• DocumentCode
    1922371
  • Title

    Study of CO2 separation characteristic in supersonic high-pressure vortex tube

  • Author

    Songtao, Kong ; Juan, Liu ; Lijun, Zhao ; Pin, Cai ; Yue, Huang

  • Author_Institution
    Sch. of Mech. & Power Eng., Chongqing Univ. of Sci. & Technol., Chongqing, China
  • Volume
    1
  • fYear
    2011
  • fDate
    20-22 May 2011
  • Firstpage
    936
  • Lastpage
    940
  • Abstract
    Skid-mounted equipment of liquefied CBM/NG is currently facing two problems: One is that the equipments of desulfurization and decarburization, the traditional DMEA method of equipment is too large, can not be achieved to the skid-mounted package. Another is that the key refrigerating apparatus must provide adequate cold energy and have excellent field maintenance performance. A newly developed supersonic vortex tube with the use of pressure difference between the hot and cold end to specially designed nozzle pressure is conducive to the formation of supersonic flow. This supersonic flow leads to low-temperature region in the nozzle section. Then, CO2, sulfur and other impurities in natural gas become to liquids and are thrown to the nozzle wall due to the strong centrifugal force. This paper focuses on the vortex tube on the separation characteristics of CO2 and other impurities. Studies show that the new vortex tube extrusion efficiency of CO2 is over 85% and can replace the DMEA method. Studies also show that the control of high-pressure vortex tube the back pressure of hot end will help to achieve higher cooling efficiency.
  • Keywords
    high-pressure effects; nozzles; supersonic flow; vortices; DMEA; decarburization; desulfurization; key refrigerating apparatus; liquefied CBM/NG; skid-mounted equipment; supersonic high-pressure vortex tube; Electron tubes; Impurities; Indium phosphide; gas purification; liquefied CBM/NG; skidmounted; vortex tube;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Materials for Renewable Energy & Environment (ICMREE), 2011 International Conference on
  • Conference_Location
    Shanghai
  • Print_ISBN
    978-1-61284-749-8
  • Type

    conf

  • DOI
    10.1109/ICMREE.2011.5930956
  • Filename
    5930956