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钾盐催化纤维素快速热裂解机理研究
引用本文:王树荣,廖艳芬,文丽华,骆仲泱,岑可法.钾盐催化纤维素快速热裂解机理研究[J].燃料化学学报,2004,32(6):694-698.
作者姓名:王树荣  廖艳芬  文丽华  骆仲泱  岑可法
作者单位:1. Clean Energy and Environment Engineering Key Laboratory of Ministry of Education, Zhejiang University,Hangzhou 310027, China; 2. Electric Power College, South China University of Technology, Guangzhou 510640, China
基金项目:国家自然科学基金 (50176046);国家杰出青年科学基金(50025618);国家重点基础研究专项基金 (2001CB409600).
摘    要:在红外辐射机理试验装置上进行了钾盐催化纤维素快速热裂解机理研究。试验发现,钾盐在抑制生物油生成的同时,促进了炭和气体的生成。结合反应前后金属盐电镜图以及生物油和焦炭中金属离子质量分数的检测,证实钾盐的催化作用主要发生在固相中,以离子形式选择性催化了不同类别的反应,加速了分子断键过程中的裂变和歧化反应。在抑制左旋葡聚糖生成的同时,促进了糖类以外产物的形成,提高了生物油中乙醇醛、乙醛以及小分子的醇类、酮醛类化合物的数量。

关 键 词:纤维素  快速热裂解  钾盐  催化机理  
文章编号:0253-2409(2004)06-0694-05
收稿时间:2004-01-18
修稿时间:2004年1月18日

Catalysis mechanism of potassium salt during rapid pyrolysis of cellulose
WANG Shu-rong,LIAO Yan-fen,WEN Li-hua,LUO Zhong-yang,CEN Keratory of Ministry of Education,Zhejiang University,Hangzhou,China.Catalysis mechanism of potassium salt during rapid pyrolysis of cellulose[J].Journal of Fuel Chemistry and Technology,2004,32(6):694-698.
Authors:WANG Shu-rong  LIAO Yan-fen  WEN Li-hua  LUO Zhong-yang  CEN Keratory of Ministry of Education  Zhejiang University  Hangzhou  China
Institution:WANG Shu-rong~1,LIAO Yan-fen~2,WEN Li-hua~1,LUO Zhong-yang~1,CEN Keratory of Ministry of Education,Zhejiang University,Hangzhou310027,China,
Abstract:The catalysis mechanism of potassium salt in rapid pyrolysis of cellulose was studied in an infrared radiation bench scale reactor. The results show that potassium salt restrains the formation of aqueous oil, while enhances the formation of char and gas. On the basis of the distribution diagram of metallic salt by electron microscopy, and the content determination of metallic ion in aqueous oil and char, catalysis of potassium salt mainly occurs in solid phase during cellulose pyrolysis. It selectively catalyzes some reactions in the form of ion, and accelerates the cracking and splitting process of molecules. It causes a reduction of levoglucosan formation, and improves the production of hydroxyacetaldehyde, acetaldehyde and small molecule components including methanol, ketone or aldehyde.
Keywords:cellulose  rapid pyrolysis  potassium salt  catalysis mechanism
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