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    • 1. 发明申请
    • BURNER HOLDING DEVICE COMPRISING A COOLING SYSTEM FOR A BURNER ARRANGEMENT IN AN ENTRAINED FLOW GASIFIER
    • 燃烧器保持装置,包括用于燃烧器装置的冷却系统,用于在进入的流动气化器
    • US20110116987A1
    • 2011-05-19
    • US12988866
    • 2009-04-21
    • Olaf SchulzeAnton AlthappMichael GätkeBurkhard MöllerReinhold GrunwaldWolfgang RabeGünter Scholz
    • Olaf SchulzeAnton AlthappMichael GätkeBurkhard MöllerReinhold GrunwaldWolfgang RabeGünter Scholz
    • F28D21/00
    • C10J3/76C10J3/485C10J3/506C10J2200/152F23D14/78
    • The instant invention relates to a burner holding device for burners, which is arranged on an entrained flow gasification reactor, wherein the burners (4, 5) are held in the burner holding device (7) and extend through a flange (11), which fixes the burner holding device (7) to the entrained flow gasification reactor (8) and extend through the burner holding device (7) into the entrained flow gasification reactor (8). The cooling device encompasses at least two cooling circuits (1, 2), which are independent from one another, wherein exactly one cooling circuit (1, 2) is at least partially assigned to each burner (4, 5), so that each burner (4, 5) is surrounded by a section of the cooling device on an-end facing the front surface and wherein at least one cooling circuit (1, 2) is at least partially assigned to the front surface for cooling. Below the flange (11) within the burner holding device (7) from top to bottom,a layer (19) consisting of insulating casting compound, which is fire resistant up to at least 800° C. and comprises a heat conductivity in the range of from 0.02-0.8 W/m K,a layer consisting of loose material (17), which is fire resistant up to at least 800° C.,a layer (18) consisting of heat-conducting casting compound, which is fire resistant up to at least 1800° C. and comprises a heat conductivity of 3-15 W/m K furthermore surrounds the burners (4, 5).
    • 本发明涉及一种用于燃烧器的燃烧器保持装置,其布置在夹带流动气化反应器上,其中燃烧器(4,5)保持在燃烧器保持装置(7)中并延伸穿过凸缘(11),凸缘 将燃烧器保持装置(7)固定到夹带流化气化反应器(8)并延伸穿过燃烧器保持装置(7)进入夹带流化气化反应器(8)。 冷却装置包括彼此独立的至少两个冷却回路(1,2),其中恰好一个冷却回路(1,2)至少部分地分配给每个燃烧器(4,5),使得每个燃烧器 (4,5)在面向所述前表面的一端上由所述冷却装置的一部分包围,并且至少一个冷却回路(1,2)至少部分地分配给所述前表面用于冷却。 在燃烧器保持装置(7)内从顶部到底部的法兰(11)下面的由绝缘浇铸料构成的层(19),其耐火至少800℃,并且包括在该范围内的导热率 为0.02-0.8W / m K,由至少800℃的耐火性的松散材料(17)组成的层,由导热浇注料组成的层(18),其是耐火的 高达至少1800℃,并且包括3-15W / m K的导热性,并且还包围燃烧器(4,5)。
    • 7. 发明授权
    • Process and apparatus for the endothermic gasification of carbon
    • 碳吸热气化的工艺和装置
    • US07776114B2
    • 2010-08-17
    • US11460379
    • 2006-07-27
    • Dietmar RügerOlaf SchulzeJonas KappellerBurkhard MöllerBodo Max Wolf
    • Dietmar RügerOlaf SchulzeJonas KappellerBurkhard MöllerBodo Max Wolf
    • C10J3/00
    • C10J3/487C10J3/526C10J3/64C10J3/84C10J2200/158C10J2300/1609
    • A process for the endothermic gasification of solid carbon in an entrained bed facility comprises partial oxidation of fuel(s) and endothermic gasification of solid carbon, preferably preceded by low temperature carbonization such that the carbonization gas is passed to the partial oxidation and the carbonization coke is passed to the endothermic gasification. The hot gas streaming downwardly from the combustion chamber is deflected to produce separation of the liquid slag and is then passed to the endothermic gasification that operates with a rising gas stream and with addition of solid carbon having a grain diameter of up to 20 mm. The speed of the gas at the carbon inlet is higher than, and the speed of the gas at the end of the endothermic gasification is lower than, the suspension rate of the reactive carbon particles, to produce an increase of the relative speed difference between the gas and the carbon particles. Apparatus is also disclosed for carrying out the process.
    • 在夹带床设备中固体碳的吸热气化的方法包括燃料的部分氧化和固体碳的吸热气化,优选在低温碳化之前,使得碳化气体进入部分氧化和碳化焦炭 被传递到吸热气化。 从燃烧室向下流动的热气体被偏转以产生液体炉渣的分离,然后被传递到用升高的气流运行的吸热气化,并加入具有高达20mm的粒径的固体碳。 碳入口处的气体速度高于吸热气化结束时的气体速度低于反应性碳颗粒的悬浮速度,以产生相对速度差 气体和碳颗粒。 还公开了用于执行该过程的装置。