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    • 1. 发明申请
    • HIGH EFFICIENCY INTEGRATED GASIFICATION COMBINED CYCLE POWER PLANT
    • 高效集成气化组合循环发电厂
    • WO2008014481A1
    • 2008-01-31
    • PCT/US2007/074640
    • 2007-07-27
    • ROLLINS, William, S., III
    • ROLLINS, William, S., III
    • F02C6/18F02C6/00F02G3/00
    • F02C6/18F01K23/068Y02E20/16Y02E20/18
    • A system and method for integrating gasification processes with membrane oxygen separation, advanced steam conditions, and effective heat recovery. Through the integration of synergistic technologies, a highly efficient Integrated Gasification Combined Cycle (IGCC) power plant can be constructed. A combined cycle power plant that includes substantial amounts of duct firing in its Heat Recovery Steam Generator (HRSG) can be used in conjunction with membrane oxygen separation to provide the necessary air heating to the range of 1470 to 1650° F. This high-end energy in the HRSG can also be utilized to create more steam at elevated conditions in the HRSG, and thus provide additional cold feedwater for cooling in the HRSG and for cooling in both the gasification and oxygen membrane separation processes. When CO 2 release to atmosphere is to be minimized, the invention may utilize a synergistic hydrogen membrane separation technology.
    • 将气化过程与膜氧分离,先进蒸汽条件和有效热回收相结合的系统和方法。 通过整合协同技术,可以构建高效的综合气化联合循环(IGCC)发电厂。 在热回收蒸汽发生器(HRSG)中包括大量管道燃烧的联合循环发电厂可以与膜氧分离结合使用,以将必要的空气加热提供到1470至1650°F的范围。这个高端 HRSG中的能量也可以用于在HRSG的升高条件下产生更多的蒸汽,因此为HRSG中的冷却提供额外的冷给水并在气化和氧气膜分离过程中进行冷却。 当CO 2释放到大气中时,本发明可以利用协同氢膜分离技术。