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    • 1. 发明授权
    • Reactor analysis system
    • 反应器分析系统
    • US5055260A
    • 1991-10-08
    • US223285
    • 1988-07-22
    • Raymond P. RobergeArthur W. Francis, Jr.Thomas G. Wolfe
    • Raymond P. RobergeArthur W. Francis, Jr.Thomas G. Wolfe
    • G01N33/00
    • G01N33/0032Y10T436/12Y10T436/176921Y10T436/19
    • Gas samples withdrawn from within a reactor vessel (or process in general), as well as from one feed gas thereto, are passed to gas analyzers for particular components or impurities desired to be measured. The response time of the reactor analysis system employed is advantageously minimized by the elimination of dead gas space within the system and the provisions for rapid purging of the system or of individual gas analyzer feed lines. The flexibility of the system to measure both particular gas sample components and periodically present impurities using the same analytical instruments is generated by the addition of an in-line reaction system comprised of reactant addition means and/or catalyst means to individual sample lines leading to particular analytical instruments.
    • 从反应器容器(或通常的方法)中取出的气体样品以及从其中的一种进料气体送入气体分析器以获得期望测量的特定组分或杂质。 所采用的反应器分析系统的响应时间有利地通过消除系统内的死气体空间和用于快速吹扫系统或各个气体分析器进料管线的设备来最小化。 通过将由反应物添加装置和/或催化剂装置组成的在线反应系统添加到导致特定气体样品组分的各个样品管线上,系统的灵活性测量特定气体样品组分并使用相同的分析仪器周期性地提供杂质产生 分析仪器
    • 3. 发明授权
    • Staged combustion for reducing nitrogen oxides
    • 分级燃烧还原氮氧化物
    • US5601425A
    • 1997-02-11
    • US259110
    • 1994-06-13
    • William T. KobayashiArthur W. Francis, Jr.Hisashi Kobayashi
    • William T. KobayashiArthur W. Francis, Jr.Hisashi Kobayashi
    • F23L1/00F23C1/00F23C6/04F23C99/00F23D11/10F23D11/38F23L7/00F23C5/00
    • F23C1/00F23C6/045F23L7/007F23D2900/00006Y02E20/344
    • A combustion method is provided for carrying out combustion with reduced generation of nitrogen oxides. The combustion method involves partially combusting a fluid fuel stream with a low velocity oxidant and thereafter mixing and combusting the resulting product with a secondary oxidant stream diluted with ambient gas. The velocity of the secondary oxidant stream is either increased to reduce the nitrogen oxides emission level or adjusted to provide the desired secondary oxidant/low velocity oxidant ratio which is useful for further decreasing the formation of nitrogen oxides. Normally, increasing the ratio and/or velocity further decreases the nitrogen oxides emission level. When liquid fuel is employed, it is atomized with atomizing fluid in such a manner to produce a liquid fuel stream having a very narrow spray angle. The production of such a stream allows the burner to be operated without water cooling. Moreover, such a stream, when combined with the above combustion method, unexpectedly provides effective and efficient combustion with reduced generation of nitrogen oxides.
    • 提供了一种燃烧方法,用于减少氮氧化物的产生而进行燃烧。 燃烧方法包括用低速氧化剂部分燃烧流体燃料流,然后将所得产物与用环境气体稀释的次级氧化剂流混合和燃烧。 二次氧化剂流的速度增加以降低氮氧化物排放水平或调节以提供期望的二次氧化剂/低速氧化剂比,其可用于进一步减少氮氧化物的形成。 通常,增加比率和/或速度进一步降低了氮氧化物的排放水平。 当使用液体燃料时,其以雾化流体雾化,以产生具有非常窄的喷射角度的液体燃料流。 这种流的生产允许燃烧器在没有水冷却的情况下操作。 此外,当与上述燃烧方法组合时,这种流意外地提供有效和有效的燃烧,同时还原氮氧化物的产生。