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Hydropyrolysis characteristics and kinetics of potassium-impregnated pine wood

机译:浸渍钾的松木的热解特性和动力学

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Pine wood biomass (WB) samples impregnated with different potassium contents have been investigated to determine the influence of potassium on their hydropyrolysis behavior. The experiments were carried out using a thermogravimetric analyzer under both N2 and H2 atmosphere, and at the heating rate of 10 °C/min from room temperature to 700 °C. Results demonstrated that potassium effected on the biomass pyrolysis significantly, as evidenced by the changes in char content and characteristic parameters such as the maximum weight loss rates and the corresponding peak temperatures. The mass of char remaining after pyrolysis significantly increased with the impregnation of potassium acetate, but it did not increase proportionately to the potassium content. The temperature at which the maximum degradation rate occurs shifted to lower temperature, and this effect was more prominent for potassium-impregnated biomass pyrolysis under H2. It was also shown that the potassium had significant catalytic influence on the biomass pyrolysis, but this ability varied with the potassium content. The kinetic analysis indicated that both un-impregnated and potassium-impregnated biomass exhibited two-stage characteristics which could be kinet-ically described by two consecutive first order reactions. Moreover, the apparent kinetic compensation effect (KCE) has been observed for biomass pyrolysis under both N2 and H2.
机译:已对浸渍有不同钾含量的松木生物量(WB)样品进行了研究,以确定钾对其加氢热解行为的影响。实验是使用热重分析仪在N2和H2气氛下以及从室温到700°C的加热速率为10°C / min的条件下进行的。结果表明,钾对生物质的热解有显着影响,如炭含量和特征参数(如最大失重率和相应的峰值温度)的变化所证明。热解后残留的焦炭质量随着乙酸钾的浸渍而显着增加,但并没有与钾含量成比例地增加。发生最大降解速率的温度转移到较低的温度,这种作用对于H2下浸钾的生物质热解更为突出。还显示出钾对生物质热解具有显着的催化作用,但是该能力随钾含量而变化。动力学分析表明,未浸入和钾浸入的生物量均表现出两个阶段的特征,可以通过两个连续的一级反应动力学描述。此外,已经观察到在N 2和H 2下生物质热解的表观动力学补偿效应(KCE)。

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