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    • 2. 发明授权
    • Cryogenic rectification method
    • 低温精馏法
    • US08448463B2
    • 2013-05-28
    • US12411700
    • 2009-03-26
    • Neil Mark ProsserWei Zhang
    • Neil Mark ProsserWei Zhang
    • F25J3/00
    • F25J3/0423F25J3/04084F25J3/0409F25J3/04218F25J3/04309F25J3/04387F25J3/04412F25J3/04678F25J2240/10F25J2240/22F25J2245/58
    • The present invention provides a method of rectifying an oxygen, nitrogen and argon containing feed stream that employs high and low pressure columns and an argon column. Refrigeration is imparted through turboexpansion of a nitrogen-rich vapor stream withdrawn from the high pressure column. The nitrogen-rich vapor stream has a sufficiently high flow rate that the flow of both vapor and liquid within the low pressure column is decreased to such an extent that the diameter of the low pressure column can be made substantially equal to or less than that of the high pressure column. The use of the argon column allows recovery of the oxygen to be increased over that which would otherwise be obtained given the draw of the nitrogen-rich vapor. The argon column can be an argon rejection column in which the separated argon is discarded as waste.
    • 本发明提供一种使含有高,低压塔和氩塔的含氧,氮和氩的进料流整流的方法。 通过从高压塔排出的富氮蒸气流的涡轮膨胀来赋予制冷。 富氮蒸汽流具有足够高的流速,使得低压塔内的蒸汽和液体两者的流量降低到使得低压塔的直径基本上等于或小于 高压塔。 使用氩气柱可以使氧气的回收率增加到超过在富氮蒸气的排出时否则将获得的氧气。 氩塔可以是氩排除塔,其中分离的氩被浪费掉。