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    • 2. 发明授权
    • High efficiency reformed methanol gas turbine power plants
    • 高效改造甲醇燃气轮机发电厂
    • US5927063A
    • 1999-07-27
    • US914920
    • 1997-08-19
    • Gary F. JandaKeith H. KuechlerJohn J. GuideFrank F. MittrickerFrank Roberto
    • Gary F. JandaKeith H. KuechlerJohn J. GuideFrank F. MittrickerFrank Roberto
    • F01K21/04F02C3/28F02C3/30
    • F01K21/042Y02E20/14Y02E20/16
    • The present invention is a high efficiency reformed methanol (syngas) gas turbine power plant. The invention utilizes a Back Pressure steam Turbine (BPT) to maximize the thermal efficiency and the power output of a reformed methanol gas turbine power generation system. Methanol feed is reformed to syngas (H.sub.2 and CO.sub.2) prior to combustion in the BPT turbine. The endothermic reforming reaction, and the generation of the significant amount of process steam essential for reforming, recovers most of the useful heat in the gas turbine exhaust gas. The process steam pressure is set by the gas turbine inlet requirements, and can be referred to as low pressure steam. Additional heat in the gas turbine exhaust gas is recovered by generating the system's process steam at an elevated pressure, rather than the required low pressure. This high pressure steam is used to drive a BPT, generating additional power and the discharged low pressure steam from the BPT is used as the process steam for the methanol reformer.
    • 本发明是高效改性甲醇(合成气)燃气轮机发电厂。 本发明利用背压式蒸汽轮机(BPT)来最大化改造甲醇燃气轮机发电系统的热效率和功率输出。 在BPT涡轮机燃烧之前,将甲醇进料重整成合成气(H 2和CO 2)。 吸热重整反应和重整所需的大量工艺蒸汽的产生可以回收燃气轮机废气中大部分有用的热量。 过程蒸汽压力由燃气轮机入口要求设定,可称为低压蒸汽。 通过在升高的压力下产生系统的过程蒸汽而不是所需的低压来回收燃气涡轮废气中的额外的热量。 这种高压蒸汽用于驱动BPT,产生额外的功率,并且将来自BPT的排出的低压蒸汽用作甲醇重整器的工艺蒸汽。