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生物油催化裂解精制机理
引用本文:许庆利,赵军,李洪宇,王复,颜涌捷.生物油催化裂解精制机理[J].沈阳大学学报,2012,24(2):15-17.
作者姓名:许庆利  赵军  李洪宇  王复  颜涌捷
作者单位:1. 华东理工大学生物质能源研究中心,上海,200237
2. 河南省中原大化集团有限责任公司,河南濮阳,457000
基金项目:973国家重点基础研究发展计划项目,国家自然科学基金资助项目
摘    要:采用乙酸为模型化合物,在裂解温度500℃,质量空速为5.0h-1,不同水含量条件下进行了催化裂解精制实验,并采用GC-MS分析了催化裂解液体产物.乙酸经过HZSM-5分子筛催化剂催化裂解后,产物中含有苯、萘、茚及其衍生物.根据乙酸催化裂解产物,推测了乙酸催化裂解精制反应途径,说明生物油催化裂解精制反应过程主要发生脱氧和芳烃化反应.

关 键 词:生物油  乙酸  精制  机理

Catalytic cracking of Bio-Oil Upgrading Mechanism
XUQingli,Zhaojun,LI Hongyu,WANG Fu,YAN Yongjie.Catalytic cracking of Bio-Oil Upgrading Mechanism[J].Journal of Shenyang University,2012,24(2):15-17.
Authors:XUQingli  Zhaojun  LI Hongyu  WANG Fu  YAN Yongjie
Institution:1. Research Center for Biomass Energy East China University of Science and Technology, Shanghai 200237, China; 2. Zhongyuan Dahua Co. of Henan Coal Chemical Industry Corporation, Puyang 457000, China)
Abstract:As the model compound, acetic acid was catalytic pyrolyzed at 500 ℃, WHSV of 5.0 h-1 , under the condition of different water content. The products of model compounds contained benzene, naphthalene, indene and their derivatives after catalytic pyrolysis on HZSM-5 zeolite. According to the catalytic cracking products of acetic acid, catalytic reaction pathways were speculated to illustrate that deoxidization and aromatization took place over bio-oil catalytic cracking reaction.
Keywords:bio-oil acetic acid  upgrading  mechanism
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