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    • 9. 发明授权
    • Oxygen separator and method of generating oxygen
    • 氧分离器和产生氧气的方法
    • US09504953B2
    • 2016-11-29
    • US14397773
    • 2013-04-22
    • KONINKLIJKE PHILIPS N.V.
    • Rainer HilbigAchim Gerhard Rolf KoerberPaul Van Der SluisMareike KleeWilhelmus Cornelis Keur
    • B01D53/047A62B21/00B01D53/02A62B19/00C01B13/02
    • B01D53/02A62B19/00B01D53/047B01D2253/108B01D2253/1085B01D2256/12B01D2257/102C01B13/0259
    • The invention relates to a method of separating oxygen from an oxygen comprising gas, the method comprising the steps of: performing at least a first and a second period of oxygen separation, the first and the second period of oxygen separation each comprising the steps of guiding an oxygen comprising gas to the primary side of an oxygen separation device (12, 14), the oxygen separation device (12, 14) comprising an oxygen separation sorbent (16, 18), and generating a flow of oxygen enriched gas out of the oxygen separation device (12, 14) by creating a pressure difference between the primary side and the secondary side of the oxygen separation device (12, 14), and performing a cooling period between the first and the second period of oxygen separation, wherein the cooling period comprises the steps of guiding a flushing sorbate through the oxygen separation device (12, 14), the flushing sorbate having an adsorption energy e1 with respect to the oxygen separation sorbent (16, 18), and guiding a cooling sorbate through the oxygen separation device (12, 14), the cooling sorbate having an adsorption energy e2 with respect to the oxygen separation sorbent (16, 18), wherein the adsorption energy e2 is lower with respect to the adsorption energy e2. Such a method provides an improved oxygen separation behavior especially with respect to high temperatures. The present invention further relates to an oxygen separator (10).
    • 本发明涉及一种从含氧气体中分离氧气的方法,该方法包括以下步骤:至少执行氧分离的第一和第二周期,第一和第二氧分离周期包括以下步骤:引导 包含气体的氧气到氧分离装置(12,14)的一次侧,所述氧气分离装置(12,14)包括氧分离吸附剂(16,18),并且产生富含氧气体的流 氧分离装置(12,14),通过在氧分离装置(12,14)的初级侧和次级侧之间产生压力差,并且在氧分离的第一和第二时段之间进行冷却期间,其中 冷却期间包括以下步骤:将冲洗山梨酸引导通过氧分离装置(12,14),相对于氧分离吸附剂(16,18)具有吸附能量e1的冲洗山梨酸盐,以及 引导冷却山梨酸通过氧分离装置(12,14),所述冷却山梨酸盐相对于氧分离吸附剂(16,18)具有吸附能量e2,其中吸附能量e2相对于吸附能量e2较低 。 这种方法提供了改善的氧分离行为,特别是在高温下。 本发明还涉及氧分离器(10)。