Method of feeding, with impure nitrogen, the combustion chamber of a gas turbine combined with an air distillation unit, and corresponding electricity generation plant
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
B01D-053/04
B01D-053/26
출원번호
US-0118044
(2002-04-09)
우선권정보
FR-0004870 (2001-04-10)
발명자
/ 주소
Massimo, Giovanni
Peyron, Jean Marc
출원인 / 주소
L'Air Liquide - Societe Anonyme a Directoire et Conseil de Surveillance pour l'Etude et l'Exploitation des Procedes Georges Claude
대리인 / 주소
Young & Thompson
인용정보
피인용 횟수 :
0인용 특허 :
20
초록▼
The air distillation unit (2) has a low-pressure column (11C) which operates clearly above atmospheric pressure. The waste nitrogen coming from this column serves to purge, under low pressure, the air purification adsorbers (10A, 10B) in order to desorb them of the contaminants (water and CO2), then
The air distillation unit (2) has a low-pressure column (11C) which operates clearly above atmospheric pressure. The waste nitrogen coming from this column serves to purge, under low pressure, the air purification adsorbers (10A, 10B) in order to desorb them of the contaminants (water and CO2), then is mixed with the impure nitrogen stream sent directly to the nitrogen compressor (14) which feeds the combustion chamber (8) of the gas turbine (1). At the start of regeneration, each adsorber is decompressed down to atmospheric pressure, then brought back up to the low pressure by impure nitrogen.
대표청구항▼
The air distillation unit (2) has a low-pressure column (11C) which operates clearly above atmospheric pressure. The waste nitrogen coming from this column serves to purge, under low pressure, the air purification adsorbers (10A, 10B) in order to desorb them of the contaminants (water and CO2), then
The air distillation unit (2) has a low-pressure column (11C) which operates clearly above atmospheric pressure. The waste nitrogen coming from this column serves to purge, under low pressure, the air purification adsorbers (10A, 10B) in order to desorb them of the contaminants (water and CO2), then is mixed with the impure nitrogen stream sent directly to the nitrogen compressor (14) which feeds the combustion chamber (8) of the gas turbine (1). At the start of regeneration, each adsorber is decompressed down to atmospheric pressure, then brought back up to the low pressure by impure nitrogen. esion in animal cell culture; physiological and fluid mechancial implications," Bioprocessing Technol., 20:61-110, 1995. Kostenich et al., "Experimental grounds for using chlorin e6 in the photodynamic therapy of malignant tumors," J Photochem Photobiol B., 22:211-217, 1994. Lagoutte et al., "A fibrin sealant for perforated and preperforated corneal ulcers," Br J Ophthalmol., 73:757-761, 1989. Menovsky et al., "Laser(-assisted) nerve repair: a review," Neurosurg. Rev., 18:225-235, 1995. Ochsner, "Photophysical and photobiological processes in the photodynamic therapy of tumuours," J. Photochem. Photobiol. B., 39:1-18, 1997. Poppas et al., "Human albumin solder supplemented with TGF-beta 1 accelerates healing following laser welded wound closure," Lasers Surg Med, 19:360-368, 1996. Schlossberg and Poppas, "Tissue welding with lasers," Semin. Urol., 9:206-209, 1991. Sheardown et al., "A semi-solid drug delivery system for epidermal growth factor in corneal epithelial wound healing," Curr Eye Res, 16:183-190, 1997. Siedentop et al., "Autologous fibrin tissue adhesive: factors influencing bonding power," Laryngoscope, 98:731-733, 1988. Sierra, "Fibrin sealant adhesive
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이 특허에 인용된 특허 (20)
Kiersz Donna F. (Buffalo NY) Parysek Karen D. (Danbury CT), Air separation method with integrated gas turbine.
Millet Cyrille,FRX ; Bourgeois Philippe,FRX ; Kraus Georges,FRX ; Gabillard Jean-Pierre,FRX, Process for purifying air by adsorbing CO.sub.2 and H.sub.2 O impurities on calcined alumina.
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