594
Views
10
CrossRef citations to date
0
Altmetric
Original Articles

An Overview of Clean Coal Technologies I: Pre-combustion and Post-combustion Emission Control

Pages 261-271 | Received 13 Nov 2009, Accepted 17 Dec 2009, Published online: 20 Jul 2010

References

  • Akar , G. , Arslan , V. , Ertem , M. E. and Ipekoglu , U. 2009 . Relationship between ash fusion temperatures and coal mineral matter in some Turkish coal ashes. . Asian J. Chem. , 21 : 2105 – 2109 .
  • Balat , M. 2008a . “ The future of clean coal ” . In Future Energy: Improved, Sustainable and Clean Options for Our Planet Edited by: Letcher , T. M. Amsterdamn : Elsevier . Chapter 2.
  • Balat , M. 2008b . Coal-fired power generation: Proven technologies and pollution control systems. . Energ. Source. Part A , 30 : 132 – 140 .
  • Bhanarkar , A. D. , Gavane , A. G. , Tajne , D. S. , Tamhane , S. M. and Nema , P. 2008 . Composition and size distribution of particules emissions from a coal-fired power plant in India. . Fuel , 87 : 2095 – 2101 .
  • Breeze , P. 2005 . Power Generation Technologies Oxford : Elsevier. .
  • Bris , T. L. , Cadavid , F. , Caillat , S. , Pietrzyk , S. , Blondin , J. and Baudoin , B. 2007 . Coal combustion modelling of large power plant, for NOx abatement. . Fuel , 86 : 2213 – 2220 .
  • British Petroleum (BP). 2008 . BP Statistical Review of World Energy 2008 London : BP. .
  • Cicek , T. 2008 . Dry cleaning of Turkish coal. . Energ. Source. Part A , 30 : 593 – 605 .
  • Clarke , L. B. and Sloss , L. L. 1992 . Trace elements-emissions from coal combustion and gasification. London : IEA. .
  • Darcovkic , K. , Jonasson , K. A. and Capes , C. E. 1997 . Developments in the control of fine particulate air emissions. . Adv. Powder Technol. , 8 : 179 – 215 .
  • Department of Trade and Industry-United Kingdom (DTI-UK). 2000 . Cleaner coal technology program. Technology Status Report 012 London : Department of Trade and Industry .
  • European Association for Coal and Lignite (EURACOAL). 2005 . Clean Coal—A Strategy in Review Brussels : EURACOAL. .
  • Franco , A. and Diaz , A. R. 2009 . The future challenges for “Clean Coal Technologies”: Joining efficiency increase and pollutant emission control. . Energy , 34 : 348 – 354 .
  • Graus , W. H. J. and Worrell , E. 2007 . Effects of SO2 and NOx control on energy-efficiency power generation. . Energ. Policy , 35 : 3898 – 3908 .
  • International Energy Agency (IEA). 2003 . Control and Minimization of Coal-fired Power Plant Emissions Paris : IEA. .
  • International Energy Agency. 2008a . IEA Key World Energy Statistics—2008 ed Paris : IEA. .
  • International Energy Agency. 2008b . Clean Coal Technologies—Accelerating Commercial and Policy Drivers for Deployment Paris : Organization for Economic Co-Operation and Development/IEA. .
  • Kohl , A. L. and Nielsen , R. 1997 . Gas Purification Houston, TX : Gulf Publishing Company. .
  • Kolker , A. , Senior , C. L. and Quick , J. C. 2006 . Mercury in coal and the impact of coal quality on mercury emissions from combustion systems. . Appl. Geochem. , 21 : 1821 – 1836 .
  • Lee , S. H. , Rhim , Y. J. , Cho , S. P. and Baek , J. I. 2006 . Carbon-based novel sorbent for removing gas-phase mercury. . Fuel , 85 : 219 – 226 .
  • Luttrell , G. H. , Kohmuench , J. N. and Yoon , R. H. 2000 . An evaluation of coal preparation technologies for controlling trace element emissions. . Fuel Process. Technol , 65–66 : 407 – 422 .
  • Maruyama , N. and Eckelman , M. J. 2009 . Long-term trends of electric efficiencies in electricity generation in developing countries. . Energ. Policy , 37 : 1678 – 1686 .
  • Miller , B. G. 2005 . Coal Energy Systems London : Elsevier. .
