首页> 外文期刊>Brazilian journal of chemical engineering >PYROLYSIS KINETICS OF HULLESS BARLEY STRAW USING THE DISTRIBUTED ACTIVATION ENERGY MODEL (DAEM) BY THE TG/DTA TECHNIQUE AND SEM/XRD CHARACTERIZATIONS FOR HULLESS BARLEY STRAW DERIVED BIOCHAR
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PYROLYSIS KINETICS OF HULLESS BARLEY STRAW USING THE DISTRIBUTED ACTIVATION ENERGY MODEL (DAEM) BY THE TG/DTA TECHNIQUE AND SEM/XRD CHARACTERIZATIONS FOR HULLESS BARLEY STRAW DERIVED BIOCHAR

机译:通过TG / DTA技术的分布式激活能量模型(DAEM)与HULLESS大麦秸秆衍生生物炭的分布式激活能量模型(DAEM)热解体动力学使用分布式激活能量模型(DAEM)和SEM / XRD特性

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摘要

The pyrolysis kinetics of hulless barley straw at different heating rates of 5, 10, 15, 20 and 30 degrees C/min were investigated via thermogravimetry, and the activation energy distribution E and pre-exponential factor k(0) were calculated using the Distributed Activation Energy Model (DAEM) from thermogravimetric analysis (TGA) curves, and characterizations of pyrolysis product of biochar were analyzed by techniques of scanning electron microscopy (SEM) and X-ray diffraction (XRD). The pyrolysis process consisted mainly of the dehydration stage (50-150 degrees C), the active pyrolysis stage (200-400 degrees C) and the passive pyrolysis stage (400-800 degrees C). The E ranged from 73.45 to 214.11 kJ/mol within the conversion rate range of 0.10-0.55, and changed from 214.11 to 141.55 kJ/mol within the conversion rate range of 0.55-0.90, and the average value of E was 172.23 kJ/mol. The values of k(0) changed greatly with E values at different mass conversion. The wide E and k(0) distributions obtained from the kinetic analysis are attributed to the complex chemical reactions of pyrolysis. The structure of biochar was degraded or ruptured due to the increase in temperature. The XRD analysis confirmed that the biochar was amorphous, dominated by disordered graphitic crystallites.
机译:通过热量迁移研究不同加热速率的HULLESS大麦秸秆的热解动力学,并通过热重率来研究激活能量分布e和预指数k(0)使用分布式计算通过扫描电子显微镜(SEM)和X射线衍射(XRD)的技术分析了来自热重分析(TGA)曲线(TGA)曲线的激活能量模型(DAEM)和生物炭的热解产物的表征。热解过程主要由脱水阶段(50-150℃),活性热解阶段(200-400℃)和被动热解(400-800℃)组成。 e在0.10-0.55的转化率范围内的73.45至214.11 kJ / mol之间,转化率范围为0.55-0.90的转换率范围,e的平均值为172.23kj / mol,改为214.11至141.55 kJ / mol 。 K(0)的值大大改变了不同大规模转换的e值。从动力学分析获得的宽E和K(0)分布归因于热解的复杂化学反应。由于温度的增加,生物炭的结构劣化或破裂。 XRD分析证实,生物炭是无定形的,由无序的石墨微晶主导。

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