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Fundamental study of the role of fines in upgrading.

机译:罚款在提升中的作用的基础研究。

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Conventional naphthenic-based extraction processes are not efficient at removing fine solids from bitumen. These solids are alumino-silicate clays partially coated with a toluene insoluble organic phase, and can cause operational problems such as fouling and plugging of equipment and catalysts. Bitumen solids are known to participate in thermal upgrading reactions when no hydrogen is present, reducing the rate of coke formation compared to solids-free feeds. The goal of this research is to identify the mineralogy of bitumen solids and to determine if there is an optimum concentration of solids in the feed to a coking unit. Several analyses were used in the characterization of bitumen solids, followed by a systematic study of the effects of solids in coking reactions under fluid-coking-type conditions. Solids composition was found to be primarily illite and kaolinite. Bitumen solids affect the yield of distillates during coking reactions with no effect on the yield of coke.
机译:常规的基于环烷烃的提取方法不能有效地从沥青中去除细小的固体。这些固体是部分涂有甲苯不溶有机相的铝硅酸盐粘土,会引起操作问题,例如设备和催化剂的结垢和堵塞。已知在不存在氢的情况下,沥青固体会参与热转化反应,与无固体进料相比,会降低焦炭形成的速率。这项研究的目的是确定沥青固体的矿物学,并确定焦化装置进料中是否存在最佳浓度的固体。对沥青固体的特性进行了数种分析,然后系统地研究了固体在流化焦化条件下在焦化反应中的作用。发现固体成分主要是伊利石和高岭石。沥青固体会影响焦化反应过程中馏出物的收率,而不会影响焦炭的收率。

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