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Oil sand middling processing using a flotation column.

机译:使用浮选柱进行油砂中间处理。

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Flotation columns may benefit the oil sand industry by improving grade and recovery when processing middlings. Preliminary testing was conducted with a laboratory flotation column for two-phase systems over a bubble size range of 250 to 1100 μm. A correlation between exponent “m” in the drift flux equation, jgf = Utα g(1 − αg) m, and bubble Reynolds number was established, where j gf, Ut, αg, and “m” are the drift flux, terminal velocity of a bubble, gas volume fraction, and an exponent depending on flow conditions, respectively. The correlation is valid for a Reynolds number range of 5 to 70. After preliminary testing, the column was tested to ensure little difficulty when processing oil sands. Next, in-plant tests at Suncor Energy Inc. using a feed stream of oil sand middlings were completed to investigate the effects of the feed, recirculation, air, and wash water flow rates on bitumen recovery.
机译:浮选柱可通过在处理中段时提高品位和回收率而使油砂行业受益。使用实验室浮选柱对气泡尺寸范围为250至1100μm的两相系统进行了初步测试。漂移通量方程中的指数“ m”与 j gf = U t α g (1 −α g m ,并建立气泡雷诺数,其中j gf ,U t ,α g 和“ m”分别是取决于流量条件的漂移通量,气泡的最终速度,气体体积分数和指数。该相关关系在5到70的雷诺数范围内有效。在初步测试之后,对色谱柱进行了测试,以确保在处理油砂时几乎没有困难。接下来,完成了在Suncor Energy Inc.的工厂试验,该试验使用油砂中粒料作为进料流,以研究进料,再循环,空气和洗涤水流速对沥青回收率的影响。

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