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    • 1. 发明授权
    • Device and method for feeding fuel
    • 燃料供给装置和方法
    • US07824179B2
    • 2010-11-02
    • US11411930
    • 2006-04-27
    • Toshiaki HasegawaSusumu MochidaToshihumi HoshinoKiyoko Hoshino, legal representative
    • Toshiaki HasegawaSusumu MochidaToshihumi Hoshino
    • F27D13/00
    • F23L15/04F23C9/00F23C2202/10F23C2202/20F23C2202/30F23D14/66F23K2401/10F23K2900/01041F23L7/005F23L15/02Y02E20/348
    • The present invention provides a fuel feeding apparatus and method for improving the controllability of mixing process and mixing ratio of fuel and combustion air, and a combustion system and method for effecting new combustion properties. The fuel feeding apparatus of the combustion system has fuel feeding means, combustion gas extraction means, steam supply means, mixing means and fuel gas introduction means. The combustion gas extraction means extracts combustion gas of a combustion area therefrom. The mixing means mixes the fuel of fuel feeding means with at least one of combustion gas extracted from the furnace and steam of a steam generator. The fuel gas introduction means introduces a mixed fluid of combustion gas, steam and fuel to the combustion area as a fuel gas, and allows the fuel gas to be mixed with the combustion air. A step of mixing the fuel with the combustion gas after extracted from the furnace and a step of mixing the fuel gas with the combustion air are stepwisely carried out, so that the controllability of mixing process and ratio of the air and fuel is improved. Such a control of fuel gas flow enables control of characteristics of flame and production of flame with new properties in the combustion area.
    • 本发明提供一种用于提高燃料和燃烧空气的混合过程和混合比的可控性的燃料供给装置和方法,以及用于实现新燃烧特性的燃烧系统和方法。 燃烧系统的燃料供给装置具有燃料供给装置,燃烧气体提取装置,蒸汽供应装置,混合装置和燃料气体引入装置。 燃烧气体提取装置从其中提取燃烧区域的燃烧气体。 混合装置将燃料供给装置的燃料与从炉中提取的燃烧气体和蒸汽发生器的蒸汽中的至少一种混合。 燃料气体引入装置将燃烧气体,蒸汽和燃料的混合流体作为燃料气体引入燃烧区域,并且允许燃料气体与燃烧空气混合。 逐步进行从炉中抽出燃料与燃烧气体混合的步骤,并且使燃料气与燃烧空气混合的步骤逐步进行,从而提高了混合过程的控制性和空气与燃料的比例。 这种燃料气体流量的控制使得能够在燃烧区域中具有新的特性来控制火焰的特性和火焰的产生。
    • 2. 发明申请
    • Device and method for feeding fuel
    • 燃料供给装置和方法
    • US20060263731A1
    • 2006-11-23
    • US11411930
    • 2006-04-27
    • Toshiaki HasegawaSusumu MochidaToshihumi HoshinoKiyoko Hoshino
    • Toshiaki HasegawaSusumu MochidaToshihumi HoshinoKiyoko Hoshino
    • F23J7/00F23D11/44F23L15/00
    • F23L15/04F23C9/00F23C2202/10F23C2202/20F23C2202/30F23D14/66F23K2401/10F23K2900/01041F23L7/005F23L15/02Y02E20/348
    • The present invention provides a fuel feeding apparatus and method for improving the controllability of mixing process and mixing ratio of fuel and combustion air, and a combustion system and method for effecting new combustion properties. The fuel feeding apparatus of the combustion system has fuel feeding means, combustion gas extraction means, steam supply means, mixing means and fuel gas introduction means. The combustion gas extraction means extracts combustion gas of a combustion area therefrom. The mixing means mixes the fuel of fuel feeding means with at least one of combustion gas extracted from the furnace and steam of a steam generator. The fuel gas introduction means introduces a mixed fluid of combustion gas, steam and fuel to the combustion area as a fuel gas, and allows the fuel gas to be mixed with the combustion air. A step of mixing the fuel with the combustion gas after extracted from the furnace and a step of mixing the fuel gas with the combustion air are stepwisely carried out, so that the controllability of mixing process and ratio of the air and fuel is improved. Such a control of fuel gas flow enables control of characteristics of flame and production of flame with new properties in the combustion area.
