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Activation of Aspen Wood with Carbon Dioxide and Phosphoric Acid for Removal of Total Organic Carbon from Oil Sands Produced Water: Increasing the Yield with Bio-Oil Recycling

机译:用二氧化碳和磷酸活化白杨木以去除油砂采出水中的总有机碳:通过生物油循环利用提高产量

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Several samples of activated carbon were prepared by physical (CO2) and chemical (H3PO4) activation of aspen wood and tested for the adsorption of organic compounds from water generated during the recovery of bitumen using steam assisted gravity drainage. Total organic carbon removal by the carbon samples increased proportionally with total pore volume as determined from N2 adsorption isotherms at −196 °C. The activated carbon produced by CO2 activation had similar removal levels for total organic carbon from the water (up to 70%) to those samples activated with H3PO4, but lower yields, due to losses during pyrolysis and activation. A method to increase the yield when using CO2 activation was proposed and consisted of recycling bio-oil produced from previous runs to the aspen wood feed, followed by either KOH addition (0.48%) or air pretreatment (220 °C for 3 h) before pyrolysis and activation. By recycling the bio-oil, the yield of CO2 activated carbon (after air pretreatment of the mixture) was increased by a factor of 1.3. Due to the higher carbon yield, the corresponding total organic carbon removal, per mass of wood feed, increased by a factor of 1.2 thus improving the overall process efficiency.
机译:通过物理(CO 2 )和化学(H 3 PO 4 )活化白杨木制备了一些活性炭样品,并测试了其活性。使用蒸汽辅助重力排水从沥青回收过程中产生的水中吸附有机化合物。从-196°C的N 2 吸附等温线确定,碳样品去除的总有机碳与总孔体积成比例增加。由CO 2 活化产生的活性炭与水中的总有机碳去除率相似(最高70%),与被H 3 PO 活化的样品相似。 4 ,但由于热解和活化过程中的损失,收率较低。提出了一种使用CO 2 活化法提高产量的方法,该方法包括将先前运行产生的生物油循环到白杨木饲料中,然后添加KOH(0.48%)或进行空气预处理(在热解和活化之前,在220°C下放置3 h)。通过回收生物油,将CO 2 活性炭的产量(在对混合物进行空气预处理之后)提高了1.3倍。由于较高的碳收率,每单位木材进料中相应的总有机碳去除量增加了1.2倍,从而提高了整体工艺效率。

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