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題名:富氧燃燒技術之應用與分析
書刊名:臺灣能源期刊
作者:張育誠吳國光焦鴻文簡國祥歐陽湘
作者(外文):Chang, Yu-chengWu, Kuo-kuangChiao, Ho-wenChien, Kuo-hsiangOu-yang, Shoung
出版日期:2015
卷期:2:3
頁次:頁323-331
主題關鍵詞:富氧燃燒液氧製程加熱Oxygen-enriched combustionLiquid oxygenProcess heating
原始連結:連回原系統網址new window
相關次數:
  • 被引用次數被引用次數:期刊(1) 博士論文(0) 專書(0) 專書論文(0)
  • 排除自我引用排除自我引用:1
  • 共同引用共同引用:0
  • 點閱點閱:2
富氧燃燒技術一直被廣泛認為有效節能手段之一,在早期就已經使用於鋼鐵與玻璃工業中,作為快速升溫與提高產能之用,後續更施行於燃燒、製鋁、石化、造紙、水泥、紡織、食品或使用鍋爐作業之產業。本文提供相關製程加熱工業之富氧燃燒技術與措施,同時整理國際上富氧燃燒研究案例與說明該項技術之節能潛力。另外,文中亦介紹目前常見的製氧原理,包括:深冷處理法、變壓吸附法與薄膜分離法,同時針對這些方法之優缺點進行分析說明。
Oxygen-enriched combustion technology has been widely recognized as one of the most effective methods in energy saving. It has been used early in the steel and iron, and glass-melting industries for rapid heating and increasing productivity. Due to the inherent advantages, oxygen-enriched combustion has recently gained popularity in the industrial combustion for aluminum, petroleum refining, pulp and paper, cement, textile, food processing, or in industries operated with boilers. This paper provides information related to the process heating for oxygen-enriched combustion technologies and industrial measures. In addition, this paper includes case studies from oxygen-enriched combustions around the world and the related information on energy saving potential when available. Also enclosed is an introduction of oxygen concentrators including cryogenic distillation, pressure swing adsorption, and membrane. Advantages and disadvantages for each method are analyzed and described.
期刊論文
1.Bejarano, P. A.、Levendis, Y. A.(2007)。Combustion of coal chars in oxygen-enriched atmosphere。Combustion Science and Technology,179(8),1569-1587。  new window
2.Choung, J. W.、Han, I. H.、Son, S. S.(2000)。Effect of oxygen enrichment in waste rubber incineration using rotary-kiln incinerator。Journal of Korean Solid Wastes Engineering Society,17,994-1000。  new window
3.Chin, S.、Jurng, J.、Lee, J.、Hur, J. H.(2008)。Oxygen-enriched air for co-incineration of organic sludges with municipal solid waste: A pilot plant experiment。Waste Manag,28(12),2684-2689。  new window
4.Fu, Z.、Zhang, S.、Li, X.、Shao, J.、Wnag, K.、Chen, H.(2015)。MSW oxy-enriched incineration technology applied in China: Combustion temperature, flue gas loss and economic considerations。Waste Manag,38,149-156。  new window
5.Karimi, H. J.、Saidi, M. H.(2010)。Heat Transfer and Energy Analysis of a Pusher Type Reheating Furnace Using Oxygen Enhanced Air for Combustion。Journal of Iron and Steel Research,17(4),12-17。  new window
6.Murphy, J. J.、Shadix, C. R.(2006)。Combustion kinetics of coal chars in oxygen-enriched environments。Combustion and Flame,144(4),710-729。  new window
7.McCubbin, N.(1996)。Numerous recovery options offer solutions for mill effluent closure。Pulp & Paper Magazine,1996(Mar.)。  new window
8.Wall, T. F.(2007)。Combustion processes for carbon capture。Proceedings of the Combustion Institute,31(1),31-47。  new window
9.Tseng, H.、Lohr, J. W.(2001)。Oxygen enrichment。International Cement Review。  new window
會議論文
1.Kiriishi, K.、Fujimine, T.、Hayakawa, A.(2009)。High efficiency furnace with oxy-fuel combustion and zero-emission by CO2 recovery。The 24th World Gas Conference。Buenos Aires, Argentina。  new window
2.Leger, C. B.、Friday, J. G.(2001)。Oxygen enrichment for cement kiln firing。IEEE Cement Industry Technical Conference。  new window
3.Nsakala, N. Y.、Marion, J.、Bozzuto, C.、Liljedahl, G.、Palkes, M.、Vogel, D.(2001)。Engineering feasibility of CO2 capture on an existing us coal-fired power plant。First national conference on carbon sequestration,(會議日期: May 14-17, 2001)。Washington, DC。  new window
4.Manickam, B.,、Dinkelacker, F.、Lobe, T.、Tertychnyy, M.(2009)。Enriched oxygen combustion simulation for rotary kiln application。European Combustion Meeting。  new window
5.Levy, J. M.、Chan, L. K.、Sarofim, A. F.(1981)。18th International Symposium on Combustion。18th International Symposium on Combustion。Pittsburgh, PA:Combustion Institute。  new window
6.Wang, C.、Jarlsson, J.、Hooey, L.、Boden, A.(2011)。Application of oxygen enrichment in hot stove and its potential influences on the energy system at an integrated steel plant。World Renewable Energy Congress 2011,(會議日期: 8-13, May 2011)。Linkoping, Sweden。  new window
7.Rameshni, M.(2002)。Cost effective options to expand SRU capacity using oxygen。Sulfur Recovery Symposium。WorleyParsons。  new window
8.Okawa, M.、Kimura, N.、Kiga, T.(1997)。The characteristic of pulverized coal combustion in the system of O2/CO2 combustion for CO2 recovery。ASPACC。  new window
圖書
1.Baukal, C. E.(1998)。Oxygen-Enriched Combustion。New York:CRC Press。  new window
2.Farzan, H.、McDonald, D. K.、McCauley, K. J.(2008)。Oxy-coal combustion pilot, IEAGHG International oxy-combustion network。Yokohama, Japan:Babcock & Wilcox。  new window
3.Wisconsin paper council(2005)。Pulp & paper industry energy best practice guidebook, Focus on Energy。  new window
其他
1.Kramer, K. J.,Masanet, Eric,Xu, Tengfang,Worrell, Ernst(2009)。Energy Efficiency Improvement and Cost Saving Opportunities for the Pulp and Paper Industry,Berkeley, CA:Ernest Orlando Lawrence Berkeley National Laboratory。,http://www.energystar.gov/ia/business/industry/downloads/Pulp_and_Paper_Energy_Guide.pdf,(LBNL-2268E)。  new window
 
 
 
 
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