首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Pyrolysis of oil-plant wastes in a TGA and a fixed-bed reactor: Thermochemical behaviors, kinetics, and products characterization
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Pyrolysis of oil-plant wastes in a TGA and a fixed-bed reactor: Thermochemical behaviors, kinetics, and products characterization

机译:TGA和固定床反应器中植物油废物的热解:热化学行为,动力学和产物表征

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Pyrolysis characteristics of four distinct oil-plant wastes were investigated using TGA and fixed-bed reactor coupled with GC. TGA experiments showed that the pyrolysis behaviors were related to biomass species and heating rates. As the heating rate increased, TG and DTG curves shifted to the higher temperatures, and the comprehensive devolatilization index obviously increased. The remaining chars from TGA experiments were higher than those obtained from the fixed-bed experiments. The crack of tars at high temperatures enhanced the formation of non-condensable gases. During the pyrolysis, CO and CO2 were the major gases. Chars FTIR showed that the functional groups of O-H, C-H-n, C=O, C-O, and C-C gradually disappeared from 400 degrees C on. The kinetic parameters were calculated by Coats-Redfern approach. The results manifested that the most appropriate pyrolysis mechanisms were the order reaction models. The existence of kinetic compensation effect was evident. Crown Copyright (C) 2015 Published by Elsevier Ltd. All rights reserved.
机译:利用TGA和固定床反应器结合GC研究了四种不同的植物油的热解特性。 TGA实验表明,热解行为与生物质种类和加热速率有关。随着升温速率的提高,TG和DTG曲线向较高温度移动,综合脱挥发分指数明显增加。来自TGA实验的剩余炭高于从固定床实验获得的炭。高温下的焦油裂纹会增加不可冷凝气体的形成。在热解过程中,CO和CO2是主要气体。 Chars FTIR显示O-H,C-H-n,C = O,C-O和C-C的官能团从400摄氏度起逐渐消失。通过Coats-Redfern方法计算动力学参数。结果表明,最合适的热解机理是有序反应模型。动力学补偿作用的存在是显而易见的。 Crown版权所有(C)2015,由Elsevier Ltd.发行。保留所有权利。

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