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《中国工程科学》 >> 2011年 第13卷 第2期

生物质热解气化技术

1. 山东大学,济南 250061;

2. 山东百川同创能源有限公司,济南 250061

收稿日期: 2010-11-25 发布日期: 2011-02-16 15:12:23.000

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摘要

生物质热解气化是农林废弃物向清洁燃气转化的关键技术,产生的合成气可替代天然气等化石燃料,实现燃气、热能和电能的供给。目前我国生物质热解气化技术经过20余年的发展,完成了民用分布式生物质燃气供应系统的示范和布局,并初步具备了规模化燃气制备和发电的产业技术基础。“十二五”期间,具有显著提高燃气质量的富氧气化、蒸汽气化、甲烷化制备Bio-SNG等技术成为重要的研究方向,装备设计制造的大型化、规范化和标准化成为产业发展的必然。

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参考文献

[ 1 ] 董玉平,邓波,景元琢,等.中国生物质气化技术的研究和发展现状[J].山东大学学报(工学版),2007,37(2):1-7. 链接1

[ 2 ] 万仁新.生物质能工程[M].北京:中国农业出版社,1995.

[ 3 ] 2010—2015年中国可再生能源产业调研及战略咨询报告[R].北京:中国市场报告网,2010.

[ 4 ] 杨素萍,赵永亮,栾凤奎,等.分布式发电技术及其在国外的发展状况[J].电力需求侧管理,2006,8(3):57-60. 链接1

[ 5 ] 盛建菊.生物质气化发电技术的进展[J].节能技术,2007(1):68-71. 链接1

[ 6 ] Gil J, Caballero M A, Martin J A, et al.Biomass gasification with air in a fluidized bed: effect of the in bed use of dolomite under different operation conditions [ J ] . Industrial Engineering and Chemistry Research, 1999 ,38 :26 - 35. 链接1

[ 7 ] 吴创之,马隆龙,陈勇.生物质气化发电技术发展现状[J].中国科技产业,2006(2):76-79. 链接1

[ 8 ] Paisley M A, Anson D.Biomass gasificat ion for gas turbine 2 based power generation [ J] .Journal of Engineering for Gas Tur- bines and Power Transactions of the ASME, 1998 ( 4 ) :284 -288.

[ 9 ] 袁振宏.欧洲生物质发电技术掠影[J].可再生能源,2004(4):65. 链接1

[10] 刘蓉厚,牛卫生,张大雷.生物质热化学转换技术[M].北京:化学工业出版社,2005:111-123.

[11] 袁振宏,吴创之,马隆龙.生物质能利用原理与技术[M].北京:化学工业出版社,2005:184-186.

[12] Lopamudra D, Ptasinskik J, Janssen Fjjg. A review of the primary measures for tar elimination in biomass gasification processes [ J] .Biomass and Bioenergy,2003 ,24 :125 -140. 链接1

[13] Devi L, KrZysztof J, Ptasinski K J, et al.Pretreated olivineas tarremoval catalyst for biomass gasifiers: investigation using Na phthaleneas model biomass tar [ J] .Fuel Proeessing Technology, 2005 ,86 ( 6 ) :707 -730. 链接1

[14] 吴文广,罗永浩,陈祎,等.生物质焦油净化方法研究进展[J].工业加热,2008,37(2):1-5. 链接1

[15] Patrick C A, Sander V B, Harold B.The novel “ OLGA” tech- nology for complete tar removal from biomass producergas [ R] . Strasbourg: Pyrolysis and Gasification of Biomass and Waste Ex- pert Meeting, 2002.

[16] 熊丽君,张忠诚.基于ASPENPLUS平台的生物质燃气脱焦工艺模拟[J].山东大学学报(工学版),2008,38(6):95-98. 链接1

[17] Manuel Campoy, Alberto Gómez -Barea, Fernando B Vidal, et al.Air – steam gasification of biomass in a fluidised bed: Process optimisation byenriched air [ J] .Fuel Processing Tech- nology, 2009 ,90 :677 -685. 链接1

[18] Zhou Jinsong, Chen Qing, Zhao Hui, et al.Biomass – oxygen gasification in a high -temperature entrained -flow gasifier [ J] . Biotechnology Advances,2009 ,27 :606 -611. 链接1

[19] Stefan Koppatz, Christoph Pfeifer, Reinhard Rauch, et al.H2 rich product gas by steam gasification of biomass with in situ CO2 absorption in a dual fluidized bed system of 8 MW fuel input [ J] .Fuel Processing Technology,2009 ,90 :914 -921. 链接1

[20] Gao Ningbo, Li Aimin, Quan Cui.A novel reforming method for hydrogen production from biomass steam gasification [ J] .Biore- source Technology Journal,2009 ,100 :4271 -4277. 链接1

[21] Jan Kopyscinski, Tilman J Schildhauer, Serge M A Biollaz.Pro- duction of synthetic natural gas ( SNG) from coal and dry biomass– A technology review from 1950 to 2009 [ J] .Fuel, 2010 ,89 ( 8 ) :1763 -1783. 链接1

[22] Alexis Duret, Claude Friedli, Fran毕ois Maréchal.Process de- sign of Synthetic Natural Gas ( SNG) production using wood gasi- fication [ J] .Journal of Cleaner Production, 2005 ,15 ( 13 ) :1434 -1446. 链接1

[23] Guangwen Xua, Takahiro Murakamia, Toshiyuki Suda, et al. Efficient gasification of wet biomass residue to produce middle ca- loric gas [ J] .Particuology,2008 ( 6 ) :376 -382. 链接1

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