WANG Kun, WANG Hong-jie, WEI Jia, ZHANG Ke-mu. Construction and Analysis of Heating Furnace Oxy-Fuel Combustion System Based on Chemical Looping Oxygen Production[J]. Journal of Northeastern University Natural Science, 2018, 39(10): 1408-1412.
[1]罗国民,郭汉杰,温志红.高温空气燃烧和富氧燃烧在加热炉生产应用中的对比研究[J].工业加热,2008(5):44-48.(Luo Guo-min,Guo Han-jie,Wen Zhi-hong.Effects on reheating furance of high temperature air combustion and oxygen combustion [J].Industrial Heating,2008(5):44-48.) [2]陆绍远.高炉煤气锅炉富氧燃烧技术应用研究[D].长沙:中南大学,2013.(Lu Shao-yuan.Application of oxygen-enriched combustion technology in blast furnace gas boiler[D].Changsha:Central South University,2013.) [3]闫振武.富氧燃烧在太钢加热炉的节能应用[J].钢铁,2015,50(2):85-89.(Yan Zhen-wu.Application of oxy-fuel burning technology in reheating furnace of TISCO [J].Iron & Steel,2015,50(2):85-89.) [4]刘彦丰,朱路平,阎维平.CO2捕集技术在燃煤电厂中应用的经济性评估[J].中国电机工程学报,2010,30(sup1):59-64.(Liu Yan-feng,Zhu Lu-ping,Yan Wei-ping.Economi assessment for the CO2 capture technologies applied in the coal-firing power plant[J].Proceedings of the CSEE,2010,30(sup1):59-64) [5]Mazas A N,Fiorina B,Lacoste D A,et al.Effects of water vapor addition on the laminar burning velocity of oxygen-enriched methane flames[J].Combustion and Flame,2011,158(12):2428-2440. [6]Li Z S,Zhang T,Cai N S.Experimental study of O2-CO2 production for the oxyfuel combustion using a Co-based oxygen carrier[J].Industrial & Engineering Chemistry Research,2008,47(19):7147-7153. [7]Moghtaderi B.Application of chemical looping concept for air separation at high temperatures [J].Energy & Fuels,2010,24:190-198. [8]王坤,于庆波,秦勤,等.基于铜基载氧体化学链空气分离技术实验研究[J].东北大学学报(自然科学版),2013,34(1):107-110.(Wang Kun,Yu Qing-bo,Qin Qin,et al.Experimental study of chemical looping air separation technology using Cu-based oxygen carrier [J].Journal of Northeastern University(Natural Science),2013,34(1):107-110.) [9]Song H,Shah K,Doroodchi E,et al.Reactivity of Al2O3-or SiO2-supported Cu-,Mn-,and Co-based oxygen carriers for chemical looping air separation [J].Energy & Fuels,2014,28(2):1284-1294. [10]Alalwan H A,Cwiertny D M,Grassian V H.Co3O4 nanoparticles as oxygen carriers for chemical looping combustion:a materials characterization approach to understanding oxygen carrier performance [J].Chemical Engineering Journal, 2017,319:279-287. [11]于庆波,秦勤,杨宗山,等.蓄热式原油加热炉的开发研究[J].东北大学学报(自然科学版),2001,22(6):649-651.(Yu Qing-bo,Qin Qin,Yang Zong-shan,et al.Research and development of regenerative crude oil heater [J].Journal of Northeastern University(Natural Science),2001,22(6):649-651.) [12]Wang K,Yu Q B,Qin Q.The thermodynamic method for selecting oxygen carriers used for chemical looping air separation [J].Journal of Thermal Analysis and Calorimetry,2013,112(2):747-753. [13]Wang K,Yu Q B,Qin Q,et al.Feasibility of a Co oxygen carrier for chemical looping air separation:thermodynamics and kinetics [J].Chemical Engineering & Technology,2014,37(9):1500-1506.