National Technical Reports Library - NTRL

National Technical Reports Library

The National Technical Information Service acquires, indexes, abstracts, and archives the largest collection of U.S. government-sponsored technical reports in existence. The NTRL offers online, free and open access to these authenticated government technical reports. Technical reports and documents in its repository may be available online for free either from the issuing federal agency, the U.S. Government Publishing Office’s Federal Digital System website, or through search engines.




Details
Actions:
Download PDFDownload PDF
Download

BENCH-SCALE DEMONSTRATION OF HOT-GAS DESULFURIZATION TECHNOLOGY.


DE2001787564

Publication Date 2000
Page Count 19
Abstract The U.S. Department of Energy (DOE), National Energy Technology Laboratory (NETL), is sponsoring research in advanced methods for controlling contaminants in hot coal gasifier gas (coal-derived fuel-gas) streams of integrated gasification combined-cycle (IGCC) power systems. The hot gas cleanup work seeks to eliminate the need for expensive heat recovery equipment, reduce efficiency losses due to quenching, and minimize wastewater treatment costs. Hot-gas desulfurization research has focused on regenerable mixed-metal oxide sorbents that can reduce the sulfur in coal-derived fuel-gas to less than 20 ppmv and can be regenerated in a cyclic manner with air for multicycle operation. Zinc titanate (Zn(sub 2)TiO(sub 4) or ZnTiO(sub 3)), formed by a solid-state reaction of zinc oxide (ZnO) and titanium dioxide (TiO(sub 2)), is currently one of the leading sorbents. Overall chemical reactions with Zn(sub 2)TiO(sub 4) during the desulfurization (sulfidation)-regeneration cycle are shown. The sulfidation/regeneration cycle can be carried out in a fixed-bed, moving-bed, or fluidized-bed reactor configuration. The fluidized-bed reactor configuration is most attractive because of several potential advantages including faster kinetics and the ability to handle the highly exothermic regeneration to produce a regeneration offgas containing a constant concentration of SO(sub 2).
Keywords
  • Desulfurization
  • Fluidized bed reactors
  • Hot gas cleanup
  • Chemical reactions
  • Fuel gas
  • Heat recovery equipment
  • Packed beds
  • Power systems
  • Zinc oxides
Source Agency
  • Technical Information Center Oak Ridge Tennessee
Corporate Authors National Energy Technology Lab., Pittsburgh, PA.; Department of Energy, Washington, DC.
Document Type Technical Report
NTIS Issue Number 200204
Contract Number
  • AC21-93MC30010
BENCH-SCALE DEMONSTRATION OF HOT-GAS DESULFURIZATION TECHNOLOGY.
BENCH-SCALE DEMONSTRATION OF HOT-GAS DESULFURIZATION TECHNOLOGY.
DE2001787564

  • Desulfurization
  • Fluidized bed reactors
  • Hot gas cleanup
  • Chemical reactions
  • Fuel gas
  • Heat recovery equipment
  • Packed beds
  • Power systems
  • Zinc oxides
  • Technical Information Center Oak Ridge Tennessee
  • AC21-93MC30010
Loading