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Original Articles

Catalytic Effects of Minerals on NOx Emission from Coal Combustion

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Pages 1005-1016 | Published online: 19 Jun 2007

References

  • Furusawa , T. , Koyama , M. and Tsujimura , M. 1985 . Nitric oxide reduction by carbon monoxide over calcined limestone enhanced by simultaneous sulphur retention . Fuel , 64 : 413 – 415 .
  • Gavin , D. and Dorrington , M. 1993 . Factors in the conversion of fuel nitrogen to nitric and nitrous oxides during fluidized bed combustion . Fuel , 72 : 381 – 388 .
  • Genetti , D. and Fletcher , T. H. 1999 . Modeling nitrogen release during devolatilization on the basis of chemical structure of coal . Energy and Fuels , 13 : 1082 – 1091 .
  • Gulyurtlu , I. A. 1995 . A comparison of NOx levels from R&D studies with values measured at different plants . Fuel , 74 : 253 – 257 .
  • Hayashi , J. , Kusakabe , K. and Morooka , S. 1995 . Role of iron catalyst impregnated by solvent swelling method in pyrolytic removal of coal nitrogen . Energy and Fuels , 9 : 1028 – 1034 .
  • Hayhurst , A. N. and Lawrence , A. D. 1996 . The effect of solid CaO on the production of NOx and N2O in fluidized bed combustors studies using pyridine as a prototypical nitrogenous fuel . Combustion Flame , 105 : 511 – 527 .
  • Kambara , S. , Takarada , T. and Toyoshima , M. 1995 . Relation between functional forms of coal nitrogen and NOx emissions from pulverized coal combustion . Fuel , 74 : 1247 – 1253 .
  • Kidena , K. , Hirose , Y. , Aibara , T. , Murata , S. and Nomura , M. 2000 . Analysis of nitrogen-containing species during pyrolysis of coal at two different heating rates . Energy and Fuels , 14 : 184 – 189 .
  • Ledesma , E. B. , Li , C. Z. , Nelson , P. F. and Mackie , J. C. 1998 . Release of HCN, NH3, and HNCO from the thermal gas-phase cracking of coal pyrolysis tars . Energy and Fuels , 12 : 536 – 541 .
  • Leppälahti , J. 1995 . Formation of NH3 and HCN in slow-heating-rate inert pyrolysis of peat, coal and bark . Fuel , 74 : 1363 – 1368 .
  • Leppälahti , J. and Koljonen , T. 1995 . Nitrogen evolution from coal, peat and wood during gasification: Literature review . Fuel Processing Technology , 43 : 1 – 45 .
  • Leppälahti , J. , Simell , P. and Kurkela , E. 1991 . Catalytic conversion of nitrogen compounds in gasification gas . Fuel Processing Technology , 29 : 43 – 56 .
  • Liu , Y. H. , Che , D. F. and Xu , T. M. 2002 . Catalytic reduction of SO2 during combustion of typical Chinese coals . Fuel Processing Technology , 79 : 157 – 169 .
  • Li , C. Z. and Li , L. T. 2000 . Formation of NOx and SOx precursors during the pyrolysis of coal and biomass. Part III. Further discussion on the formation of HCN and NH3 during pyrolysis . Fuel , 79 : 1899 – 1906 .
  • Makarytchev , S. V. 1995 . Catalyzed NOx formation under fluidized-bed combustion conditions . Chemical Engineering Science , 50 : 2489 – 2490 .
  • Miccio , F. , Löffler , G. and Wargadalam , V. J. 2001 . Formation and reduction of NOx in pressurized fluidized bed combustion of coal . Fuel , 80 : 1555 – 1569 .
  • Mori , H. , Asami , K. and Ohtsuka , Y. 1996 . Role of iron catalyst in fate of fuel nitrogen during coal pyrolysis . Energy and Fuels , 10 : 1022 – 1027 .
  • Ohtsuka , Y. , Wu , Z. and Furimasky , E. 1997 . Effect of alkali and alkaline earth metals on nitrogen release during temperature programmed pyrolysis of coal . Fuel , 76 : 1361 – 1367 .
  • Öpsel , R. F. W. K. and Halang , S. 1997 . Catalytic influence of ash elements on NOx formation in char combustion under fluidized bed conditions . Fuel , 76 : 345 – 351 .
  • Öztas , N. A. and Yürüm , Y. 2000 . Pyrolysis of Turkish Zonguldak bituminous coal. Part 1. Effect of mineral matter . Fuel , 79 : 1221 – 1227 .
  • Sathe , C. , Pang , Y. and Li , C. Z. 1999 . Effects of heating rate and ion-exchangeable cations on the pyrolysis yields from a Victorian brown coal . Energy and Fuels , 13 : 748 – 755 .
  • Schafer , S. and Bonn , B. 2000 . Hydrolysis of HCN as an important step in nitrogen oxide formation in fluidized combustion . Fuel , 79 : 1239 – 1246 .
  • Tsubouchi , N. and Ohtsuka , Y. 2002 . Nitrogen release during high temperature pyrolysis of coals and catalytic role of calcium in N2 formation . Fuel , 81 : 2335 – 2342 .
  • Tsubouchi , N. , Ohshima , Y. , Xu , C. and Ohtsuka , Y. 2001 . Enhancement of N2 formation from nitrogen in carbon and coal by calcium . Energy and Fuels , 15 : 158 – 162 .
  • Wu , Z. and Ohtsuka , Y. 1997 . Key factors for formation of N2 from low-rank coals during fixed bed pyrolysis: pyrolysis conditions and inherent materials . Energy and Fuels , 11 : 902 – 908 .
  • Wu , Z. , Sugimoto , Y. and Kawashima , H. 2000 . Effect of calcium catalyst on coal nitrogen removal during pyrolysis . Energy and Fuels , 14 : 1119 – 1120 .
  • Wu , Z. , Sugimoto , Y. and Kawashima , H. 2003 . Effect of demineralization and catalyst addition on N2 formation during coal pyrolysis and on char gasification . Fuel , 82 : 2057 – 2064 .
  • Xu , W. C. and Kumagai , M. 2002 . Nitrogen evolution during rapid hydropyrolysis of coal . Fuel , 81 : 2325 – 2334 .
  • Zhao , Z. , Li , W. and Qiu , J. 2003 . Effect of Na, Ca, and Fe on the evolution of nitrogen species during pyrolysis and combustion of model chars . Fuel , 82 : 1839 – 1844 .

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