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辐射松和稻壳及其三组分热重动力学
引用本文:王 昶,张征标,柏龙佳,郝庆兰.辐射松和稻壳及其三组分热重动力学[J].天津科技大学学报,2014(1):30-35.
作者姓名:王 昶  张征标  柏龙佳  郝庆兰
作者单位:[1] 天津科技大学海洋科学与工程学院,天津300457 [2] 天津科技大学材料科学与化学工程学院,天津300457
基金项目:国家自然科学基金资助项目(21176191)
摘    要:利用热天平对两种植物生物质(辐射松和稻壳)及其三组分半纤维素、纤维素和木质素分别在不同的升温速率下进行热重分析,调查这些样品随热解温度的失重情况以及热解动力学.随着升温速率的增加,半纤维素的DTG曲线表现出不同于其他实验样品的规律,即DTG曲线的峰值向低温区移动.使用Kissinger微分法、FWO法和Popescu法联合对热解数据进行分析,分别计算反应活化能E和指前因子A,以及最可几机理函数,其中Jander方程G(α)=1231-(1-α)]为纤维素、辐射松和稻壳的最可几机理函数,反Jander方程123G(α)=(1+α)-1]为半纤维素和木质素的最可几机理函数,可以较好地解决植物生物质及其三组分的动力学参数的求算.

关 键 词:生物质  动力学  纤维素  半纤维素  木质素

Thermogravimetric Dynamics of Radiata Pine,Rice Husk and their Three Biomass Componens
WANG Chang,ZHANG Zhengbiao,BAI Longjia,HAO Qinglan.Thermogravimetric Dynamics of Radiata Pine,Rice Husk and their Three Biomass Componens[J].Journal of Tianjin University of Science & Technology,2014(1):30-35.
Authors:WANG Chang  ZHANG Zhengbiao  BAI Longjia  HAO Qinglan
Institution:1. College of Marine Science and Engineering, Tianjin University of Science & Technology, Tianjin 300457, China; 2. College of Material Science and Chemical Engineering, Tianjin University of Science & Technology, Tianjin 300457, China)
Abstract:Different pyrolysis characteristics of wood biomass(radiata pine and rice husk)and their three biomass compo-nens(hemicellulose,cellulose and lignin)at different heating rates were studied with TG. The DTG curves of the hemicellu-lose was different from other samples,and they moved towards the low temperature region with the increase of heating rate. Three methods,Kissinger,FWO and Popescu,were used to determine the kinetics. Based on the characteristics of different methods,the pre-exponential factor,activation energies and most probable mechanism functions of the five samples were detemined. The most probable mechanical functions of cellulose,pinups radiate and rice husk were Jander equation:1 32G(α)=1-(1-α)],while others were anti Jander equation:1 23G(α)=(1+α)-1]. The kinetic paramenters of the five sam-ples could be solved well by using the three methods in combination.
Keywords:biomass  kinetics  cellulose  hemicellulose  lignin
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