1 |
Goyal H B, Seal D, Saxena R C. Bio-fuels from thermochemical conversion of renewable resources: a review[J]. Renewable and Sustainable Energy Reviews, 2008, 12(2): 504-517.
|
2 |
Chen X, Che Q, Li S, et al. Recent developments in lignocellulosic biomass catalytic fast pyrolysis: strategies for the optimization of bio-oil quality and yield[J]. Fuel Processing Technology, 2019, 196: 106180.
|
3 |
Keipi T, Tolvanen H, Kokko L, et al. The effect of torrefaction on the chlorine content and heating value of eight woody biomass samples[J]. Biomass and Bioenergy, 2014, 66: 232-239.
|
4 |
陈应泉, 杨海平, 朱波, 等. 农业秸秆烘焙特性及对其产物能源特性的影响[J]. 农业机械学报, 2012, 43(4): 75-82.
|
|
Chen Y Q, Yang H P, Zhu B, et al. Torrefaction of agriculture straw and its effect on material and energy characteristics[J]. Transactions of the Chinese Society for Agricultural Machinery, 2012, 43(4): 75-82.
|
5 |
Vassilev S V, Baxter D, Andersen L K, et al. An overview of the organic and inorganic phase composition of biomass[J]. Fuel, 2012, 94: 1-33.
|
6 |
杜胜磊, 陈汉平, 杨海平, 等. 生物质热解过程中F和Cl的迁徙行为研究[J]. 中国电机工程学报, 2010, 30(14): 115-120.
|
|
Du S L, Chen H P, Yang H P, et al. Transformation behavior of F and Cl during biomass pyrolysis[J]. Proceedings of the CSEE, 2010, 30(14): 115-120.
|
7 |
Björkman E, Strömberg B. Release of chlorine from biomass at pyrolysis and gasification conditions[J]. Energy & Fuels, 1997, 11(5): 1026-1032.
|
8 |
Johansen J M, Jakobsen J G, Frandsen F J, et al. Release of K, Cl, and S during pyrolysis and combustion of high-chlorine biomass[J]. Energy & Fuels, 2011, 25(11): 4961-4971.
|
9 |
杜胜磊, 杨海平, 钱柯贞, 等. 生物质热解过程中碱及碱土金属迁徙规律研究[J]. 中国电机工程学报, 2013, 33(26): 48-53.
|
|
Du S L, Yang H P, Qian K Z, et al. Releasing behavior of alkali and alkaline earth metals during biomass pyrolysis[J]. Proceedings of the CSEE, 2013, 33(26): 48-53.
|
10 |
孟晓晓, 孙锐, 袁皓, 等. 不同热解温度下玉米秸秆中碱金属K和Na的释放及半焦中赋存特性[J]. 化工学报, 2017, 68(4): 1600-1607.
|
|
Meng X X, Sun R, Yuan H, et al. Effect of different pyrolysis temperature on alkali metal K and Na emission and existence in semi-char[J]. CIESC Journal, 2017, 68(4): 1600-1607.
|
11 |
叶家铭, 靳熹, 杨金鑫, 等. 生物质热解和燃烧过程中钾的析出迁移特性研究[J]. 工程热物理学报, 2017, 38(9): 2033-2037.
|
|
Ye J M, Jin X, Yang J X, et al. Study on release and transformation of potassium during pyrolysis and combustion of biomass[J]. Journal of Engineering Thermophysics, 2017, 38(9): 2033-2037.
|
12 |
Jensen P A, Frandsen F J, Dam-Johansen K, et al. Experimental investigation of the transformation and release to gas phase of potassium and chlorine during straw pyrolysis[J]. Energy & Fuels, 2000, 14(6): 1280-1285.
|
13 |
Sheng C, Azevedo J L T. Estimating the higher heating value of biomass fuels from basic analysis data[J]. Biomass and Bioenergy, 2005, 28(5): 499-507.
|
14 |
Yani S, Gao X, Wu H. Emission of inorganic PM10 from the combustion of torrefied biomass under pulverized-fuel conditions[J]. Energy & Fuels, 2015, 29(2): 800-807.
|
15 |
Chen H, Chen X, Qiao Z, et al. Release and transformation behavior of Cl during pyrolysis of torrefied rice straw[J]. Fuel, 2016, 183: 145-154.
|
16 |
Chen H, Chen X, Qiao Z, et al. Release and transformation characteristics of K and Cl during straw torrefaction and mild pyrolysis[J]. Fuel, 2016, 167: 31-39.
|
17 |
Andrea Jordan C, Akay G. Speciation and distribution of alkali, alkali earth metals and major ash forming elements during gasification of fuel cane bagasse[J]. Fuel, 2012, 91(1): 253-263.
|
18 |
梅艳阳. 生物质低温脱氧机理及其对热解的影响研究[D]. 武汉: 华中科技大学, 2016.
