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Concept and application of anaerobic suspended granular sludge bed (SGSB) reactor for wastewater treatment
引用本文:Mingxia ZHENG,Zhong YAN,Jiane ZUO,Kaijun WANG. Concept and application of anaerobic suspended granular sludge bed (SGSB) reactor for wastewater treatment[J]. Frontiers of Environmental Science & Engineering, 2014, 8(5): 797-804. DOI: 10.1007/s11783-013-0597-x
作者姓名:Mingxia ZHENG  Zhong YAN  Jiane ZUO  Kaijun WANG
作者单位:[1]State Key Joint Laboratory of Environmental Simulation and Pollution Control, School of Environment, Tsinghua University, Beijing 100084, China [2]Beijing Municipal Research Institute of Environmental Protection, Beijing 100037, China
基金项目:Acknowledgements This study was supported by the National Natural Science Foundation of China (Grant Nos. 50978146 and 51278271) and by the Environmental Scientific Research in the Public Interest (No. 201009017) from the Ministry of Environmental Protection of China.
摘    要:Bed expansion serves an important function in the design and operation of an upflow anaerobic reactor. An analysis of the flow pattern of expanded granular sludge bed (EGSB) reactors shows that most EGSB reactors do not behave as expanded bed reactors, as is widely perceived. Rather, these reactors behave as fluidized bed reactors based on the classic chemical reactor theory. In this paper, four bed expansion modes, divided as static bed, expanded bed, suspended bed, and fluidized bed, for bioreactors are proposed. A high-rate anaerobic suspended granular sludge bed (SGSB) reactor was then developed. The SGSB reactor is an upflow anaerobic reactor, and its expansion degree can be easily controlled within a range to maintain the suspended status of the sludge bed by controlling upfiow velocity. The results of the full-scale reactor confirmed that the use of SGSB reactors is advantageous. The full-scale SGSB reactor runs stably and achieves high COD removal efficiency (about 90%) at high loading rates (average 40 kg-COD·m^-3·d^-1, maximum to 52 kg·COD·m^-3 ·d^-1) based on the SGSB theory, and its expansion degree is between 22% and 37%.

关 键 词:上流式厌氧反应器  膨胀颗粒污泥床  悬浮颗粒  污水处理  EGSB反应器  膨胀床反应器  流化床反应器  应用

Concept and application of anaerobic suspended granular sludge bed (SGSB) reactor for wastewater treatment
Mingxia Zheng,Zhong Yan,Jiane Zuo,Kaijun Wang. Concept and application of anaerobic suspended granular sludge bed (SGSB) reactor for wastewater treatment[J]. Frontiers of Environmental Science & Engineering, 2014, 8(5): 797-804. DOI: 10.1007/s11783-013-0597-x
Authors:Mingxia Zheng  Zhong Yan  Jiane Zuo  Kaijun Wang
Affiliation:1. State Key Joint Laboratory of Environmental Simulation and Pollution Control, School of Environment, Tsinghua University, Beijing 100084, China2. Beijing Municipal Research Institute of Environmental Protection, Beijing 100037, China
Abstract:Bed expansion serves an important function in the design and operation of an upflow anaerobic reactor. An analysis of the flow pattern of expanded granular sludge bed (EGSB) reactors shows that most EGSB reactors do not behave as expanded bed reactors, as is widely perceived. Rather, these reactors behave as fluidized bed reactors based on the classic chemical reactor theory. In this paper, four bed expansion modes, divided as static bed, expanded bed, suspended bed, and fluidized bed, for bioreactors are proposed. A high-rate anaerobic suspended granular sludge bed (SGSB) reactor was then developed. The SGSB reactor is an upflow anaerobic reactor, and its expansion degree can be easily controlled within a range to maintain the suspended status of the sludge bed by controlling upflow velocity. The results of the full-scale reactor confirmed that the use of SGSB reactors is advantageous. The full-scale SGSB reactor runs stably and achieves high COD removal efficiency (about 90%) at high loading rates (average 40 kg-COD·m-3·d-1, maximum to 52 kg-COD·m-3·d-1) based on the SGSB theory, and its expansion degree is between 22% and 37%.
Keywords:expansion characteristic   high-rate bioreactor  anaerobic suspended granular sludge bed   expandedgranular sludge bed reactor
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