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    • 35. 发明授权
    • Method and apparatus for separating air by cryogenic distillation
    • 通过低温蒸馏分离空气的方法和装置
    • US09091478B2
    • 2015-07-28
    • US13384432
    • 2010-07-16
    • Frederic JudasHerve Le BihanPatrick Le Bot
    • Frederic JudasHerve Le BihanPatrick Le Bot
    • F25J3/00F25J3/04
    • F25J3/04781F25J3/04018F25J3/04024F25J3/04054F25J3/0409F25J3/04175F25J3/04296F25J3/04393F25J3/04412F25J3/04448F25J3/04454F25J3/04775F25J3/04824F25J2230/08F25J2230/30F25J2230/40F25J2240/04F25J2240/10F25J2240/42F25J2245/40
    • The invention relates to equipment for separating air by cryogenic distillation, including: a double air separation column; an exchange line (91); a hot air supercharger (CI) and a cold air supercharger (C2); a first turbine (TI) and a second turbine (T2), each of which is coupled to one of the superchargers; means for bringing all the air to a high pressure that is greater than the mean pressure; means for purifying the air at said high pressure; means for dividing the purified air into two fractions and sending one fraction thereof to the hot air supercharger and one fraction to the cold air supercharger after cooling in the exchange line; means for feeding the second air fraction from the cold air supercharger back into the exchange line; means for sending at least one pressurized liquid from one of the columns into the exchange line; a valve (4, 5); means for sending the non-supercharged air, purified at a high pressure, to the exchange line, so as to be cooled therein, and then to the valve; and means for sending the air, expanded in the valve, to be distilled and/or to the atmosphere.
    • 本发明涉及通过低温蒸馏分离空气的设备,包括:双空气分离塔; 交换线(91); 热空气增压器(CI)和冷气增压器(C2); 第一涡轮机(TI)和第二涡轮机(T2),其中每一个联接到增压器之一; 使所有空气达到高于平均压力的高压的装置; 用于在所述高压下净化空气的装置; 用于将净化空气分成两部分并将其一部分分配到热空气增压器中的装置,以及在交换管线中冷却之后的一部分到冷空气增压器的装置; 用于将来自冷空气增压器的第二空气部分进入交换线的装置; 用于将至少一个加压液体从所述列中的一个送入所述交换管线的装置; 阀(4,5); 用于将在高压下净化的非增压空气送到交换管路的装置,以便在其中冷却,然后到达阀门; 以及用于将在阀中膨胀并被蒸馏和/或向大气传播的空气的装置。
    • 36. 发明申请
    • METHOD AND APPARATUS FOR SEPARATING AIR BY CRYOGENIC DISTILLATION
    • 通过低温蒸馏分离空气的方法和装置
    • US20120118006A1
    • 2012-05-17
    • US13384432
    • 2010-07-16
    • Frederic JudasHerve Le BihanPatrick Le Bot
    • Frederic JudasHerve Le BihanPatrick Le Bot
    • F25J1/00
    • F25J3/04781F25J3/04018F25J3/04024F25J3/04054F25J3/0409F25J3/04175F25J3/04296F25J3/04393F25J3/04412F25J3/04448F25J3/04454F25J3/04775F25J3/04824F25J2230/08F25J2230/30F25J2230/40F25J2240/04F25J2240/10F25J2240/42F25J2245/40
    • The invention relates to equipment for separating air by cryogenic distillation, including: a double air separation column; an exchange line (91); a hot air supercharger (CI) and a cold air supercharger (C2); a first turbine (TI) and a second turbine (T2), each of which is coupled to one of the superchargers; means for bringing all the air to a high pressure that is greater than the mean pressure; means for purifying the air at said high pressure; means for dividing the purified air into two fractions and sending one fraction thereof to the hot air supercharger and one fraction to the cold air supercharger after cooling in the exchange line; means for feeding the second air fraction from the cold air supercharger back into the exchange line; means for sending at least one pressurized liquid from one of the columns into the exchange line; a valve (4, 5); means for sending the non-supercharged air, purified at a high pressure, to the exchange line, so as to be cooled therein, and then to the valve; and means for sending the air, expanded in the valve, to be distilled and/or to the atmosphere.
    • 本发明涉及通过低温蒸馏分离空气的设备,包括:双空气分离塔; 交换线(91); 热空气增压器(CI)和冷气增压器(C2); 第一涡轮机(TI)和第二涡轮机(T2),其中每一个联接到增压器之一; 使所有空气达到高于平均压力的高压的装置; 用于在所述高压下净化空气的装置; 用于将净化空气分成两部分并将其一部分分配到热空气增压器中的装置,以及在交换管线中冷却之后的一部分到冷空气增压器的装置; 用于将来自冷空气增压器的第二空气部分进入交换线的装置; 用于将至少一个加压液体从所述列中的一个送入所述交换管线的装置; 阀(4,5); 用于将在高压下净化的非增压空气送到交换管路的装置,以便在其中冷却,然后到达阀门; 以及用于将在阀中膨胀并被蒸馏和/或向大气传播的空气的装置。
    • 39. 发明授权
    • Integrated air compression, cooling, and purification unit and process
    • 集成空气压缩,冷却和净化单元和过程
    • US07497092B2
    • 2009-03-03
    • US11253533
    • 2005-10-19
    • Patrick Le Bot
    • Patrick Le Bot
    • F25J3/00
    • F25J3/04181F25J3/04018F25J3/04121F25J3/04157F25J3/04612F25J3/04618F25J2205/32F25J2205/70F25J2230/06F25J2240/70F25J2270/906
    • Process and apparatus for optimization of integrated air separation systems. In an integrated process for the compression, cooling, and purification of air, an adiabatic compressor compresses an air stream to produce a compressed air stream. The compressed air stream is used to warm a first pressurized stream at a first pressure and a second pressurized stream at a second pressure. The produced streams include a first warmed pressurized stream, a second warmed pressurized stream, and a cooled compressed air stream. The first warmed pressurized stream is gaseous and is expanded in a turbine. At least part of the work produced by the turbine is used to power the adiabatic compressor. The cooled compressed air stream is further cooled by a cooling unit by heat exchange with water, and then purified in a purifying unit using a TSA process. At least part of the warmed second pressurized stream is used in cooling the water to be used in the cooling process and/or in warming the gas used to regenerate purifying unit.
    • 一体化空气分离系统优化的工艺和设备。 在用于压缩,冷却和净化空气的综合方法中,绝热压缩机压缩空气流以产生压缩空气流。 压缩空气流用于在第一压力下加热第一加压流并在第二压力下加热第二加压流。 生产的物流包括第一加热加压流,第二加热加压流和冷却的压缩空气流。 第一个加热的加热流是气态的,并在涡轮机中膨胀。 涡轮机产生的工作的至少一部分用于为绝热压缩机供电。 冷却的压缩空气流通过与水热交换的冷却单元进一步冷却,然后使用TSA方法在净化单元中纯化。 加热的第二加压流的至少一部分用于冷却在冷却过程中使用的水和/或加热用于再生净化单元的气体。