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Characterization of high acid value waste cottonseed oil by temperature programmed pyrolysis in a batch reactor

机译:间歇式反应器中程序升温热解法表征高酸值废棉籽油

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Temperature programmed pyrolysis of high acid value waste cottonseed oil (WCO) was carried out in a batch type reactor. A thermogravimetric analysis (TGA) method, which did not require a carrier gas, was used to study the properties of oil products. Weight loss data were obtained at heating rates (from 5 to 15 degrees C min(-1)) and used to estimate the pyrolysis activation energy. A systematic study of the molecular weight distribution was made for the pyrolysis of WCO and virgin cottonseed oil at different heating rates. The yields of the products including: gases, liquids (collected pyrolytic oil), and solids (residual char) were quantified in this work. The production of pyrolysis gas was estimated during heating. The weight loss results indicated that the optimum pyrolysis rate occurred between 400 and 450 degrees C at a heating rate of 10 degrees C min(-1) from room temperature to 600 degrees C. Our work indicated that high acid value WCO yields comparatively greater volumes of gases and masses of residual products when compared to virgin cottonseed oil. After the temperature programmed pyrolysis of WCO (acid value 8.66 mg KOH g(-1)), at a heating rate of 10 degrees C min-1, the average boiling point of the pyrolytic oil was similar to 349 degrees C, which is significantly lower than that of the unprocessed WCO (456 degrees C). The pyrolytic oil produced in this process after esterification with methanol, was found to comply with biofuel specification requirements. (C) 2016 Elsevier B.V. All rights reserved.
机译:在间歇式反应器中对高酸值废棉籽油(WCO)进行程序升温热解。使用不需要载气的热重分析(TGA)方法来研究石油产品的性能。在加热速率(从5到15摄氏度min(-1))下获得重量损失数据,并将其用于估算热解活化能。对WCO和纯棉籽油在不同加热速率下的热解进行了分子量分布的系统研究。在这项工作中,对包括气体,液体(收集的热解油)和固体(残炭)在内的产品的产量进行了定量。估计加热期间热解气体的产生。失重结果表明最佳的热解速率发生在从室温到600摄氏度的10摄氏度min(-1)加热速率下的400至450摄氏度之间。我们的工作表明,高酸值WCO产生相对较大的体积与纯棉籽油相比,残留气体的质量和残留量。对WCO进行程序升温热解(酸值为8.66 mg KOH g(-1))后,在10摄氏度min-1的加热速率下,热解油的平均沸点类似于349摄氏度,这是非常明显的低于未处理的WCO(456摄氏度)。经甲醇酯化后,在此过程中产生的热解油符合生物燃料规格要求。 (C)2016 Elsevier B.V.保留所有权利。

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