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    • 3. 发明授权
    • Splitter with multi-stage heat pump compressor and inter-reboiler
    • 具有多级热泵压缩机和再沸器的分流器
    • US07981256B2
    • 2011-07-19
    • US11937796
    • 2007-11-09
    • David A. WegererPaul A. Sechrist
    • David A. WegererPaul A. Sechrist
    • B01D1/28B01D3/02C07C7/04F25B30/02
    • B01D3/14C07C7/04Y10S203/04Y10S203/08Y10S203/20Y10S203/90C07C11/06
    • A splitter system is disclosed that produces a product stream from a mixed stream of two materials with similar boiling points. A multi-stage heat pump compressor is used in combination with a bottoms reboiler and an intermediate reboiler resulting in reduced utility consumption. The appropriately placed intermediate reboiler enables use of a lower temperature heat source relative to the bottoms reboiler heat source. As a result, a lower pressure overhead vapor stream can be used to deliver heat to both the intermediate and bottoms reboilers, thereby conserving energy. The first stage of the multi-stage heat pump compressor delivers pressurized overhead vapor to the intermediate reboiler and the second stage provides pressurized overhead vapor to the bottoms reboiler. The disclosed design and method lessens the heat pump compressor power consumption and trim condenser duty for a propylene/propane splitter system by over 20%. A third stage of compression upstream of the overhead trim condenser may be used for purposes of making the column pressure and temperatures independent of the trim condenser temperature.
    • 公开了一种分离器系统,其从具有相似沸点的两种材料的混合流产生产物流。 多级热泵压缩机与底部再沸器和中间再沸器组合使用,导致降低的功耗。 适当放置的中间再沸器使得能够使用相对于底​​部再沸器热源的较低温度的热源。 结果,可以使用较低压力的塔顶蒸汽流将热量传递到中间和底部再沸器,从而节省能量。 多级热泵压缩机的第一级将加压的塔顶蒸气输送到中间再沸器,第二级向底部再沸器提供加压的顶部蒸气。 所公开的设计和方法将丙烯/丙烷分配器系统的热泵压缩机功率消耗和修整电容器负载降低20%以上。 顶置式冷凝器上游的第三级压缩可用于使柱压力和温度与修整冷凝器温度无关。
    • 4. 发明申请
    • Splitter with Multi-Stage Heat Pump Compressor and Inter-Reboiler
    • 多级热泵压缩机和再沸器分流器
    • US20090120780A1
    • 2009-05-14
    • US11937796
    • 2007-11-09
    • David A. WegererPaul A. Sechrist
    • David A. WegererPaul A. Sechrist
    • B01D3/14
    • B01D3/14C07C7/04Y10S203/04Y10S203/08Y10S203/20Y10S203/90C07C11/06
    • A splitter system is disclosed that produces a product stream from a mixed stream of two materials with similar boiling points. A multi-stage heat pump compressor is used in combination with a bottoms reboiler and an intermediate reboiler resulting in reduced utility consumption. The appropriately placed intermediate reboiler enables use of a lower temperature heat source relative to the bottoms reboiler heat source. As a result, a lower pressure overhead vapor stream can be used to deliver heat to both the intermediate and bottoms reboilers, thereby conserving energy. The first stage of the multi-stage heat pump compressor delivers pressurized overhead vapor to the intermediate reboiler and the second stage provides pressurized overhead vapor to the bottoms reboiler. The disclosed design and method lessens the heat pump compressor power consumption and trim condenser duty for a propylene/propane splitter system by over 20%. A third stage of compression upstream of the overhead trim condenser may be used for purposes of making the column pressure and temperatures independent of the trim condenser temperature.
    • 公开了一种分离器系统,其从具有相似沸点的两种材料的混合流产生产物流。 多级热泵压缩机与底部再沸器和中间再沸器组合使用,导致降低的功耗。 适当放置的中间再沸器使得能够使用相对于底​​部再沸器热源的较低温度的热源。 结果,可以使用较低压力的塔顶蒸汽流将热量传递到中间和底部再沸器,从而节省能量。 多级热泵压缩机的第一级将加压的塔顶蒸气输送到中间再沸器,第二级向底部再沸器提供加压的顶部蒸气。 所公开的设计和方法将丙烯/丙烷分配器系统的热泵压缩机功率消耗和修整电容器负载降低20%以上。 顶置式冷凝器上游的第三级压缩可用于使柱压力和温度与修整冷凝器温度无关。