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    • 1. 发明申请
    • Cryogenic distillation method and system for air separation
    • 低温蒸馏法和空气分离系统
    • US20070017251A1
    • 2007-01-25
    • US10555765
    • 2004-03-24
    • Patrick BotOlivier De Cayeux
    • Patrick BotOlivier De Cayeux
    • F25J3/00
    • F25J3/04175F25J3/04054F25J3/0409F25J3/04296F25J3/04381F25J3/04393F25J3/04412F25J2240/04
    • Methods and apparatus for air separation by cryogenic distillation in a double or triple air separation column. The column in the system with the highest operating pressure is said to be operating at medium pressure. All the air to be distilled is pressurized to a high pressure, which is about 5 bar greater than the medium pressure. The air is purified at this high pressure, and a portion of the purified air is cooled in a heat exchange line, while another portion is expanded in a turbine. Part of the cooled air is drawn from the exchange line with a cold booster, which is mechanically coupled to at least one turbine. An energy dissipation device is also provided which is coupled to the turbine not coupled to the cold booster. The energy dissipation device is either another booster, an oil break system, or an electrical generator.
    • 在双层或三层空气分离柱中通过低温蒸馏进行空气分离的方法和装置。 具有最高工作压力的系统中的色谱柱据说在中等压力下运行。 所有待蒸馏的空气被加压至高于中压约5巴的高压。 空气在该高压下被净化,并且一部分净化空气在热交换管线中冷却,而另一部分在涡轮机中膨胀。 冷却的空气的一部分从具有机械地耦合到至少一个涡轮机的冷增压器的交换管线中抽出。 还提供了一种能量耗散装置,其耦合到未联接到冷增压器的涡轮机。 能量消耗装置是另一个增压器,断油系统或发电机。
    • 5. 发明授权
    • Cryogenic distillation method and system for air separation
    • 低温蒸馏法和空气分离系统
    • US07464568B2
    • 2008-12-16
    • US10555765
    • 2004-03-24
    • Patrick Le BotOlivier De Cayeux
    • Patrick Le BotOlivier De Cayeux
    • F25J3/00
    • F25J3/04175F25J3/04054F25J3/0409F25J3/04296F25J3/04381F25J3/04393F25J3/04412F25J2240/04
    • Methods and apparatus for air separation by cryogenic distillation in a double or triple air separation column. The column in the system with the highest operating pressure is said to be operating at medium pressure. All the air to be distilled is pressurized to a high pressure, which is about 5 bar greater than the medium pressure. The air is purified at this high pressure, and a portion of the purified air is cooled in a heat exchange line, while another portion is expanded in a turbine. Part of the cooled air is drawn from the exchange line with a cold booster, which is mechanically coupled to at least one turbine. An energy dissipation device is also provided which is coupled to the turbine not coupled to the cold booster. The energy dissipation device is either another booster, an oil break system, or an electrical generator.
    • 在双层或三层空气分离柱中通过低温蒸馏进行空气分离的方法和装置。 具有最高工作压力的系统中的色谱柱据说在中等压力下运行。 所有待蒸馏的空气被加压至高于中压约5巴的高压。 空气在该高压下被净化,并且一部分净化空气在热交换管线中冷却,而另一部分在涡轮机中膨胀。 冷却的空气的一部分从具有机械地耦合到至少一个涡轮机的冷增压器的交换管线中抽出。 还提供了一种能量耗散装置,其耦合到未联接到冷增压器的涡轮机。 能量消耗装置是另一个增压器,断油系统或发电机。
    • 7. 发明申请
    • Cryogenic Distillation Method and System for Air Separation
    • 低温蒸馏法和空气分离系统
    • US20090078001A1
    • 2009-03-26
    • US12252444
    • 2008-10-16
    • Patrick Le BotOlivier De Cayeux
    • Patrick Le BotOlivier De Cayeux
    • F25J3/04
    • F25J3/04175F25J3/04054F25J3/0409F25J3/04296F25J3/04381F25J3/04393F25J3/04412F25J2240/04
    • Methods and apparatus for air separation by cryogenic distillation in a double or triple air separation column. The column in the system with the highest operating pressure is said to be operating at medium pressure. All the air to be distilled is pressurized to a high pressure, which is about 5 bar greater than the medium pressure. The air is purified at this high pressure, and a portion of the purified air is cooled in a heat exchange line, while another portion is expanded in a turbine. Part of the cooled air is drawn from the exchange line with a cold booster, which is mechanically coupled to at least one turbine. An energy dissipation device is also provided which is coupled to the turbine not coupled to the cold booster. The energy dissipation device is either another booster, an oil break system, or an electrical generator.
    • 在双层或三层空气分离柱中通过低温蒸馏进行空气分离的方法和装置。 具有最高工作压力的系统中的色谱柱据说在中等压力下运行。 所有待蒸馏的空气被加压至高于中压约5巴的高压。 空气在该高压下被净化,并且一部分净化空气在热交换管线中冷却,而另一部分在涡轮机中膨胀。 冷却的空气的一部分从具有机械地耦合到至少一个涡轮机的冷增压器的交换管线中抽出。 还提供了一种能量耗散装置,其耦合到未联接到冷增压器的涡轮机。 能量消耗装置是另一个增压器,断油系统或发电机。