Usage
  • 92 views
  • 150 downloads

Development of Life Cycle Water-Demand Coefficients for Coal-Based Power Generation Technologies

  • Author(s) / Creator(s)
  • This paper aims to develop benchmark coefficients for water consumption and water withdrawals over the full life cycle of coal-based power generation. This study considered not only all of the unit operations involved in the full electricity generation life cycle but also compared different coal-based power generating technologies. Overall this study develops the life cycle water footprint for 36 different coal-based electricity generation pathways. Power generation pathways involving new technologies of integrated gasification combined cycle (IGCC) or ultra supercritical technology with coal transportation by conventional means and using dry cooling systems have the least complete life cycle water-demand coefficients of about 1 L/kWh. Sensitivity analysis is conducted to study the impact of power plant performance and coal transportation on the water demand coefficients. The consumption coefficient over life cycle of ultra supercritical or IGCC power plants are 0.12 L/kWh higher when conventional transportation of coal is replaced by coal-log pipeline. Similarly, if the conventional transportation of coal is replaced by its transportation in the form of a slurry through a pipeline, the consumption coefficient of a subcritical power plant increases by 0.52 L/kWh.

  • Date created
    2015-01-01
  • Subjects / Keywords
  • Type of Item
    Article (Draft / Submitted)
  • DOI
    https://doi.org/10.7939/r3-tar0-0x22
  • License
    Attribution-NonCommercial-NoDerivatives 4.0 International
  • Language
  • Citation for previous publication
    • Ali, Babkir, & Kumar, Amit (2015). Development of life cycle water-demand coefficients for coal-based power generation technologies. Energy Conversion and Management, 90, 247-260. https://doi.org/10.1016/j.enconman.2014.11.013
  • Link to related item
    https://doi.org/10.1016/j.enconman.2014.11.013