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    • 2. 发明公开
    • MODULE-BASED OXY-FUEL BOILER
    • 氢氧燃料TANK ON基本模块
    • EP1861656A2
    • 2007-12-05
    • EP06736825.8
    • 2006-03-01
    • Jupiter Oxygen Corp.
    • PATRICK, Brian, ROCHS, Tom, LORYSCHYN, Danylo, BSUMMERS, Cathy, A
    • F23C10/00
    • F22B31/04F01K3/24F01K7/22F22G1/16F22G3/00F23C9/00F23L7/007Y02E20/344
    • A module based oxy-fuel boiler system comprising a first boiler (112) configured as a main boiler and a second boiler (216) configured as a reheat boiler, said first boiler including: plurality of first boiler tubes (T) for carrying water, the tubes forming at least one water wall, a feedwater inlet line (230) in flow communication with said plurality of first boiler tubes (T), said feedwater inlet line (230) configured to be connected to an external source of water, a steam outlet line (246) in flow communication with said plurality of first boiler tubes and configured to be connected to a first turbine (238), said turbine (238) having a steam outlet that is configured to be coupled to a reheat line (248) of said second boiler (216), the first boiler (212) configured to substantially prevent the introduction of air, a first boiler oxygen supply (218) for supplying oxygen having a purity of greater than 21 percent; a first boiler carbon based fuel supply (220) for supplying a carbon based fuel; at least one first boiler oxy-fuel burner system (222) coupled to said first boiler oxygen supply (218) and said first boiler carbon based supply (220), the first boiler oxy-fuel burner system (222) configured to feed the oxygen and the carbon based fuel into the first boiler (212) in a near stoichiometric proportion to one another to limit an excess of either the oxygen or the carbon-based fuel to a predetermined tolerance, a first boiler flue gas exit line (213) for discharging exhaust gas generated as a result of the combustion in said first boiler (212), wherein the first boiler tubes (T) are configured for direct, radiant energy exposure for energy transfer to the water to produce steam; a second boiler (216) having a a reheat inlet line (248) in flow communication with the steam outlet of said turbine (238); a reheat steam outlet line (250) in flow communication with a second turbine (240), a second boiler flue gas exit line (217) for discharging exhaust gas generated as a result of the combustion in said second boiler (216), wherein the second boiler(216) is configured to carry out a different energy transfer function than the first boiler (212) and is configured to substantially prevent the introduction of air; a second boiler supply (218) for supplying oxygen having a purity of greater then 21 percent; a second boiler carbon based fuel supply (20, 120) for supplying a carbon based fuel; at least one second boiler oxy-fuel burner system(226), the second boiler oxy-fuel burner system (226) configured to feed the oxygen and the carbon based fuel into the second boiler (216) in a near stoichiometric proportion to one another to limit an excess of either the oxygen or the carbon based fuel to a predetermined tolerance.
    • 6. 发明公开
    • FOSSILBEHEIZTER DAMPFERZEUGER
    • 化石燃烧剂
    • EP1144910A1
    • 2001-10-17
    • EP00902545.3
    • 2000-01-10
    • SIEMENS AKTIENGESELLSCHAFT
    • FRANKE, JoachimKRAL, Rudolf
    • F22B21/34F22B31/04F22B37/40
    • F22B37/40F22B21/346F22B31/04
    • The invention relates to a fossil fuel fired steam generator. The aim of the invention is to provide a fossil fuel fired steam generator (2) with which the combustion chamber (4) can be especially easily adapted to a predetermined performance range and for varying qualities of different fossil fuels (B). To this end, the inventive steam generator (2) has a first combustion chamber (4) and a second combustion chamber (5) which have a respective number of burners (30) for fossil fuels (B). Said combustion chambers are designed to have an approximately horizontal main direction of flow (24) of the fuel gas (G). Said first combustion chamber (4) and said second combustion chamber (5) lead to a common horizontal gas extractor (6) which is mounted on the heating gas side upstream of a vertical gas extractor (8).
    • 燃烧矿物燃料的蒸汽发生器 本发明的目的是提供一种燃烧矿物燃料的蒸汽发生器(2),燃烧室(4)可以特别容易地适应于预定的性能范围并且用于改变不同化石燃料(B)的品质。 为此,本发明的蒸汽发生器(2)具有第一燃烧室(4)和第二燃烧室(5),它们分别具有用于化石燃料(B)的多个燃烧器(30)。 所述燃烧室被设计成具有燃料气体(G)的大致水平的主流动方向(24)。 所述第一燃烧室(4)和所述第二燃烧室(5)通向安装在垂直气体抽取器(8)上游的加热气体侧的公共水平气体抽取器(6)。
    • 9. 发明公开
    • Module-based oxy-fuel boiler
    • 在模块化基础上氧燃料锅炉
    • EP2505792A1
    • 2012-10-03
    • EP12174108.6
    • 2006-03-01
    • Jupiter Oxygen Corp.
    • Patrick, Brian R.Ochs, Tom L.Oryschyn, Danylo B.Summers, Cathy A.
    • F01K3/24F01K7/22F22G1/16F22G7/06F23C9/00F23L7/00
    • F22B31/04F01K3/24F01K7/22F22G1/16F22G3/00F23C9/00F23L7/007Y02E20/344
    • A module based oxy-fuel boiler system comprising a first boiler (112) configured as a main boiler and a second boiler (216) configured as a reheat boiler, said first boiler including: plurality of first boiler tubes (T) for carrying water, the tubes forming at least one water wall,
      a feedwater inlet line (230) in flow communication with said plurality of first boiler tubes (T), said feedwater inlet line (230) configured to be connected to an external source of water,
      a steam outlet line (246) in flow communication with said plurality of first boiler tubes and configured to be connected to a first turbine (238), said turbine (238) having a steam outlet that is configured to be coupled to a reheat line (248) of said second boiler (216),
      the first boiler (212) configured to substantially prevent the introduction of air,
      a first boiler oxygen supply (218) for supplying oxygen having a purity of greater than 21 percent;
      a first boiler carbon based fuel supply (220) for supplying a carbon based fuel;
      at least one first boiler oxy-fuel burner system (222) coupled to said first boiler oxygen supply (218) and said first boiler carbon based supply (220), the first boiler oxy-fuel burner system (222) configured to feed the oxygen and the carbon based fuel into the first boiler (212) in a near stoichiometric proportion to one another to limit an excess of either the oxygen or the carbon-based fuel to a predetermined tolerance,
      a first boiler flue gas exit line (213) for discharging exhaust gas generated as a result of the combustion in said first boiler (212),
      wherein the first boiler tubes (T) are configured for direct, radiant energy exposure for energy transfer to the water to produce steam;
      a second boiler (216) having a a reheat inlet line (248) in flow communication with the steam outlet of said turbine (238);
      a reheat steam outlet line (250) in flow communication with a second turbine (240),
      a second boiler flue gas exit line (217) for discharging exhaust gas generated as a result of the combustion in said second boiler (216), wherein the second boiler(216) is configured to carry out a different energy transfer function than the first boiler (212) and is configured to substantially prevent the introduction of air;
      a second boiler supply (218) for supplying oxygen having a purity of greater then 21 percent;
      a second boiler carbon based fuel supply (20, 120) for supplying a carbon based fuel;
      at least one second boiler oxy-fuel burner system(226), the second boiler oxy-fuel burner system (226) configured to feed the oxygen and the carbon based fuel into the second boiler (216) in a near stoichiometric proportion to one another to limit an excess of either the oxygen or the carbon based fuel to a predetermined tolerance.