博碩士論文 943306004 詳細資訊




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姓名 林世欽(Shih-Chin Lin)  查詢紙本館藏   畢業系所 環境工程研究所
論文名稱 台灣地區水泥製造業NOX與CO2排放特性及DeNOX設施成效探討
(Characteristics of NOX & CO2 Emissions from Cement Manufacturing Processes in Taiwan)
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摘要(中) 水泥製造業是一重要基本工業,也是帶動國家民生、交通、國防等相關工業發展之基礎;但另一方面,水泥製造業卻是一極為耗能、污染量大之工業,因此在國人生活水平提高、環保意識抬頭之後,水泥廠更成為民眾陳情抗爭之主要對象之一。以往民眾對於水泥廠關切的是其逸散粉塵問題,造成空氣中粒狀污染物濃度增高,嚴重影響環境空氣品質;但在各廠陸續裝設靜電集塵器等集塵設施,並將其視為水泥廠的標準配備後,逸散粉塵問題已獲得長足改善。
然而,水泥製造業之旋窯須以1,400℃以上高溫燒結,並燃燒煤炭作為燃料,產生大量之氮氧化物(NOX)與二氧化碳(CO2)二類污染物,前者為臭氧(O3)及酸雨之前趨物,後者為溫室效應氣體,均為現今國際間最為關心的空氣污染物。因此,本研究乃針對水泥製造業產生NOX與CO2之排放問題進行探討,透過文獻回顧、污染物監測分析資料以及質量平衡計算等方式,進行台灣地區水泥業NOX及CO2排放係數之推估,同時並估算污染物之排放量,提供政府作為業別管制之參考。
本研究第二部份則是探討水泥製造業可行之DeNOX設施,由製程改善與管末處理二方式進行介紹。並選定花蓮一家水泥廠,實廠進行SNCR操作測試,透過CEMS自動連續監測系統,了解尿素噴注量與NOX削減量之關係,探討SNCR之處理效率;同時並分析尿素噴注量與其價格,以及空污費徵收標準,評估水泥廠以SNCR處理之經濟效益。此研究結果將可提供國內水泥業者,作為評估設置DeNOX設施時之參考。
摘要(英) The cement manufacturing process is an important basic industry, which gives the fresh impetus to the people’s livelihood, public transportation and national defense. On the other hand, cement manufacturing process consumes large quantity of energy and causes serious pollution; and has become one of the main subjects for public protest since the residents’ living standard and eco-awareness are enhanced. The public used to concern the increased particulate matter concentration caused by dust emission from cement plants. This problem was eventually solved after effective dust collecting equipments such as electrostatic precipitator(EP) were installed and regarded as the standard facilities by cement plants. In the cement manufacturing processes, raw materials are calcined with coal as a fuel at the temperature over 1,400oC inside the rotary kiln, which generates large quantity of NOX(the precursor of O3 & acid rain) and CO2(the major greenhouse gas). The purpose of this study is to investigate NOX and CO2 emitted from cement plants. Through literatures review, analysis of CEMS(continuous emission monitoring system) data and mass balance calculation, this study has estimated the emission factors and quantities of NOX & CO2 from cement industry in Taiwan.
Part II of this study is motivated to discuss the feasibility of DeNOX technologies for cement industry, including process modification and installation of air pollution control devices (APCD) in cement plants. A real SNCR(selective non-catalytic Reduction) process was taken as an example in one Hualian cement plant. CEMS data, this study analyzed the correlation between urea injection rate and NOX emission, to calculate the NOX reduction efficiency achieved with the SNCR. Based on the urea injection rate / cost, and the standard to impose air pollution fee, the economic effectiveness of applying SNCR process is evaluated. This study will provide the reference for domestic cement plants to evaluate the suitability of applying DeNOX technology.
