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Review of processes for downhole catalytic upgrading of heavy crude oil

机译:回顾重质原油的井下催化提质工艺

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Unlike conventional refinery processing, downhole upgrading involves implementing catalytic processes in oil-bearing geologic formations. In this way impurities contained in heavy crude oil can possibly be left in the ground or easily separated during oil production, providing an improved crude oil feed for refineries. Additionally, value or viability can be added to an otherwise uneconomic or remote heavy oil deposit. In order to successfully produce improved quality oil via a downhole upgrading project, several processing steps are anticipated: placement of catalysts into an appropriate downhole location, mobilization of reactants over the catalyst bed, and creation of processing conditions necessary to achieve a reasonable degree of catalytic upgrading. Each of these steps has been proven by past application; their combination into a unified below-ground process remains problematic. Downhole processing differs from surface processing in that brine, high steam partial pressures and low hydrogen partial pressures need to be accommodated in the downhole setting. There are no reports of significant downhole catalytic upgrading of crude oil, although examples of thermal upgrading are noted. However, available technology should be amenable to conducting a successful process. Upgrading of heavy crude oil at anticipated downhole processing conditions has been successfully proven in the laboratory. Recently published literature with immediate pertinence to the problems of downhole catalytic upgrading is reviewed with the goal of stimulating research and providing directions for future investigations.
机译:与传统的炼油厂加工不同,井下升级涉及在含油地质层中实施催化过程。这样,重质原油中包含的杂质可能会留在地下或在采油过程中容易分离,从而为炼油厂提供了改进的原油原料。另外,可以将价值或可行性添加到原本不经济或偏远的重油矿床中。为了通过井下升级项目成功生产出质量更高的石油,预计需要几个处理步骤:将催化剂放置在适当的井下位置,在催化剂床上移动反应物以及创建实现合理程度催化作用所需的处理条件升级。这些步骤中的每一个都已被过去的应用程序证明;将它们组合成统一的地下程序仍然存在问题。井下处理与地面处理的不同之处在于,在井下环境中需要容纳盐水,高蒸汽分压和低氢分压。尽管提到了热力提升的例子,但没有关于原油进行重大井下催化提升的报道。但是,可用的技术应该适合进行成功的过程。在预期的井下加工条件下,重质原油的升质已在实验室中得到成功证明。为了刺激研究并为将来的研究提供指导,对近期发表的与井下催化升级问题直接相关的文献进行了综述。

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