[1] |
Berguer N, Lyngfelt A. The use of petroleum coke as fuel in a 10 kWth chemical-looping combustor [J]. International Journal of Greenhouse Gas Control, 2008, 2 (2): 169-179.
|
[2] |
Song T, Wu J, Zhang H, Shen L. Characterization of an Australia hematite oxygen carrier in chemical looping combustion with coal [J]. International Journal of Greenhouse Gas Control, 2012, 11: 326-336.
|
[3] |
Cao Y, Pan W P. Investigation of chemical looping combustion by solid fuels (Ⅰ): Process analysis [J]. Energy & Fuels, 2006, 20 (5): 1836-1844.
|
[4] |
Leion H, Mattisson T, Lyngfelt A. Solid fuels in chemical-looping combustion [J]. Greenhouse Gas Control, 2008, 2 (2): 180-193.
|
[5] |
Song T, Shen L H, Xiao J, Chen D Q, Gu H M, Zhang S W. Nitrogen transfer of fuel-N in chemical looping combustion [J]. Combustion and Flame, 2012, 159 (3): 1286-1295.
|
[6] |
Hansson K M, Samuelsson J, Tullin C, Åmand L E. Formation of HNCO, HCN, and NH3 from the pyrolysis of bark and nitrogen-containing model compounds [J]. Combustion and Flame, 2004, 137 (3): 265-277.
|
[7] |
Stubenberger G, Scharler R, Zahirovic S, Zahirovi? S, Obernberger I. Experimental investigation of nitrogen species release from different solid biomass fuels as a basis for release models [J]. Fuel, 2008, 87 (6): 793-806.
|
[8] |
Kruse A, Mani P, Spieler F. Influence of proteins on the hydrothermal gasification and liquefaction of biomass (2): Model compounds [J]. Industrial & Engineering Chemistry Research, 2006, 6 (1): 87-96.
|
[9] |
Wang Xuebin (王学斌), Zhao Ke (赵科). Formation of HCN and H2 during co-pyrolysis of coal model compounds [J]. Journal of Engineering Thermophysics (工程热物理学报), 2008, 29 (7): 1147-1151.
|
[10] |
Ratclifr M A, Medley E E, Simmonds P G. Pyrolysis of amino acids. Mechanistic considerations [J].The Journal of Organic Chemistry, 1974, 39 (11): 148l-1490.
|
[11] |
Basiuk V A. Pyrolysis of valine and leucine at 500℃: identification of less-volatile products using gas chromatography-Fourier transform infrared spectroscopy-mass spectrometry [J].Journal of Analytical and Applied Pyrolysis, 1998, 47 (2): 127-143.
|
[12] |
Bo Jisong (柏继松). Nitrogen and sulfur conversion mechanism during biomass combustion [D]. Hangzhou: Zhejiang University, 2012.
|
[13] |
Winter F, Wartha C, Hofbauer H. NO and N2O formation during the combustion of wood, straw, malt waste and peat [J]. Bioresource Technology, 1999, 70 (1): 39-49.
|
[14] |
Werther J, Ogada T. Sewage sludge combustion [J]. Progress in Energy and Combustion Science, 1999, 25 (1): 55-116.
|
[15] |
Ren Qiangqiang (任强强). Nitrogen transfer mechanism during thermal utilization of agricultural straw [D]. Nanjing: Southeast University, 2010.
|
[16] |
Hao Jufang (郝菊芳), Wang Hongbo (王洪波), Cao Depo (曹得坡), Xie Fuwei (谢复炜), Xia Qiaoling (夏巧玲), Xie Jianping (谢剑平). Effect of heating rate on the formation of nitrogenous gases from the pyrolysis of amino acids [J]. Chemical Research and Application (化学研究与应用), 2013, (7): 981-986.
|
[17] |
Seheafer S, Bonn B. Hydrolysis of HCN as an important step in nitrogen oxide formation in fluidized combustion (Ⅰ): Homogeneous reactions [J]. Fuel, 2000, 79 (10): 1239-1246.
|
[18] |
Yu Chunjiang (余春江), Luo Zhongyang (骆仲泱), Zhang Wennan (张文楠), Fang Mengxiang (方梦祥), Zhou Jinsong (周劲松), Cen Kefa (岑可法). Inorganic material emission during biomass pyrolysis [J]. Journal of Fuel Chemistry and Technology (燃料化学学报), 2000, 28 (5): 420- 425.
|
[19] |
Yang Changyan (杨昌炎),Yao Jianzhong (姚建中), Lü Xuesong (吕雪松), Yang Xuemin (杨学民), Lin Weigang (林伟刚). Influence of K+ and Ca2+ on the mechanism of biomass pyrolysis [J]. Acta Energiae Solaris Sinica (太阳能学报), 2006, 27 (5): 496-502.
|
[20] |
Gu Haiming (顾海明), Shen Laihong (沈来宏), Xiao Jun (肖军), Zhang Siwen (张思文), Song Tao (宋涛). Cycle experiments on chemical looping combustion of coal using potassium-improved iron ore as oxygen carrier [J]. Journal of Fuel Chemistry and Technology (燃料化学学报), 2012, (8): 927-934.
|
[21] |
Gu Songyuan (顾松园), Song Lei (宋磊), Liao Shijie (廖仕杰), Miao Changxi (缪长喜). Effect of promoter and calcination condition on performance of catalyst for ethylbenzene dehydrogenation to styrene [J]. Chemical Reaction Engineering and Technology (化学反应工程与工艺), 2006, 22 (5): 467-471.
|
[22] |
Miao Changxi (缪长喜). Influence of incorporation of ZnO on Fe-K ethylbenzene dehydrogenation catalyst [J]. Industrial Catalysis (工业催化), 2002, 10 (5): 38-41.
|