Review of inventory data for the thermal treatment of sewage sludge

被引:29
作者
Chang, Huimin [1 ]
Zhao, Yan [1 ]
Zhao, Silan [1 ]
Damgaard, Anders [2 ]
Christensen, Thomas H. [2 ]
机构
[1] Beijing Normal Univ, Sch Environm, Beijing 100875, Peoples R China
[2] Tech Univ Denmark, Dept Environm Engn, DK-2800 Lyngby, Denmark
关键词
Sewage sludge; Incineration; Pyrolysis; Gasification; Inventory data; MUNICIPAL SOLID-WASTE; AIR-STEAM GASIFICATION; HEAVY-METALS; ANAEROBIC-DIGESTION; PYROLYSIS; INCINERATION; VALORIZATION; PLANT; TEMPERATURE; COMBUSTION;
D O I
10.1016/j.wasman.2022.05.002
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The thermal treatment of sewage sludge has gained much interest in recent years, as exemplified by the 269 papers found in the scientific literature for the period 2010-2021. We identified 140 datasets in 57 papers presenting inventory data related to mass flows, energy and emissions for the incineration, gasification and pyrolysis of sewage sludge. Sewage sludge incineration (excess oxygen, 850-950 degrees C) is an established technology; however, data on flue gas cleaning and air emissions are scarce. The recovery of energy is close to the amount of energy used for incinerating dried sludge (0.2 kWh/kg TS), while dewatered sludge incineration uses more energy (1-2 kWh/kg TS) than what can be recovered. Sewage sludge gasification (limited oxygen, 650-950 degrees C) is an experimental technology with four outputs (kg/kg sludge TS): char 0.43, tar 0.02, fly ash 0.06 and syngas 0.53. The data vary significantly in this regard, suggesting than many factors affect the performance of the gasification process. Sewage sludge pyrolysis (no oxygen, 400-800 degrees C) is an experimental technology with five outputs (kg/kg sludge TS): char 0.53, tar 0.21, water < 0.05, fly ash set to zero and syngas 0.21. The values are somewhat different for digested sludge. Energy consumption for the pyrolysis of sewage sludge cannot be estimated from the literature. The current literature provides useful data on the main flows of thermal technologies, although large variations are in evidence. However, data are limited on energy consumption and recovery in general, and they are scarce on direct emissions to the air from incineration.
引用
收藏
页码:106 / 118
页数:13
相关论文
共 70 条
[1]   Life cycle assessment (LCA) of digested sewage sludge incineration for heat and power production [J].
Abusoglu, Aysegul ;
Ozahi, Emrah ;
Kutlar, A. Ihsan ;
Al-jaf, Hameed .
JOURNAL OF CLEANER PRODUCTION, 2017, 142 :1684-1692
[2]   Characterization of the bio-oil obtained by fast pyrolysis of sewage sludge in a conical spouted bed reactor [J].
Alvarez, J. ;
Lopez, G. ;
Amutio, M. ;
Artetxe, M. ;
Barbarias, I. ;
Arregi, A. ;
Bilbao, J. ;
Olazar, M. .
FUEL PROCESSING TECHNOLOGY, 2016, 149 :169-175
[3]   Sewage sludge valorization by flash pyrolysis in a conical spouted bed reactor [J].
Alvarez, Jon ;
Amutio, Maider ;
Lopez, Gartzen ;
Barbarias, Itsaso ;
Bilbao, Javier ;
Olazar, Martin .
CHEMICAL ENGINEERING JOURNAL, 2015, 273 :173-183
[4]   Techno-economic study for a gasification plant processing residues of sewage sludge and solid recovered fuels [J].
Alves, Octavio ;
Calado, Luis ;
Panizio, Roberta M. ;
Goncalves, Margarida ;
Monteiro, Eliseu ;
Brito, Paulo .
WASTE MANAGEMENT, 2021, 131 :148-162
[5]  
Alyaseri I, 2017, HELIYON, V3, DOI 10.1016/j.heliyon.2017.e00268
[6]  
[Anonymous], Peoples Republic of China
[7]   Process and technological aspects of municipal solid waste gasification. A review [J].
Arena, Umberto .
WASTE MANAGEMENT, 2012, 32 (04) :625-639
[8]   Energy and nutrient recovery from sewage sludge via pyrolysis [J].
Bridle, TR ;
Pritchard, D .
WATER SCIENCE AND TECHNOLOGY, 2004, 50 (09) :169-175
[9]  
[常风民 Chang Fengmin], 2013, [环境工程学报, Chinese Journal of Environmental Engineering], V7, P3583
[10]   Pyrolysis technologies for municipal solid waste: A review [J].
Chen, Dezhen ;
Yin, Lijie ;
Wang, Huan ;
He, Pinjing .
WASTE MANAGEMENT, 2014, 34 (12) :2466-2486