[1] |
Wang Deyuan(王德元),Chen Hanping(陈汉平),Yang Haiping(杨海平),Wang Xianhua(王贤华),Zhang Shihong(张世红),Jin Hang(金航).Study on the comprehensive evaluation about biomass energy utilization technologies[J]. Energy Engineering(能源工程),2009,1: 25-29
|
[2] |
Dinesh M,Charles U,Pittman Jr,Philip H S. Pyrolysis of wood/biomass for bio-oil: a critical review [J]. Energy & Fuels,2006,20(3): 848-889
|
[3] |
Lu Q,Li W Z,Zhu X F. Overview of fuel properties of biomass fast pyrolysis oils [J]. Energy Conversion and Management,2009,50(5): 1376-1383
|
[4] |
Wang Qi(王琦). Research on production and utilization of bio-oil from biomass fast pyrolysis[D]. Hangzhou: Zhejiang University,2008
|
[5] |
Lu Q,Yang X L,Zhu X F. Analysis on chemical and physical properties of bio-oil pyrolyzed from rice husk [J]. Journal of Analytical and Applied Pyrolysis,2008,82(1): 191-198
|
[6] |
Xu J M,Jiang J C,Sun Y J,Lu Y J. Bio-oil upgrading by means of ethyl ester production in reactive distillation to remove water and to improve storage and fuel characteristics [J]. Biomass and Bioenergy,2008,32(11): 1056-1061
|
[7] |
Fisk C A,Morgan T,Ji Y Y,Crocker M,Crofcheck C,Lewis S A. Bio-oil upgrading over platinum catalysts using in situ generated hydrogen [J]. Applied Catalysis A:General, 2009, 358(2): 150-156
|
[8] |
Wang Feng(王凤),Wang Jun(王君),Chen Minggong(陈明功),Zhang Xuecai(张学才),Shao Qun(邵群),Chen Mingqiang(陈明强). Research progress in the characteristics and application of the bio-oil[J]. Biomass Chemical Engineering(生物质化学工程),2008,42(1): 34-40
|
[9] |
Lu Qiang(陆强). Selective fast pyrolysis of biomass[D]. Hefei: University of Science and Technology of China,2010
|
[10] |
Lou R,Wu S B,Lü G J. Fast pyrolysis of enzymatic/mild acidolysis lignin from moso bamboo [J]. BioResource,2010,5(2): 827-837
|
[11] |
Du Ying(杜瑛),Qi Weiyan(齐卫艳),Miao Xia(苗霞),Li Guiying(李桂英),Hu Changwei(胡常伟). Chemical analysis of pubescens and its pyrolysis[J]. Journal of Chemical Industry and Engineering (China) (化工学报),2004,55(12): 2099-2102
|
[12] |
Kantarelis E,Liu J L,Yang W H,Blasiak W. Sustainable valorization of bamboo via high-temperature steam pyrolysis for energy production and added value materials [J]. Energy & Fuels,2010,24(11): 6142-6150
|
[13] |
Jiang Z H, Liu Z J,Fei B H,Cai Z Y,Yu Y,Liu X E. The pyrolysis characteristics of moso bamboo[J]. Journal of Analytical and Applied Pyrolysis,2012,94: 48-52
|
[14] |
Yamashita Noriyuki,Machida Motoi. Carbonization of bamboo and consecutive low temperature air activation[J]. Wood Science and Technology,2011,45(4): 801-808
|
[15] |
Luo J,Xu Y,Zhao L J,Dong L L,Tong D M,Zhu L F,Hu C W. Two-step hydrothermal conversion of pubescens to obtain furans and phenol compounds separately[J]. Bioresource Technology,2010,101(22): 8873-8880
|
[16] |
Zhang Hairong(张海荣),Pang Hao(庞浩),Shi Jingzhi(石锦志),Liao Bing(廖兵). TG study on major biomass components and its liquefied residues from pyrolysis[J]. Chemical Industry and Engineering Progress(化工进展),2011,30(10): 2194-2199
|
[17] |
Lou R,Wu S B,Lv G J. Effect of condition on fast pyrolysis of bamboo lignin[J]. Journal of Analytical and Applied Pyrolysis,2010,89(2): 191-196
|
[18] |
Hu Changwei(胡常伟),Luo Jia(罗嘉),Zeng Yan(曾燕),Xu Yong(许勇),Tong Dongmei(童冬梅). Efficient and selective conversion of biomass through fractional route [J]. Petrochemical Technology (石油化工),2012,41(3): 245-253
|