期刊文献+

燃煤电站汞排放分布及控制研究的进展 被引量:38

A Review of Mercury Speciation and Control for Coal-fired Power Plants
在线阅读 下载PDF
导出
摘要 综述了燃煤电站汞排放分布及其控制领域的研究现状。燃煤过程汞各种形态的分布规律可通过多种测量方法获得,理论上可应用平衡热力学以及化学反应动力学来估算烟气、灰渣中汞的分布。平衡热力学的计算结果揭示了各种形态汞形成的基本反应途径,能粗略估计系统在某一平衡态的主要产物分布;而反应动力学应用一系列均相氧化反应和多相反应原理,可描述系统内化合物的生成与反应速度,因而更加接近实际。目前有多种在研的汞控制技术,煤的清洁技术,常规污染物控制技术,如湿法洗涤和烟气中喷入活性炭吸附剂方式等较有发展潜力,但现在还没有一种适用性强的技术可广泛推广,最终汞脱除技术的发展须依赖于理论上的突破。 A summary of the status of research related to mercury speciation and progress in the development of promising control technologies for coal-fired power plants are provided. Percentage emissions of mercury for coal combustion can be measured based on several methods. Calculations of thermodynamic equilibrium and kinetic mechanisms of chemistry reactions were used to predict the mercury species throughout a combustion system. Equilibrium calculations results were useful in providing a general understanding of mercury reactions and the speciation of mercury. Kinetics mechanisms of homogeneous and heterogeneous mercury chemistry are currently believed to play an important role. Kinetic calculations showed certain mercury compounds form and concentration, however much remains to be learned. Currently many strategies for mercury control are being investigated. The most promising technologies included coal cleaning methods, existing flue gas control technologies such as control in wet scrubbers and dry injection of a sorbent such as activated carbon into the flue gas, There is still no single best technology that can be broadly applied. Significant advances in control technology will depend on understanding the chemical mechanisms of mercury transformation and control.
出处 《电站系统工程》 北大核心 2006年第1期44-46,56,共4页 Power System Engineering
基金 国家自然科学基金(50476056) 863计划资助(2005AA520080)
关键词 汞形态分布 汞控制 燃煤电站 mercury speciation, mercury control coal-fired power plants
  • 相关文献

参考文献16

  • 1L Levin, M A Allan, J Yager. Assessment of source-receptor relationships for utility mercury emissions [A]. Proceedings of theAir Quality Ⅱ: Mercury, Trace Elements, and Particulate Matter Conference[C]. McLean: VA, 2000. A 5-3.
  • 2杨振宇,羌宁,季学李.美国燃煤电厂锅炉烟气中汞的研究进展[J].能源环境保护,2003,17(5):3-7. 被引量:34
  • 3J Kilgroe. EPA mercury emission control study: preliminary results[A]. Presented at the Air Quality Ⅱ: Mercury, Trace Elements, and Particulate Matter Conference[C]. McLean, VA, 2000. A4-1.
  • 4Prcstbo E M, Bloom N S. Mercury speciation adsorption (MESA)method for combustion flue gas: methodology, artifacts,intercomparison, and atmospheric implications[J]. Water, air and soil pollution, 1995, 80: 145-148.
  • 5詹靖,徐明厚,乔瑜,韩军.汞的均相氧化机理模型的比较与研究[J].中国电机工程学报,2004,24(1):196-200. 被引量:13
  • 6Keating M H, Mahaffey K R, Schoeny R. Mercury study report to Congress[R]. 1997, 11. EPA-452/R-97-004b. NC.
  • 7An Assessment of Mercury Emissions from U.S. Coal-Fired Power Plants [R]. 1000608, EPRI, 2000.
  • 8J H Pavlish, E A Sondreal, M D Mann, et al. Status review of mercury control option for coal-fired power plants[J]. Fuel Processing Technology, 2003, 82:89-165.
  • 9D Laudal. Pilot-Scale Evaluation of the Impact of Selective Catalytic Reduction for NO, on Mercury Speciation[R]. 1000755, EPRI, 2000.
  • 10C L Senior, J J Helble, A F Saroflm. Predicting the speciation of mercury emissions from coal-fired power plants[A]. Proceedings of the Air Quality Ⅱ: Mercury, Trace Elements, and Particulate Matter Conference[C]. McLean, VA, 2000. A5-2.

二级参考文献17

  • 1Keating, M H, K R Mehaffey, R Schoeny, G E Rice, O R Bullock, R B Ambrose, Jr, J Swartout, and J W Nichols. Mercury Study Report to Congress, Volume I I.EPA- 452/R- 97- 004b. Office Air Quality Planning and Standards and Office of Research and Development, Research Triangle Park, NC. December 1997.
  • 2Topical Report No. 5 Trace Element Removal Study."Prepared for U.S.Department of Energy' s Pittsburgh Technology Center by ICF Kaiser Engineers, Fairfax, VA. March 1995.
  • 3Grover, C J. Butz, S. Haythomthwaite, J Smith, M Fox, T Hunt, R Chang, T Brown, and E Prestbo. " Mercury Measurements Across Particulate Collectors of PSCO Coal - fired Electric Utility Boilers" EPRI/DOE/EPA Mega- Symposium, Atlanta, GA. Aulgust 1999.
  • 4Madden, D A, and M J Holmes. "B&W' s E - LIDS TM Process Advanced SOx, Particulate, and Air Toxics Control for the Year 2000," presented at the 1998 EPRI - DOE- EPA Combined Utility Air Pollutant Control Symposium, Washington, DC. August 25 - 29, 1997.
  • 5Mclarnon, C R, M L Horvath, and P D Boyle. Electro-Catalytic Oxidation Technology Applied to Mercury and Trace Elements Removal from Flue Gas," presented at Conference on Air Quelity II,McLean, VA. September 20, 2000.
  • 6McLarnon, C R, and M D Jones. "Electro- Catalytic Oxidation Process for Multi - Pollutant Control at FirstEnergy' s R E Buyer Genorating Station," presented at Electric Power 2000, Cincinnati, OH.April 5, 2000.
  • 7Livengood, C.D, and M H Mendelsohn. "Process for Combined Control of Mercury and Nitric Oxide," presented at the EPRI/DOE/EPA Combined Utility Air Pollution Control Symposium, Atlanta, GA, EPRI TR-113187-V2, pp 19- 30 through 19-41. August 1999.
  • 8McManus, T J, R O Agbede, and R P Khoseh. "Conversion of Elemental Mercury to the Oxidized Form in a Baghouse,"Paper 98-WP79A.01,presented at the A&WMA 91st Annual Meeting,San Diego,CA,June 14-18, 1998.
  • 9Ronny Dumarey, Richard Dama. Pyrolysis/CVAAS for determination of mercury in solid environmental samples. Mikrochimica Acta, 1984, 3(3-4) : 191- 198.
  • 10James D. IGlgroe, Charles B. Sedman, Ravi K. Srivastava, Jeffiey V. Ryan, C W Lee, and Susan A. Thomeloe. Control of Mercury Emissions from Coal - Fired Electric Utility Boilers: Interim Report. U.S.Environmental Protection Agency, Office of Researchand Development,National Risk Management Research Laboratsory, Air Pollutiou Prevention and Control Division, Research Triangle Park, NC 27711.

共引文献45

同被引文献389

引证文献38

二级引证文献258

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部