李云罡等
参考文献
[1]石祖梁, 贾涛, 王亚静, 等. 我国农作物秸秆综合利用现状及焚烧碳排放估算[J]. 中国农业资源与区划, 2017,
38(9): 32-37.
[2]徐婧. 生物质燃烧过程中碱金属析出的实验研究[D]: [硕士学位论文]. 杭州: 浙江大学, 2006.
[3]李政. 生物质锅炉过热器高温腐蚀研究[J]. 广东电力, 2010, 23(7): 31-34.
[4]Niu, Y., Tan, H. and Hui, S. (2016) Ash-Related Issues during Biomass Combustion: Alkali-Induced Slagging, Silicate
Melt-Induced Slagging (Ash Fusion), Agglomeration, Corrosion, Ash Utilization, and Related Countermeasures. Progress
in Energy and Combustion Science, 52, 1-61.https:///10.1016/j.pecs.2015.09.003
[5]骆仲泱, 陈晨, 余春江. 生物质直燃发电锅炉受热面沉积和高温腐蚀研究进展[J]. 燃烧科学与技术, 2014, 20(3):
189-198.
[6]Steenari, B.M., Lundberg, A., Pettersson, H., et al. (2009) Investigation of Ash Sintering during Combustion of Agri-
cultural Residues and the Effect of Additives. Energy & Fuels, 23, 5655-5662.https:///10.1021/ef900471u
[7]段菁春, 肖军, 王杰林, 庄新国. 生物质与煤共燃研究[J]. 电站系统工程, 2004, 20(1): 1-4.
[8]Aho, M. and Silvennoinen, J. (2004) Preventing Chlorine Deposition on Heat Transfer Surfaces with Aluminium-Silicon
Rich Biomass Residue and Additive. Fuel, 83, 1299-1305.https:///10.1016/j.fuel.2004.01.011
[9]余滔. 添加剂对生物质燃烧灰沉积和腐蚀特性的影响规律研究[D]: [硕士学位论文]. 济南: 山东大学, 2013.
[10]Wang, L., Hustad, J.E., Skreiberg, Ø., et al. (2012) A Critical Review on Additives to Reduce Ash Related Operation
Problems in Biomass Combustion Applications. Energy Procedia, 20, 20-29.
https:///10.1016/j.egypro.2012.03.004
[11]张科. 添加剂对生物质锅炉受热面积灰腐蚀的影响规律研究[D]: [硕士学位论文]. 济南: 山东大学, 2017.
[12]Shao, Y., Wang, J., Preto, F., et al. (2012) Ash Deposition in Biomass Combustion or Co-Firing for Power/Heat Gen-
eration. Energies, 5, 5171-5189.https:///10.3390/en5125171
[13]栗秀娟. 生物质混煤燃烧对金属受热面的腐蚀特性研究[D]: [硕士学位论文]. 济南: 山东大学, 2012.
[14]杜文智, 牛艳青, 谭厚章, 朱轶铭. 硅和硅铝化合物对生物质结渣影响的机理研究[J]. 可再生能源, 2015, 33(10):
1559-1564.
[15]刘兵. 添加剂对生物质(秸秆)燃料燃烧影响的试验研究[D]: [硕士学位论文]. 新乡: 河南科技学院, 2016.
[16]Boström, D., Grimm, A., Boman, C., et al. (2009) Influence of Kaolin and Calcite Additives on Ash Transformations
in Small-Scale Combustion of Oat. Energy & Fuels, 23, 5184-5190.https:///10.1021/ef900429f
[17]Aho, M. and Ferrer, E. (2005) Importance of Coal Ash Composition in Protecting the Boiler against Chlorine Deposi-
tion during Combustion of Chlorine-Rich Biomass. Fuel, 84, 201-212.https:///10.1016/j.fuel.2004.08.022
[18]Llorente, M.J.F., Arocas, P.D., Nebot, L.G., et al. (2008) The Effect of the Addition of Chemical Materials on the Sin-
tering of Biomass Ash. Fuel, 87, 2651-2658.https:///10.1016/j.fuel.2008.02.019
[19]马孝琴, 骆仲泱, 方梦祥, 余春江, 岑可法. 添加剂对秸秆燃烧过程中碱金属行为的影响[J]. 浙江大学学报(工学
版), 2006, 40(4): 599-604.
[20]李冬冬, 刘圣勇, 李冲, 王炯, 张舒晴, 鲁杰. 添加剂对小麦秸秆燃烧结渣特性影响的试验研究[J]. 河南农业大
学学报, 2017, 51(6): 845-851.
[21]Matúš, M., Križan, P., Šooš, Ľ., et al. (2018) The Effect of Papermaking Sludge as an Additive to Biomass Pellets on
the Final Quality of the Fuel. Fuel, 219, 196-204. https:///10.1016/j.fuel.2018.01.089
[22]Mroczek, K., Kalisz, S., Pronobis, M., et al. (2011) The Effect of Halloysite Additive on Operation of Boilers Firing
Agricultural Biomass. Fuel Processing Technology, 92, 845-855. https:///10.1016/j.fuproc.2010.11.020
[23]Tobiasen, L., Skytte, R., Pedersen, L.S., et al. (2007) Deposit Characteristic after Injection of Additives to a Danish
Straw-Fired Suspension Boiler. Fuel Processing Technology, 88, 1108-1117.
https:///10.1016/j.fuproc.2007.06.017
[24]Coda, B., Aho, M., Berger, R., et al. (2001) Behavior of Chlorine and Enrichment of Risky Elements in Bubbling Flui-
dized Bed Combustion of Biomass and Waste Assisted by Additives. Energy & Fuels, 15, 680-690.
https:///10.1021/ef000213+
[25]朱文斌. 生物质锅炉过热器受热面金属积灰腐蚀特性研究[D]: [硕士学位论文]. 济南: 山东大学, 2018.
[26]赵青玲, 王梅杰, 赵建松, 张百良, 赵廷林. 基于复合添加剂的生物质成型燃料的灰分特性[J]. 太阳能学报,
2017, 38(4): 906-912.
DOI: 10.12677/aepe.2020.82006 55 电力与能源进展