IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0891548
(1978-03-30)
|
발명자
/ 주소 |
- Vaseen Vesper A. (9840 W. 35th Ave. Wheatridge CO 80033)
|
인용정보 |
피인용 횟수 :
3 인용 특허 :
2 |
초록
▼
The aeration of specific inert, nonmagnetic liquids, under superatmospheric pressure, and ambient temperature, increases both the oxygen and nitrogen solubility of the liquid. Filtered, sterilized air, within a controlled temperature range is dissolved under superatmospheric pressure in the nonmagne
The aeration of specific inert, nonmagnetic liquids, under superatmospheric pressure, and ambient temperature, increases both the oxygen and nitrogen solubility of the liquid. Filtered, sterilized air, within a controlled temperature range is dissolved under superatmospheric pressure in the nonmagnetic liquid. The liquid pregnant with both oxygen and nitrogen is then passed through a high intensity electromagnet which paramagnetically separates the oxygen from the liquid. The collected oxygen gas is pressurized for storage and later use, or used as produced. The oxygen stripped nonmagnetic liquid, still pregnant with nonparamagnetic nitrogen is reduced to sub or atmospheric pressure which releases the nitrogen gas to atmosphere. The gases stripped nonmagnetic liquid is then returned for recycle use.
대표청구항
▼
A method of manufacturing or producing medical grade oxygen for human, animal, or laboratory use by paramagnetic separation of oxygen from air comprising the steps of: compressing or pumping ambient air, filtering said air, sterilizing said air, adjusting the temperature of said air, dissolving said
A method of manufacturing or producing medical grade oxygen for human, animal, or laboratory use by paramagnetic separation of oxygen from air comprising the steps of: compressing or pumping ambient air, filtering said air, sterilizing said air, adjusting the temperature of said air, dissolving said air in an inert, and non-magnetic, nontoxic, nonvolatile, absorber liquid, passing the absorber liquid containing the dissolved air between the poles of a high intensity magnet to thereby evolve oxygen magnetically collecting the dissolved oxygen at the poles of the high intensity magnet, collecting the effervescent, released oxygen, transferring the produced oxygen to storage, or transferring the produced oxygen to direct use, controlling the pressure of oxygen released to use, stripping the absorber liquid after oxygen removal of dissolved nitrogen, filtering the absorber liquid of particulates collected in the system, adjusting the temperature of the absorber liquid prior to injection back into the dissolving step, recycling the absorber liquid to the dissolving step, recycling non dissolved air from the dissolving step back to and with the air injection in the dissolving step.
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