• DocumentCode
    1346686
  • Title

    Use of mine ventilation exhaust as combustion air in gas-fired turbo-electric generators

  • Author

    Johnson, Philip W. ; Novak, Thomas ; White, David J. ; Stevenson, John W. ; Mills, Randall A. ; Lasseter, Edward L., Jr. ; Boyer, Charles M.

  • Author_Institution
    Dept. of Chem. Eng., Alabama Univ., Tuscaloosa, AL, USA
  • Volume
    34
  • Issue
    2
  • fYear
    1998
  • Firstpage
    399
  • Lastpage
    405
  • Abstract
    Methane liberated in coal mines is a potential safety hazard, because it is explosive at relatively low concentrations (5%-15%) in air. To manage methane, underground mines are ventilated with large quantities of air and, in some cases, the gas is also drained with gob wells and predrained with vertical and horizontal wells. The ventilation air is used to dilute methane emissions to levels well below the explosive limit, and the diluted stream is discharged to the atmosphere. Unfortunately, this waste stream may contain as much as 60% of the total gas energy that was originally in the coal. Also, methane is considered by some to be 24.5 times more detrimental than CO2 in contributing to the greenhouse effect. The volume of the waste stream, the high electric power demands of a mine and the greenhouse effect of methane provide a strong incentive for converting the waste-methane chemical energy to the electrical or mechanical equivalent. A preliminary economic assessment of a proposed test-turbine installation at the Jim Walter Resources Blue Creek Mine Number 5 (JWR No. 5) shows that such a project makes good sense economically, even without considering the emission-reduction benefits. This unit could produce enough power to drive a ventilation fan, provide a profitable rate of return and produce a 2% reduction in emissions. A market study indicates that there is the potential to generate 706-816 MW of power from mine ventilation gas in the US. Worldwide, if only 10% of the estimated mine ventilation emissions can be used for power generation, this technology has potential for the generation of 1689-1953 MW of capacity, with a commensurate reduction in emissions
  • Keywords
    combustion; fuel; gas turbine power stations; gas turbines; mining; ventilation; 1689 to 1953 MW; 706 to 816 MW; USA; combustion air; economic assessment; emissions reduction; gas-fired turbogenerators; mine ventilation exhaust; potential safety hazard; power demands; power generation capacity; project; waste-methane chemical energy conversion; Air safety; Atmosphere; Chemicals; Combustion; Explosives; Hazards; Power generation; Power generation economics; Power system economics; Ventilation;
  • fLanguage
    English
  • Journal_Title
    Industry Applications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-9994
  • Type

    jour

  • DOI
    10.1109/28.663486
  • Filename
    663486