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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >CO2 Gasification Kinetics of Algal and Woody Char Procured under Different Pyrolysis Conditions and Heating Rates
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CO2 Gasification Kinetics of Algal and Woody Char Procured under Different Pyrolysis Conditions and Heating Rates

机译:不同热解条件和升温速率下藻类和木炭焦的CO2气化动力学

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摘要

This paper presents the results on gasification kinetic data, influence of the different models on predicted gasification rates, reaction order and comparison of gasification reactivity of the chars prepared in different conditions as well as that among the feedstock (algal and woody chars). A fresh water alga, Chlorococcum humicola and three types of woody biomass were pyrolyzed separately in a thermogravimetric analyzer (TGA) and in an entrained flow reactor (EFR), and the resultant chars were then gasified in the temperature range 700-1000 °C under CO2 to compare their intrinsic kinetics and to determine the transition temperatures between kinetic control and intraparticle diffusion control. The transition temperature was dependent on both sample and pyrolysis condition. Activation energy and frequency factor were determined using three kinetic models (volumetric, grain and random pore). The activation energy of different chars was determined to be in the range of 180-307 kJ/ mol. Among the models, the random pore model was found to be predicting the weight loss profile most accurately except for the algal and a woody char from EFR. The reaction order and reactivity were found to be varying significantly with the pyrolysis condition of the chars.
机译:本文介绍了气化动力学数据的结果,不同模型对预测气化速率的影响,反应顺序以及在不同条件下以及原料(藻类和木炭)中制备的炭的气化反应性的比较。在热重分析仪(TGA)和夹带流动反应器(EFR)中分别将淡水藻,绿藻(Chlorococcum humicola)和三种类型的木质生物质热解,然后在700-1000°C的温度范围内将所得焦炭气化。 CO2比较它们的内在动力学并确定动力学控制和颗粒内扩散控制之间的转变温度。转变温度取决于样品和热解条件。使用三种动力学模型(体积,颗粒和随机孔)确定活化能和频率因子。确定了不同炭的活化能在180-307kJ / mol的范围内。在这些模型中,除了EFR中的藻类和木炭之外,随机孔隙模型可以最准确地预测体重减轻情况。发现反应顺序和反应性随炭的热解条件而显着变化。

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