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首页> 外文期刊>International energy journal >Pyrolysis And Evaluation Of Oil Shale Product Yield And Composition From Tchikatanga-Makola (Congo) Oil Shale
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Pyrolysis And Evaluation Of Oil Shale Product Yield And Composition From Tchikatanga-Makola (Congo) Oil Shale

机译:奇卡坦加-马科拉(刚果)油页岩的油页岩热解及产量和组成的评价

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In this work the pyrolysis and evaluation of the product yield from Tchikatanga-Makola (Congo-Brazzaville). The TGA and DTG were performed at different heating rates of (5, 10, 15, 30, 50 ℃/min); the final temperature reached was 760℃. Fischer Assay analysis of oil shale is 8.12 wt%. The optimal pyrolysis temperature was between 480℃ to 540℃, which in an average was 520℃. The results of this work revealedthatincreasing the pyrolysis temperature to 540℃ increases the oil yield. Although the ratio of gas/oil was lower, it was found that at heating rates of 2 and 5℃/min the gas yield increased, and at heating rate of 30℃/min, the oil yield was higher representing the optimal heating rate of pyrolysis. The gas analysis indicated that the gas pyrolysis contain H_2, CO, CO_2, N_2, H_2S and some C_1-C_4 hydrocarbon. As the temperature increased to 520℃, the oil yield decreased while the gaseous emission still increased. The amount of gaseous hydrocarbon increases due to the secondary reactions such as cracking and aromatization of oil derived from oil shale during retorting, however, the content of CO did not change much. But CO_2 decreases due to the decarboxylation of organic matter. The oil analysis shows that the shale oil is essentially composed of 60% aliphatic, 23% non-hydrocarbons, 11% aromatics and 6% asphatenes. The elementary analysis of the oil from pyrolysis is mainly composed of C, H, S, N, O and H/C ratio. Hydrogen and carbon contents in oil shales are higher and increase by increasing the heating rate. This possibly explains the presence of aromatic hydrocarbon products existing in shale oil.
机译:在这项工作中,Tchikatanga-Makola(刚果-布拉柴维尔)的热解和产物收率评估。 TGA和DTG以不同的加热速率(5、10、15、30、50℃/ min)进行;最终温度达到760℃。油页岩的费歇尔分析法为8.12重量%。最佳热解温度在480℃至540℃之间,平均为520℃。这项工作的结果表明,将热解温度提高到540℃可以提高油的产率。尽管气/油比较低,但发现在2和5℃/ min的加热速率下,气体产率提高;在30℃/ min的加热速率下,油产率更高,这代表了最佳的加热速率。热解。气体分析表明,气体热解过程中含有H_2,CO,CO_2,N_2,H_2S和一些C_1-C_4烃。当温度升至520℃时,石油产量下降,而气体排放仍在增加。气态烃的量由于干馏期间衍生自油页岩的油的裂解和芳构化等副反应而增加,但是,CO的含量变化不大。但是由于有机物的脱羧作用,CO_2减少。油的分析表明,页岩油主要由60%的脂肪族,23%的非烃类,11%的芳族化合物和6%的沥青组成。热解油的元素分析主要由C,H,S,N,O和H / C比组成。油页岩中的氢和碳含量较高,并且通过提高加热速率而增加。这可能解释了页岩油中存在的芳烃产品的存在。

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