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Kinetic Parameters of Non-Isothermal Thermogravimetric Non-Catalytic and Catalytic Pyrolysis of Empty Fruit Bunch with Alumina by Kissinger and Ozawa Methods

机译:基于胰岛素氧化铝的非等温热重非催化和催化热解的非等温热重的非催化和催化热解

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The non-isothermal thermogravimetric non-catalytic and catalytic empty fruit bunch (EFB) pyrolysis with alumina were performed at different heating rates of 10, 15, 20, 25, 30 and 40 K/min under nitrogen atmosphere at a flow rate of 100 ml/min under dynamic conditions from 301 K to 1273 K.The activation energy were calculated based on Kissinger and Ozawa methods. Both reactions followed first order reactions. By Kissinger method, the activation energy and Ln A values for non-catalytic and catalytic EFB pyrolysis with alumina were 188.69 kJ mol~(-1) and 201.67 kJ/mol respectively. By Ozawa method, the activation energy values for non-catalytic and catalytic EFB pyrolysis with alumina were 189.13 kJ/moland 201.44 kJ/mol respectively. The presence of catalyst increased the activation energy values for EFB pyrolysis as calculated by Kissinger and Ozawa methods.
机译:在氮气氛下以100mL的流速,在10,15,20,25,30和40k / min的不同加热速率下,在氮气氛下的不同加热速率下进行非等温热重的非催化和催化空果束(EFB)热解 /最小在动态条件下,从301 k到1273 K.基于基于基辛格和Ozawa方法计算激活能量。 两种反应都遵循一阶反应。 通过基辛的方法,活化能量和LN与氧化铝的非催化和催化EFB热解的值分别为188.69kJ mol〜(-1)和201.67kJ / mol。 通过Ozawa方法,具有氧化铝的非催化和催化EFB热解的激活能量值分别为189.13kJ / moland 201.44kJ / mol。 催化剂的存在增加了通过基辛格和ozawa方法计算的EFB热解的活化能值。

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