GIEC OpenIR
Experimental Simulation on Chemical-looping Combustion of Cold Model
Huseyin Sozen; Wei Guoqiang; Li Haibin; He Fang; Huang Zhen
2014
Source PublicationThe Chinese Journal of Process Engineering
ISSN1009-606X
Volume14Issue:1Pages:47
AbstractThe pressure profiles, gas velocities, solid circulation rate, solids flux, residence time distribution of gas and particles in chemical-looping combustion reactors and gas leakage were studied in a cold flow model unit. And these parameters in both air and fuel reactors were measured in the experimental stage. The experimental results show that gas fluidization velocity in the air reactor is 1.8 m/s, gas fluidization velocity in the fuel reactor 0.5 m/s, and the bed materials inventory of the two reactors between 1.2 to 3.15 kg. The first cold flow model results show that the solid circulation rates are sufficient. The appropriate operating conditions are optimized and the summary of final changes is made the on cold model. The proposed design solutions are currently being verified in a cold flow model simulating the actual reactor (hot) system. This paper presents an overview of the research performed on a cold flow model and highlights the current status of the technology.
Keywordchemical-looping combustion cold flow model pressure profile gas velocity solid circulation rate
Language英语
Document Type期刊论文
Identifierhttp://ir.giec.ac.cn/handle/344007/34545
Collection中国科学院广州能源研究所
Affiliation中国科学院广州能源研究所
First Author AffilicationGuangZhou Institute of Energy Conversion,Chinese Academy of Sciences
Recommended Citation
GB/T 7714
Huseyin Sozen,Wei Guoqiang,Li Haibin,et al. Experimental Simulation on Chemical-looping Combustion of Cold Model[J]. The Chinese Journal of Process Engineering,2014,14(1):47.
APA Huseyin Sozen,Wei Guoqiang,Li Haibin,He Fang,&Huang Zhen.(2014).Experimental Simulation on Chemical-looping Combustion of Cold Model.The Chinese Journal of Process Engineering,14(1),47.
MLA Huseyin Sozen,et al."Experimental Simulation on Chemical-looping Combustion of Cold Model".The Chinese Journal of Process Engineering 14.1(2014):47.
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