關鍵字(中) ★ 低氮氧化物燃燒器
★ 預鍛爐
★ 選擇性非觸媒還原
★ 尿素
★ 溫室效應
★ 水泥
★ 旋窯
★ 熟料
★ 排放係數
★ 氮氧化物
★ 二氧化碳
關鍵字(英) ★ NOX
★ CO2
★ DeNOX
★ urea
★ calciner
★ SNCR
★ low NOX burner(LNB)
★ cement
★ rotary kiln
★ clinker
★ emission factor
論文目次 目 錄
頁次
中文摘要 i
英文摘要 ii
誌謝 iii
目錄 iv
圖目錄 vi
表目錄 vii
一、 前言 1
1-1 研究緣起 1
1-2 研究目的與內容 3
二、 文獻回顧 5
2-1 水泥製造業製程與污染特性 5
2-1-1 水泥製程介紹 5
2-1-2 污染源及污染特性 10
2-1-3 能源消耗問題 15
2-2 水泥製造業污染防制措施介紹 18
2-2-1 粒狀污染物控制技術 18
2-2-2 氮氧化物可行控制技術 22
2-3 水泥製造業污染物排放係數 40
2-3-1 有關NOX之排放係數 40
2-3-2 有關CO2之排放係數 42
2-4 我國水泥製造業現況 44
2-4-1 我國水泥業現況 44
2-4-2 花蓮縣水泥廠現況 45
2-5 我國水泥製造業空氣污染管制現況 49
2-5-1 水泥製造業空氣污染物排放標準 49
2-5-2 最佳可行控制技術 52
2-5-3 空污費徵收費率 54
2-6 水泥製造業未來發展趨勢 56
2-6-1 製程改善 56
2-6-2 能源節省與清潔生產 56
2-6-3 污染防制與永續發展課題 57
三、 研究流程與方法 62
3-1 水泥製造業NOX與CO2排放係數推估 62
3-2 水泥製造業可行DeNOX技術建議與效益探討 66
四、 結果與討論 69
4-1 水泥製造業NOX與CO2排放係數 69
4-2 水泥製造業NOX、CO2排放量推估 79
4-3 水泥製造業可行DeNOX技術建議 80
4-4 SNCR處理效率探討 80
4-5 SNCR設置經濟效益評估 86
4-6 水泥製造業之污染與能源問題 92
4-7 水泥製造業未來發展方向 93
五、 結論與建議 95
5-1 結論 95
5-2 建議 97
參考文獻 99
參考文獻 (1)U.S. EPA , “AP 42, Fifth Edition, Compilation of Air Pollutant Emission Factors, Volume 1: Stationary Point and Area Sources, Chapter 11: Mineral Products Industry”, 2007.
(2)Greer, W. L., Dougherty, A., and Sweeney, D. M., “Air Pollution Engineering Manual second edition, Chapter 15 Mineral Products Industy – Portland Cement”, Air & Waste Management Association, Edited by Wayne T. Davis, 2000.
(3) Hendriks, C. A., Worrell, E., Jager, D., Blok, K., and Riemer, P., ”Emission Reduction of Greenhouse Gases from the Cement Industry”, IEA Greenhouse Gas R&D Programme, Cheltenham, UK, 1999.
(4)Cement Sustainability Initiative (CSI), “CO2 Accounting and Reporting Standard for the Cement Industry - The Cement CO2 Protocol”, 2005.
(5)Cement Sustainability Initiative (CSI), ”Guidelines for the Selection and Use of Fuels and Raw Materials in the Cement Manufacturing Process”, 2005.
(6)U.S. EPA ,”Uncontrolled Emission Factor Listing for Criteria Air Pollutant”, 2001.
(7)U.S. EPA, “Source Classification Codes (SCC)”, Technology Transfer Network Clearinghouse for Inventories & Emissions Factors, February 2004.
(8)CEMBUREAU(The European Cement Association),” Climate Change – CO2 Emissions Trading Points of Convergence within the Cement Industry ”, 2006.
(9)CEMBUREAU(The European Cement Association),“Green Paper on Energy Efficiency - A View from the European Cement Industry”, 2006.
(10)Wulf-Schnabel, J. and Lohse, J., “Economic Evaluation of NOX Abatement Techniques in the European Cement Industry”, September 1998.
(11)Wojichowski, D. L., “De-NOX Technologies: Lower-Cost, High- Performance, SNCR Systems”, DNT’s Website, 2001.
(12)Environmental Technology Program for industry(ETPi), ”Responding 0f Environmental Challenge – Cement Industry”, Federation of Pakistan Chambers of Commerce and Industry, 2000.
(13) Turnell, A., “NOX Formation and Control in Cement Rotary Kilns, Fact Sheet #2”, 2004.
(14)U.S. EPA, “Air Pollution Technology Fact Sheet, Name of Technology:Selective Non-Catalytic Reduction(SNCR)”, EPA-CICA Fact Sheet, EPA-452/F-03-031, 2003.
(15)U.S. EPA, “Air Pollution Technology Fact Sheet, Name of Technology:selective catalytic reduction(SCR)”, EPA-CICA Fact Sheet, EPA-452 /F-03-032, 2003.
(16)Havens, J. W., “Comments Regarding Control Measure under Consider- ation by the OTC”, 2006.
(17)Neuffer, B., “NOX Controls For Existing Utility Boilers”, 2006.
(18)ERG, Inc.,“Assessment of NOX Emissions Reduction Strategies for Cement Kilns – Ellis County, Final Report”, Portland Cement Association(PCA), 2006.
(19)Institute of Clean Air Companies, Inc., “White Paper:Selective Non- Catalytic Reduction(SNCR) for Controlling NOX Emissions”, ICAC 2000.
(20)Northeast States for Coordinated Air Use Management (NESCAUM), “Status Reports on NOX Controls for Gas Turbines, Cement Kilns, Industrial Boilers, and Internal Combustion Engines:Technologies & Cost Effectiveness”, 2000.
(21)Gossman, R., “The Clean Air Act and Cement Kiln NOX Emissions”, HWF NOTES, 1993.
(22)Institute of Clean Air Companies(ICAC), “Brief Descriptions of Air Pollution Control Technologies - NOX Controls Technologies”, the Website of ICAC, 2007.
