作者

    Alfi Masoud;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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