|
|
Mei Y Y. Study on the mechanism of biomass low-temperature deoxygenation and its effect on pyrolysis[D]. Wuhan: Huazhong University of Science and Technology, 2016.
|
19 |
Liu Z, Quek A, Kent Hoekman S, et al. Production of solid biochar fuel from waste biomass by hydrothermal carbonization[J]. Fuel, 2013, 103: 943-949.
|
20 |
Knudsen J N, Jensen P A, Lin W G, et al. Sulfur transformations during thermal conversion of herbaceous biomass[J]. Energy & Fuels, 2004, 18(3): 810-819.
|
21 |
Wang Y, Wu H, Sarossy Z, et al. Release and transformation of chlorine and potassium during pyrolysis of KCl doped biomass[J]. Fuel, 2017, 197: 422-432.
|
22 |
Saleh S B, Flensborg J P, Shoulaifar T K, et al. Release of chlorine and sulfur during biomass torrefaction and pyrolysis[J]. Energy & Fuels, 2014, 28(6): 3738-3746.
|
23 |
Tsubouchi N, Saito T, Ohtaka N, et al. Evolution of hydrogen chloride and change in the chlorine functionality during pyrolysis of argonne premium coal samples[J]. Energy & Fuels, 2012, 27(1): 87-96.
|
24 |
Tsubouchi N, Saito T, Ohtaka N, et al. Chlorine release during fixed-bed gasification of coal chars with carbon dioxide[J]. Energy & Fuels, 2013, 27(9): 5076-5082.
|
25 |
谢敏, 程健, 陈刚, 等. 橄榄废弃物低温热解过程中氯的析出规律[J]. 化工学报, 2018, 69(8): 3693-3700.
|
|
Xie M, Cheng J, Chen G, et al. Chlorine release during low-temperature pyrolysis of olive residue[J]. CIESC Journal, 2018, 69(8): 3693-3700.
|
26 |
Knudsen J N, Jensen P A, Dam-Johansen K. Transformation and release to the gas phase of Cl, K, and S during combustion of annual biomass[J]. Energy & Fuels, 2004, 18(5): 1385-1399.
|
27 |
Liu S, Qiao Y, Lu Z, et al. Release and transformation of sodium in kitchen waste during torrefaction[J]. Energy & Fuels, 2014, 28(3): 1911-1917.
|
28 |
van Lith S C, Jensen P A, Frandsen F J, et al. Release to the gas phase of inorganic elements during wood combustion(Part 2): Influence of fuel composition[J]. Energy & Fuels, 2008, 22(3): 1598-1609.
|
29 |
Jiang L, Hu S, Xiang J, et al. Release characteristics of alkali and alkaline earth metallic species during biomass pyrolysis and steam gasification process[J]. Bioresource Technology, 2012, 116: 278-284.
|
30 |
郭飞强, 刘元, 郭成龙, 等. 微型流化床内碱金属和碱土金属对稻壳热解动力学的影响特性[J]. 化工学报, 2017, 68(10): 3795-3804.
|
|
Guo F Q, Liu Y, Guo C L, et al. Influence of AAEM on kinetic characteristics of rice husk pyrolysis in micro-fluidized bed reactor[J]. CIESC Journal, 2017, 68(10): 3795-3804.
|
31 |
Wang Z, Wang L, Lin J, et al. The influence of the addition of sodium on the transformation of alkali and alkaline-earth metals during oxy-fuel combustion[J]. Journal of the Energy Institute, 2018, 91(4): 502-512.
|
32 |
Shoulaifar T K, Demartini N, Zevenhoven M, et al. Ash-forming matter in torrefied birch wood: changes in chemical association[J]. Energy & Fuels, 2013, 27(10): 5684-5690.
|
33 |
Aho M, Ferrer E. Importance of coal ash composition in protecting the boiler against chlorine deposition during combustion of chlorine-rich biomass[J]. Fuel, 2005, 84(2): 201-212.
|
34 |
赵辉, 周劲松, 曹小伟, 等. 生物质烘焙预处理对气流床气化的影响[J]. 太阳能学报, 2008, 29(12): 1578-1586.
|
|
Zhao H, Zhou J S, Cao X W, et al. Torrefaction impact on biomass entrained flow gasification[J]. Acta Energiae Solaris Sinica, 2008, 29(12): 1578-1586.
|
35 |
杜一帆. 非惰性气氛烘焙稻壳与煤的混燃特性研究[D]. 武汉: 华中科技大学, 2017.
|
|
Du Y F. Investigation of co-combustion characteristics of non-inert torrefied rice husk and coal[D]. Wuhan: Huazhong University of Science and Technology, 2017.
|
36 |
Liu Z, Hu W, Jiang Z, et al. Investigating combustion behaviors of bamboo, torrefied bamboo, coal and their respective blends by thermogravimetric analysis[J]. Renewable Energy, 2016, 87: 346-352.
|