李超, 周立祥, 王世梅.复合硫杆菌浸出污泥中重金属的效果及与pH和ORP的关系.环境科学学报,2008,28(6):1155-1160 Li C., Zhou L.X., Wang S.M. Bioleaching of heavy metals from municipal sludge by the co-inoculation of two acidophilic Thiobacillus. Acta Scientiae Circumstantiae, 2008,28(6):1155-1160(in Chinese)
[2]
宋兴伟, 周立祥.生物沥浸处理对城市污泥脱水性能的影响研究.环境科学学报, 2008,28(10):2012-2017 Song X.W., Zhou L.X. The influence of bioleaching on dewaterability of municipal sewage sludge. Acta Scientiae Circumstantiae,2008,28(10):2012-2017(in Chinese)
[3]
刘奋武, 周立祥.不同能源物质配合及化学强化对生物沥浸法提高城市污泥脱水性能的效果.环境科学学报, 2009,29(5):974-979 Liu F.W., Zhou L.X. Enhancing dewaterability of municipal sewage sludge through the combined approaches of bioleaching and Fenton reaction. Acta Scientiae Circumstantiae, 2009,29(5):974-979(in Chinese)
[4]
刘奋武,周立祥,周俊,等.生物沥浸处理提高城市污泥脱水性能的中试研究:批式运行模式.环境科学,2011,32(7):2023-2029 Liu F.W.,Zhou L.X.,Zhou J.,et al. Improvement of municipal sewage sludge dewaterability by bioleaching: A pilot-scale study with sequence batch reaction mode. Environmental Science,2011,32(7):2023-2029(in Chinese)
[5]
刘奋武,周立祥,周俊,等.生物沥浸处理提高城市污泥脱水性能的中试研究:连续运行模式.环境科学,2011,32(10):2993-2998 Liu F.W.,Zhou L.X.,Zhou J.,et al. Improvement of municipal sewage sludge dewaterability by bioleaching: A pilot-scale study with a continuous plug flow reaction mode. Environmental Science,2011,32(10):2993-2998(in Chinese)
[6]
Zhang F. S., Yamasaki S., Nanzyo M. Application of waste ashes to agricultural land-effect of incineration temperature on chemical characteristics. Science of the Total Environment, 2001,264(3):205-214
[7]
Murakami T., Suzuki Y., Nagasawa H., et al. Combustion characteristics of sewage sludge in an incineration plant for energy recovery. Fuel Processing Technology, 2009,90(6):778-783
[8]
Yang Y. B., Sliwinski L., Sharifi V., et al. Dynamic behaviour of sewage sludge incineration in a large-scale bubbling fluidised bed in relation to feeding-rate variations. Fuel, 2008,87(8-9):1552-1563
[9]
Khiari B., Marias F., Vaxelaire J., et al. Incineration of as mall particle of wet sewage sludge: A numerical comparison between two states of the surrounding atmosphere. Journal of Hazardous Materials, 2007,147(3):871-882
[10]
Toledo J., Corella J., Corella L. The partitioning of heavy metals in incineration of sludges and waste in a bubbling fluidized bed 2. Interpretation of results with a conceptual model. Journal of Hazardous Materials, 2005,126(1-3):158-168
[11]
Houdková L., Borá J., Ucekaj V., et al. Thermal processing of sewage sludge—II. Applied Thermal Engineering, 2008,28(16):2083-2088
[12]
Khiari B., Marias F., Zagrouba F., et al. Use of a transient model to simulate fluidized bed incineration of sewage sludge. Journal of Hazardous Materials, 2006,135(1-3):200-209
[13]
王涛.污泥焚烧技术现状、存在问题与发展趋势.西南给排水,2007,29(1):7-11 Wang T. Sludge incineration technology status,problems and trends. South Water & Wastewater,2007,29(1):7-11(in Chinese)
[14]
Taib M. R., Swithenban K. J., Nasserzadeh V., et al. Investigation of sludge waste incineration in a novel rotating fluidized bed incinerator. Process Safety and Environmental Protection, 1999,77(5):298-304
[15]
彭小军, 孙向军, 傅传运.鼓泡流化床焚烧炉污泥干化焚烧处理特性及能耗研究.工业锅炉, 2011,(2):13-16 Peng X. J., Sun X. J., Fu C. Y. Study on characteristics of sludge dry & incinerating and energy consumption in bubbling FB incinerator. Industrial Boiler, 2011,(2):13-16(in Chinese)