  • Nordstrand , D. , Duong , D. N. B. and Miller , B. G. 2008 . “ Post-combustion emissions control ” . In Combustion Engineering Issues for Solid Fuel Systems Edited by: Miller , B. G. and Tillman , D. London : Elsevier . Chapter 9.
  • Ohlstrom , M. , Jokiniemi , J. , Hokkinen , J. , Makkonen , P. and Tissari , J. 2006 . Combating Particulate Emissions in Energy Generation and Industry Edited by: Herring , P. Helsinki : TEKES .
  • Omer , A. M. 2008 . Energy, environment and sustainable development. . Renew. Sust. Energ. Rev. , 12 : 2265 – 2300 .
  • Pavlish , J. H. , Hamre , L. L. and Zhuang , Y. 2009 . Mercury control technologies for coal combustion and gasification systems. . Fuel , (in press).
  • Pavlish , J. H. , Sondreal , E. A. , Mann , M. D. , Olson , E. S. , Galbreath , K. C. , Laudal , D. L. and Benson , S. A. 2003 . Status review of mercury control options for coal-fired power plants. . Fuel Process. Technol. , 82 : 89 – 165 .
  • Senior , C. L. , Bool , L. E. III , Srinivasachar , S. , Pease , B. R. and Porle , K. 2000 . Pilot scale study of trace element vaporization and condensation during combustion of a pulverized sub-bituminous coal. . Fuel Process. Technol. , 63 : 149 – 165 .
  • Senior , C. L. , Sarofim , A. F. , Zeng , T. , Helble , J. J. and Mamani-Paco , R. 2000 . Gas-phase transformations of mercury in coal-fired power plants. . Fuel Process. Technol. , 63 : 197 – 213 .
  • Sondreal , E. A. , Benson , S. A. and Pavlish , J. H. 2006 . Status of research on air quality: Mercury, trace elements, and particulate matter. . Fuel Process. Technol , 65–66 : 5 – 19 .
  • Sondreal , E. A. , Benson , S. A. , Pavlish , J. H. and Ralston , N. V. C. 2004 . An overview of air quality III: Mercury, trace elements, and particulate matter. . Fuel Process. Technol. , 85 : 425 – 440 .
  • Srivastava , R. K. , Hall , R. E. , Khan , S. , Culligan , K. and Lani , B. W. 2005 . Nitrogen oxides emission control options for coal-fired electric utility boilers. . J. Air Waste Manage. , 55 : 1367 – 1388 .
  • Suarez-Ruiz , I. and Ward , C. R. 2008 . “ Coal combustion ” . In Applied Coal Petrology: The Role of Retrology in Coal Utilization Edited by: Suarez-Ruiz , I. and Crelling , J. C. London : Elsevier . Chapter 4.
  • Tomas-Alonso , F. 2005 . A new perspective about recovering SO2 offgas in coal power plants: Energy saving. Part III. Selection of the best methods. . Energ. Source. , 27 : 1051 – 1060 .
  • US Department of Energy, Energy Information Administration (EIA). 2009 . International Energy Outlook 2009 Washington, DC : EIA. .
  • Vallero , D. 2008 . Fundamentals of Air Pollution-4th ed London : Elsevier. .
  • Vejahati , F. , Xu , Z. and Gupta , R. 2009 . Trace elements in coal: Associations with coal and minerals and their behavior during coal utilization—A review. . Fuel , 89 : 904 – 911 .
  • Wang , Y. , Duan , Y. , Yang , L. , Jiang , Y. , Wu , C. , Wang , Q. and Yang , X. 2008 . Comparison of mercury removal characteristic between fabric filter and electrostatic precipitators of coal-fired power plants. . Journal of Fuel Chemistry and Technology. , 36 : 23 – 29 .
  • World Coal Institute (WCI). 2005 . The Coal Resource—A Comprehensive Overview of Coal London : WCI. .
  • World Energy Council (WEC). 2007 . Survey of Energy Resources—2007 ed London : WEC. .
  • Xu , M. , Yan , R. , Zheng , C. , Qiao , Y. , Han , J. and Sheng , C. 2003 . Status of trace element emission in a coal combustion process: A review. . Fuel Process. Technol. , 85 : 215 – 237 .
  • Yang , H. , Xua , Z. , Fan , M. , Bland , A. E. and Judkins , R. R. 2007 . Adsorbents for capturing mercury in coal-fired boiler flue gas. . J. Hazard. Mater. , 146 : 1 – 11 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.