(23)U.S. EPA, “Air Pollution Technology - NOX Control by Combustion Modification”, The Website of U.S. EPA, 2007.
(24)U.S. National Energy Technology Labortory(NETL), “Advanced NOx Emissions Control NOX Reduction Technologies - NOX Reduction Tech- nologies”, The Website of NETL, 2007.
(25) Neuffer, B., “List of Stationary Source NOX Control Techniques, ”, 2006.
(26)French Agency for Environment and Energy Management, “The French Cement Industry Guide to NOX Emission Reduction Measures”, A Convention between ADEME & the Cement Industry under the aegis of MEDD(Ecology and Sustainable Development Ministry), 2002.
(27)Greer, W. L. and Lesslie, C. D., “Variability of NOX Emissions from Precalciner Cement Kiln Systems”, Trinity Consultants, 2004.
(28)October 5, 2005, Draft-Draft-Draft-Draft-Draft http://www.tceq.state.tx.us/assets/public/implementation/air/sip/agreements/BSA/list.pdf
(29)U.S. EPA Office of Air and Radiation, Office of Air Quality Planning and Standards, “Alternative Control Techniques Document-NOX Emissions from Cement Manufacturing”, EPA-453/R-94-004, March 1994.
(30)NESCAUM(Northeast States for Coordinated Air Use Management), “Status Report on NOX Controls for Gas Turbines Cement Kilns Industrial Boilers Internal Combustion Engines-Technologies & Cost Effectiveness”, December 2000.
(31)Linero, A. A., Leibacher, U., and Bellin, C., “High Dust SCR Succeeds at Cementeria di Monselice”, the Annual Meeting of the Air & Waste Management Association, June 2007.
(32)Schreiber, R. J., Russell, C. O. and Evers, J., “NOX Cement Industry Emission Control Technology Update”, Schreiber Yonley & Associates, the Annual Meeting of the Air & Waste Management Association, June 2007.
(33)Klafka, S. J., “Recent Air Pollution Control and Permit Experience in the Lime Industry”, Wingra Engineering, S.C., the Annual Meeting of the Air & Waste Management Association, June 2007.
(34)日揚環境工程有限公司,「花蓮縣特性產業空氣污染狀況分析及其污染防制設施成效探討」期末報告定稿本,花蓮縣環境保護局,民國九十三年。
(35)日揚環境工程有限公司,「花蓮縣特性產業空氣污染管制計畫」期末報告定稿本,花蓮縣環境保護局,民國九十四年。
(36)中國技術服務社工業污染防治技術服務團,「水泥業空氣污染防制」,經濟部工業局,民國八十三年六月。
(37)中國技術服務社工業污染防治技術服務團,「水泥業工安環保整合性技術手冊」,經濟部工業局,經濟部工業局,民國八十九年九月。
(38)中國技術服務社工業污染防治技術服務團,「水泥業空氣污染防制輔導專案綜合報告」,經濟部工業局,民國八十七年。
(39)郝吉明、馬廣大,「空氣污染控制工程」,桂冠圖書公司,民國八十三年十二月。
(40)吳再益、林唐裕,「我國水泥工業供需問題與因應對策探討」,台灣經濟研究院,民國八十三年。
(41)蘇茂豐、謝禎檣、陳仁亮、蘇進興,「水泥業溫室效應氣體盤查—以東南水泥公司為例」,財團法人綠色生產力基金會,民國九十三年。
(42)陳家榮、馮炳勳,「臺灣與日本水泥業能源使用效率之比較分析」,能源季刊第33卷,民國九十二年。
(43)馮炳勳、陳家榮,「國外水泥業因應CO2排放減量策略」,經濟部工業局,民國九十年。
(44)李秋美,「水泥業能源使用現況」,工業技術研究院能源與資源研究所,民國九十三年。
(45)蔣本芝,「我國工業製程、溶劑及其他產品使用部門溫室氣體排放推估」,財團法人中技社環境技術發展中心,民國八十九年。
(46)楊任徵,「台灣地區二氧化碳排放趨勢與抑制潛力探討」,能源季刊,第二十七卷第四期,民國八十六年。
(47)林素貞、沈宗桓、黃瓊儀,「我國工業部門二氧化碳排放與能源密集度及生產力變動趨勢分析」, 台灣綠色生產力基金會能源節約技術報導第52期,民國九十三年。
(48)林素貞、張子見、張翊峰、李正豐,「台灣地區產業二氧化碳之變動趨勢分析與減量策略」, 工業污染防治第十七卷第三期,民國八十七年。
(49)林志恩,「添加不同沸石於金屬觸媒內進行碳氫化合物還原氮氧化物之研究」,朝陽科技大學碩士論文,民國九十四年。
(50)張木彬、李灝銘、吳非霖,「低氮氧化物燃燒技術:再燃燒(reburn)技術介紹」,環保訓練園地雙月刊第69期,2003。
(51)行政院環境保護署,「台灣地區水泥生產製造過程之社會外部成本研究」,民國八十二年六月。
指導教授 張木彬(M. B. Chang) 審核日期 2007-7-24
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