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An alternative approach for the screening of catalytic empty fruit bunch (EFB) pyrolysis using the values of activation energy from a thermogravimetric study

机译:一种利用热重研究的活化能值筛选催化空果束(EFB)热解的替代方法

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摘要

The catalytic effect of a series of doped and undoped metal oxides on the pyrolysis kinetics of empty fruit bunch (EFB) is investigated using thermogravimetric analysis (TGA) under nitrogen atmosphere and dynamic non-isothermal conditions from 301 to 1,273 K programmed at 10 K min(-1). The kinetic parameters, namely the activation energy (E-a) values and pre-exponential factor (Ln A) are determined based on the Coats-Redfern method. Segmentation of the TG data into two temperature regimes, which are 473-573 K (section I) and 573-613 K (section II) representing the hemicellulose and cellulose decomposition respectively. The effect of each catalyst on EFB pyrolysis is evaluated based on the calculated mean E-a for section I and section II which indicates that Al2O3 catalyzed EFB reaction reduces the E-a for section I and section II by 6.05 and 1.77 kJ mol(-1), respectively. Based on the E-a value for section I, Al2O3 is selected as the catalyst for incorporation in catalytic EFB pyrolytic reaction performs in a fixed bed reactor at 773 K with a heating rate of 20 K min(-1) and keeps isothermal for 30 min. The result shows that the bio-oil increased by 6.88 % and decreased gas yield by 7.75 %.
机译:使用热重分析(TGA)在氮气氛和动态非等温条件下(301至1,273 K,程序设置为10 K min),研究了一系列掺杂和未掺杂金属氧化物对空果束(EFB)热解动力学的催化作用。 (-1)。基于Coats-Redfern方法确定动力学参数,即活化能(E-a)值和指数前因子(Ln A)。 TG数据分为两个温度范围,分别是473-573 K(第I部分)和573-613 K(第II部分),分别代表半纤维素和纤维素的分解。根据计算出的第一部分和第二部分的平均Ea评估每种催化剂对EFB热解的影响,这表明Al2O3催化的EFB反应将第一部分和第二部分的Ea分别降低6.05和1.77 kJ mol(-1)。 。根据第I部分的E-a值,选择Al2O3作为催化剂,以在固定床反应器中以20 K min(-1)的加热速率在773 K的固定床反应器中进行热解反应,并保持等温30分钟。结果表明,生物油增加了6.88%,气体收率减少了7.75%。

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