[1] |
中华人民共和国国家统计局. 中国统计年鉴[M]. 北京:中国统计出版社, 2006. National Bureau of Statistics of the People's Republic of China. China Statistical Yearbook[M]. Beijing:China Statistics Press, 2006.
|
[2] |
中华人民共和国国家统计局. 中国统计年鉴[M]. 北京:中国统计出版社, 2016. National Bureau of Statistics of the People's Republic of China. China Statistical Yearbook[M]. Beijing:China Statistics Press, 2016.
|
[3] |
CENNI R, FRANDSEN F, GERHARDT T, et al. Study on trace metal partitioning in pulverized combustion of bituminous coal and dry sewage sludge[J]. Waste Management, 1998, 18(6/7/8):433-444.
|
[4] |
DESROCHES-DUCARNE E, MARTY E, MARTIN G, et al. Co-combustion of coal and municipal solid waste in a circulating fluidized bed[J]. Fuel, 1998, 77(12):1311-1315.
|
[5] |
WU H, GLARBORG P, FRANDSEN F J, et al. Co-combustion of pulverized coal and solid recovered fuel in an entrained flow reactor-general combustion and ash behavior[J]. Fuel, 2011, 90(5):1980-1991.
|
[6] |
魏小林, 田文栋, 盛宏至, 等. 煤与垃圾在流化床中的混烧利用技术分析[J]. 环境工程, 2000, 18(4):37-39. WEI X L, TIAN W D, SHENG H Z, et al. Analysis of co-combustion technology of coal and municipal solid waste[J]. Chinese Journal of Environmental Engineering, 2000, 18(4):37-39.
|
[7] |
胡建杭, 王华, 何方, 等. 城市生活垃圾与煤混烧灰渣的熔融特性及成分分析[J]. 环境科学学报, 2003, 23(4):540-545. HU J H, WANG H, HE F, et al. Melting characteristics and compounds analysis of slag from mixed combustion of MSW with coal[J]. Acta Scientiae Circumstantiae, 2003, 23(4):540-545.
|
[8] |
魏砾宏, 马婷婷, 杨天华, 等. 污泥/煤混烧灰的结渣特性及矿物质转变规律[J]. 中国电机工程学报, 2015, 35(18):4697-4702. WEI L H, MA T T, YANG T H, et al. Slagging characteristics and minerals conversion of co-firing ash of coal and sludge at high temperature[J]. Proceedings of the CSEE, 2015, 35(18):4697-4702.
|
[9] |
殷炳毅. 生物质混煤的灰熔融特性研究[D]. 济南:山东大学, 2008. YIN B Y. Study on the ash fusion property of biomass and coal blending[D]. Jinan:Shandong University, 2008.
|
[10] |
陈吟颖. 生物质与煤共热解试验研究[D]. 保定:华北电力大学, 2007. CHEN Y Y. Experimental study on co-pyrolysis of biomass and coal[D]. Baoding:North China Electric Power University, 2007.
|
[11] |
彭娜娜, 刘婷婷, 盖超, 等. 城市垃圾生物质组分混煤燃烧过程积灰结渣的特性及其灰分环境效应[J]. 环境工程学报, 2017, 11(2):1075-1079. PENG N N, LIU T T, GAI C, et al. Fouling and slagging issues and environmental impact of blend ash during co-combustion of biomass waste of municipal solid waste with coal[J]. Chinese Journal of Environmental Engineering, 2017, 11(2):1075-1079.
|
[12] |
张益, 杨承休. 上海市区生活垃圾产生量及成分分析[J]. 环境卫生工程, 2000, (3):104-106. ZHANG Y, YANG C X. The output and component analysis of domestic solid waste in Shanghai residential area[J]. Environmental Health Engineering, 2000, (3):104-106.
|
[13] |
王穗兰, 王汝佩, 李祺, 等. 生活垃圾的控氧热转化中试实验[J]. 环境工程学报, 2017, 11(5):3107-3114. WANG S L, WANG R P, LI Q, et al. Pilot test of heat transfer in solid waste control oxygen[J]. Chinese Journal of Environmental Engineering, 2017, 11(5):3107-3114.
|
[14] |
SUKSANKRAISORN K, PATUMSAWAD S, VALLIKUL P, et al. Co-combustion of municipal solid waste and Thai lignite in a fluidized bed[J]. Energy Conversion & Management, 2004, 45(6):947-962.
|
[15] |
WAN H P, CHANG Y H, CHIEN W C, et al. Emissions during co-firing of RDF-5 with bituminous coal, paper sludge and waste tires in a commercial circulating fluidized bed co-generation boiler[J]. Fuel, 2008, 87(6):761-767.
