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    • 3. 发明授权
    • Process for generating heat to reduce the emission of oxides of sulphur and reduce adsorbent consumption
    • 产生热量以减少硫的氧化物的排放并减少吸附剂消耗的方法
    • US06817304B2
    • 2004-11-16
    • US09942595
    • 2001-08-31
    • Gérard H. MartinEtienne Lebas
    • Gérard H. MartinEtienne Lebas
    • C01B1756
    • F23J15/02B01D53/508F23J15/003F23J2215/20F23J2219/60
    • For reducing emissions of oxides of sulphur: a) a sulphur-containing fuel is burned in a combustion zone comprising a heat exchange zone in which at least a portion of the heat is extracted, and effluents or combustion fumes are recovered at a temperature in the range 800° C. to 1200° C.; b) the fumes resulting from said combustion, charged with oxides of sulphur, traverse a space for supplying and distributing the fumes to a desulphurisation apparatus functioning with an internal recycle of a solid oxide of sulphur adsorbent; c) the adsorbent is injected into said space; d) the fumes are caused to enter said apparatus; e) the fumes are caused to penetrate into a convection exchange zone and at least a portion of the heat is extracted from said fumes; f) the mixture resulting from steps b) and c) is separated in a gas/solid separation zone and a portion of the gaseous effluent that has been freed of the major portion of the oxides of sulphur and at least partially cooled is evacuated, and said adsorbent particles comprising said sulphur-containing compounds are evacuated.
    • 为了减少硫的氧化物的排放:a)含硫燃料在包括热交换区的燃烧区中燃烧,其中至少一部分热量被提取,并且废气或燃烧烟雾在 范围800℃至1200℃; b)由所述燃烧产生的带有硫氧化物的烟雾穿过用于供应和分配烟气的空间到脱硫装置,该脱硫装置与硫的固体氧化物内部再循环起作用 吸附剂; c)将吸附剂注入所述空间; d)使烟雾进入所述设备; e)使烟雾渗入对流交换区,并且至少一部分热量从所述烟雾中提取; f)由气体/固体分离区域分离由步骤b)和c)得到的混合物,并将已经除去硫的氧化物的主要部分并且至少部分冷却的一部分气态流出物排出,并且 包含所述含硫化合物的所述吸附剂颗粒被排空。
    • 8. 发明授权
    • Cogeneration method and device using a gas turbine comprising a post-combustion chamber
    • 热电联供方法和使用包括后燃烧室的燃气轮机的装置
    • US07703271B2
    • 2010-04-27
    • US10548738
    • 2004-03-11
    • Ari MinkkinenEtienne LebasAlexandre Rojey
    • Ari MinkkinenEtienne LebasAlexandre Rojey
    • F02C1/06F02C6/00
    • F02C6/18F02C6/00F02C6/003F02C6/006Y02E20/14
    • A cogeneration method and device by turbine, particularly by gas turbine, uses a compression section, at least one expansion section, and a combustion chamber. A combustion agent including oxygen is compressed in the compression section; in the combustion chamber, one combustion step is carried out under pressure with a mixture of combustion agent compressed with a fuel; at least some of the hot gases obtained by pressurized combustion are used to effect an exchange with an external facility; and at least one postcombustion step is carried out of a mixture of hot gases coming from combustion with a fuel, prior to the exchange, and at least one other postcombustion step of a mixture of hot gases, coming from the exchange, with a fuel, in order to obtain hot gases that are sent to the expansion section.
    • 涡轮机,特别是燃气轮机的热电联产方法和装置使用压缩部分,至少一个膨胀部分和燃烧室。 包含氧的燃烧剂在压缩部中被压缩; 在燃烧室中,一个燃烧步骤在压力下用燃料压缩的燃烧剂的混合物进行; 通过加压燃烧获得的至少一些热气体用于与外部设备进行交换; 并且在交换之前,将来自燃烧的热气体与燃料的混合物进行至少一个后燃烧步骤,以及来自交换机的热气体与燃料的混合物的至少一个后燃烧步骤, 以获得发送到膨胀部分的热气体。