Department of Chemical Engineering for Energy, Key Laboratory of Coal Gasification and Energy Chemical Engineering of Ministry of Education, East China University of Science and Technology, 130 # Meilong Road, Shanghai 200237 PR China.
Department of Chemical Engineering for Energy, Key Laboratory of Coal Gasification and Energy Chemical Engineering of Ministry of Education, East China University of Science and Technology, 130 # Meilong Road, Shanghai 200237 PR China.
Bioresour Technol. 2014 Oct;170:262-269. doi: 10.1016/j.biortech.2014.07.110. Epub 2014 Aug 6.
The pyrolysis characteristics of xylan, cellulose, ADF (a mixture of cellulose and lignin extracted from pine wood) and pine wood were investigated in a fixed-bed reactor by determining the distributions of three-phase products, the elemental compositions of char products, the conversions of components and the profiles of gas release rate during pyrolysis as well as the compositions of liquid products. Interactions were found to occur between the different components. Lignin accelerated the release of CO2 and CO from cellulose and intensified the decomposition of cellulose to smaller molecular weight liquid compounds. Pine wood exhibited the componential interactions, resulting in the broadened temperature range of mass loss, the enhanced yield of char, and the increased heterogeneity of char. Pine wood produced more bio-oil than each component sample, with the compositional formula of CH1.07O0.31. The formation of liquid compounds from pine wood was also observed to be influenced by the componential interactions.
采用固定床反应器研究了木聚糖、纤维素、ADF(从松木中提取的纤维素和木质素的混合物)和松木的热解特性,通过测定三相产物分布、炭产物的元素组成、各组分转化率以及热解过程中气体释放速率曲线和液体产物组成来实现。研究发现不同组分之间存在相互作用。木质素加速了纤维素释放 CO2 和 CO,并强化了纤维素分解为更小分子量的液体化合物。松木表现出组分间相互作用,导致质量损失的温度范围变宽,炭产率增加,炭的不均匀性增加。与每个组分样品相比,松木产生了更多的生物油,其组成公式为 CH1.07O0.31。还观察到松木液体化合物的形成也受到组分间相互作用的影响。