|
[16] |
WU H, GLARBORG P, FRANDSEN F J, et al. Trace elements in co-combustion of solid recovered fuel and coal[J]. Fuel Processing Technology, 2013, 105:212-221.
|
[17] |
WANG K S, CHIANG K Y, LIN S M, et al. Effects of chlorides on emissions of hydrogen chloride formation in waste incineration[J]. Chemosphere, 2010, 38(7):1571-1582.
|
[18] |
冯丽, 蒋旭光, 李春雨, 等. 模拟垃圾焚烧中HCl实时释放特性试验研究[J]. 中国电机工程学报, 2010, 30(23):45-50. FENG L, JIANG X G, LI C Y, et al. Experimental study on HCl real-time emission characteristics in simulated municipal solid waste incineration[J]. Proceeding of the CSEE, 2010, 30(23):45-50.
|
[19] |
武博然, 王冬扬, 柴晓利. 生活垃圾焚烧飞灰生物脱氯机制研究[J]. 中国环境科学, 2015, 35(8):2470-2476. WU B R, WANG D Y, CHAI X L. Dechlorination mechanism of municipal solid wastes incineration fly ash by biological process[J]. China Environmental Science, 2015, 35(8):2470-2476.
|
[20] |
RAMSDEN A R, SHIBAOKA M. Characterization and analysis of individual fly-ash particles from coal-fired power stations by a combination of optical microscopy, electron microscopy and quantitative electron microprobe analysis[J]. Atmospheric Environment, 1982, 16(9):2191-2197.
|
[21] |
SEAMES W S. An initial study of the fine fragmentation fly ash particle mode generated during pulverized coal combustion[J]. Fuel Processing Technology, 2003, 81(2):109-125.
|
[22] |
LI Y, XING X, XU B, et al. Effect of the particle size on co-combustion of municipal solid waste and biomass briquette under N2/O2 and CO2/O2 atmospheres[J]. Energy and Fuels, 2017, 31(1):932-940.
|
[23] |
樊冲, 汪军, 倪昊. 生物质与煤共燃结渣特性的研究[J]. 上海理工大学学报, 2010, 32(3):213-218. FAN C, WANG J, NI H. Study on slagging characteristics of co-combustion of biomass and coal[J]. Journal of University of Shanghai for Science and Technology, 2010, 32(3):213-218.
|
[24] |
张德祥, 龙永华, 高晋生, 等. 煤灰中矿物的化学组成与灰熔融性的关系[J]. 华东理工大学学报(自然科学版), 2003, 29(6):590-594. ZHANG D X, LONG Y H, GAO J S, et al. Relationship between the coal ash fusibility and its chemical composition[J]. Journal of East China University of Science and Technology, 2003, 29(6):590-594.
|
[25] |
AGRANIOTIS M, NIKOLOPOULOS N, NIKOLOPOULOS A, et al. Numerical investigation of solid recovered fuels' co-firing with brown coal in large scale boilers-evaluation of different co-combustion modes[J]. Fuel, 2010, 89(12):3693-3709.
|
[26] |
李宝霞, 张济宇. 煤灰渣熔融特性的研究进展[J]. 现代化工, 2005, 25(5):22-26. LI B X, ZHANG J Y. Research progress of coal ash fusibility[J]. Modern Chemical Industry, 2005,25(5):22-26.
|
[27] |
SARABER A. Co-combustion and its impact on fly ash quality; pilot-scale experiments[J]. Fuel Processing Technology, 2012, 104:105-114.
|
[28] |
祝建中, 蔡明招, 陈烈强. 城市垃圾焚烧炉内残渣性质及结渣形成[J]. 城市环境与城市生态, 2002, 2:46-48. ZHU J Z, CAI M Z, CHEN L Q. Discussion of the properties and the slagging form of the solid residues in municipal solid waste incinerator[J]. Urban Environment and Urban Ecology, 2002, 2:46-48.
|
[29] |
谢明超. 多种生活垃圾组分燃烧过程中的重金属迁移特性研究[D]. 广州:华南理工大学, 2015. XIE M C. Study on the heavy metal transport characteristics of multicomponent domestic waste in the incineration process[D]. Guangzhou:South China University of Technology, 2015.
|
[30] |
FAN Y, ZHANG F, ZHU J, et al. Effective utilization of waste ash from MSW and coal co-combustion power plant-zeolite synthesis[J]. Journal of Hazardous Materials, 2008, 153(1/2):382-388.
|