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    • 40. 发明申请
    • AIR SEPARATION METHOD AND APPARATUS
    • 空气分离方法和装置
    • US20160025408A1
    • 2016-01-28
    • US14444438
    • 2014-07-28
    • Zhengrong XuNeil M. ProsserYang Luo
    • Zhengrong XuNeil M. ProsserYang Luo
    • F25J3/04
    • F25J3/04412F25J3/04084F25J3/0409F25J3/04175F25J3/04296F25J3/04303F25J3/04393F25J3/04678F25J2215/54F25J2240/46
    • A method and apparatus for separating air by cryogenic rectification in which cooled, compressed and purified air is separated in a distillation column system having higher and lower pressure columns operatively associated with one another in a heat transfer relationship to produce an oxygen-rich liquid stream from the lower pressure column. The oxygen-rich liquid stream is pumped and heated through indirect heat exchange with a compressed heat exchange stream to form a pressurized oxygen product stream. Part of the air is sequentially and successively compressed in booster compressors driven by turboexpanders to form the compressed heat exchange stream while other parts of the air are expanded in turboexpanders driving the booster compressors to form exhaust streams that are introduced into both the higher and lower pressure columns to generate refrigeration.
    • 一种通过低温精馏分离空气的方法和装置,其中在具有较高和较低压力塔的蒸馏塔系统中分离冷却,压缩和净化的空气,所述蒸馏塔系统以热传递关系彼此操作地相关联,以产生富氧液体流 低压塔。 通过与压缩的热交换流的间接热交换来泵送和加热富氧液体流,以形成加压氧产物流。 一部分空气在由涡轮膨胀机驱动的增压压缩机中依次并连续地压缩,以形成压缩的热交换流,而空气的其他部分在涡轮膨胀机中膨胀,驱动增压压缩机以形成引入高压和低压的排气流 柱产生制冷。