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旋转锥式生物质热解系统及热载体动力学研究
引用本文:徐保江.旋转锥式生物质热解系统及热载体动力学研究[J].上海理工大学学报,2000,22(1):16-20.
作者姓名:徐保江
作者单位:上海理工大学动力工程学院!上海200093(徐保江,李美玲,卢玫),上海理工大学机械工程学院!上海200093(曾忠)
基金项目:上海市高等学校科学技术发展基金!99K08
摘    要:生物质是一种再生的能源资源,通过热解液化技术可将生物质(木屑、秸杆、稻壳及甘蔗渣等)有机废弃物液化为生物质油。本文介绍了自行设计的以旋转锥反应器为核心的闪速热解系统及反应器的工作原理,并对热载体在反应器内的动力学进行了分析,系统可确定热载体在旋转锥不同锥角、不同旋转角频率ω下,足以影响生物质油产率的重要参数一一固体滞留期t,为反应器的设计提供了极为方便的计算方法。

关 键 词:生物质热解  可再生能源  热载体动力学  生物质油

The system of the rotating cone pyrolysis for biomass and the dynamics of heat carrier
XU Bao-jiang,LI Mei-ling,ZENG Zhong,LU Mei.The system of the rotating cone pyrolysis for biomass and the dynamics of heat carrier[J].Journal of University of Shanghai For Science and Technology,2000,22(1):16-20.
Authors:XU Bao-jiang  LI Mei-ling  ZENG Zhong  LU Mei
Abstract:The biomass is a renewable energy. By flash pyrolysis technology, the biomass and other organic refuse could be converted into liquid fuel (bio-oil) which is of easy transport and high energy density. In the paper, the biomass flash pyrolysis system is introduced, the principle of the reactor which is the center of the system and the heat carrier dynamics in reactor are studied. The solid residence time of heat carrier is calculated with different cone angles and different rotating frequencies. On the basis of these results,a convenient calculation method for further designing and improving the pyrolysis system is provided and all the parameters to the yield of the bio-oil can be optimized.
Keywords:biomass pyrolysis  renewable energy  heal carrier dynamics  bio-oil
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