    • 本发明提供一种用于提高燃料和燃烧空气的混合过程和混合比的可控性的燃料供给装置和方法,以及用于实现新燃烧特性的燃烧系统和方法。 燃烧系统的燃料供给装置具有燃料供给装置,燃烧气体提取装置,蒸汽供应装置,混合装置和燃料气体引入装置。 燃烧气体提取装置从其中提取燃烧区域的燃烧气体。 混合装置将燃料供给装置的燃料与从炉中提取的燃烧气体和蒸汽发生器的蒸汽中的至少一种混合。 燃料气体引入装置将燃烧气体,蒸汽和燃料的混合流体作为燃料气体引入燃烧区域,并且允许燃料气体与燃烧空气混合。 逐步进行从炉中抽出燃料与燃烧气体混合的步骤,并且使燃料气与燃烧空气混合的步骤逐步进行,从而提高了混合过程的控制性和空气与燃料的比例。 这种燃料气体流量的控制使得能够在燃烧区域中具有新的特性来控制火焰的特性和火焰的产生。
    • 3. 发明授权
    • Process and device for production of allyl chloride
    • 制备烯丙基氯的方法和装置
    • US5367105A
    • 1994-11-22
    • US139851
    • 1993-10-22
    • Hidetaka MiyazakiToshiaki HasegawaYoshihiko KajimotoSusumu Mochida
    • Hidetaka MiyazakiToshiaki HasegawaYoshihiko KajimotoSusumu Mochida
    • C07C17/02B01J19/26C07C17/10C07C21/067
    • B01J19/26C07C17/10
    • A process for the production of allyl chloride, which comprises introducing propylene and chlorine into a reactor having at least one propylene-injection opening and at least one chlorine-injection opening, these openings being independent of each other, through the respective injection openings, and reacting them in a vapor phase, wherein propylene and chlorine are introduced into the reactor by injecting them in almost the same direction from the propylene-injection opening and the chlorine-injection opening which is closest to said propylene-injection opening, with a linear velocity in the propylene-injection opening, calculated as a value of at 300.degree. C. and 1 kg/cm.sup.2.G, of 100 m/sec or higher and a linear velocity of the chlorine-injection opening, calculated as a value of at 100.degree. C. and 1 kg/cm.sup.2.G, of 70 m/sec or higher, and the propylene-injection opening and the chlorine-injection opening are situated to meet the following expression (1),0.5.ltoreq.L/(dp+dc).ltoreq.20 (1)wherein dp is a diameter of the propylene-injection opening, dc is a diameter of the chlorine-injection opening which is closest to said propylene-injection opening, and L is a distance between centers of these two injection openings.
    • 一种制备烯丙基氯的方法,其包括将丙烯和氯引入具有至少一个丙烯注射开口和至少一个氯注入口的反应器中,这些开口彼此独立地通过相应的注射开口,以及 在气相中使它们反应,其中丙烯和氯通过从丙烯注入开口和最接近所述丙烯注入口的氯注入口以几乎相同的方向注入反应器,以线速度 在丙烯注入口中,以300℃和1kg / cm 2 G的值计算为100m / sec或更高,氯注入口的线速度计算为100的值 ℃和1kg / cm 2 .G,为70m / sec以上,丙烯注入口和氯气注入口为满足下式(1),0.5≤L/(dp + dc)
    • 5. 发明申请
    • REACTOR COMBUSTION CONTROL METHOD AND REACTOR
    • 反应器燃烧控制方法与反应器
    • US20050191591A1
    • 2005-09-01
    • US10508929
    • 2003-03-28
    • Takaaki MohriToshiaki YoshiokaYoshikazu HozumiTetsu ShiozakiToshiaki HasegawaSusumu Mochida
    • Takaaki MohriToshiaki YoshiokaYoshikazu HozumiTetsu ShiozakiToshiaki HasegawaSusumu Mochida
    • F23C1/00F23C5/08F23L15/02F27D13/00
    • F23L15/02F23C5/08Y02E20/348
    • A reactor combustion control method using a high temperature air combustion technology capable of reducing a temperature difference in a reactor without producing cracking and caulking in reaction tubes and the reactor controlled by using the method, the reactor wherein second burners (8) are disposed in a space formed between two or more reaction tubes (7) adjacent to each other so as to inject fuel in the extending direction of the reaction tubes (7), and partial combustion air feeding devices (10) and (11) for the second burners discharging exhaust gas in a combustion chamber (2) to the outside of the reactor through a permeable heat reservoir and feeding combustion air heated to a high temperature by the latent heat of the heat reservoir to the second burners (8) are installed; the method comprising the steps of raising the temperature in the reactor by the combustion of only the first burners (3a) to (6a) until the inside of a reactor body (1) is brought into a high temperature air combustion state, starting the combustion of the second burners (8) after the inside of the reactor body (1) is brought into the high temperature air combustion state, and decreasing the amount of combustion of the plurality of first burners (3a) to (6a) according an increase in combustion amount of the second burners (8) whereby a necessary combustion state can be provided.
    • 一种使用高温空气燃烧技术的反应器燃烧控制方法,其中第二燃烧器(8)设置在反应器中,其中第二燃烧器(8)设置在反应器中,所述反应器燃烧控制方法能够降低反应器中的温度差而不产生反应管中的裂缝和填缝, 在彼此相邻的两个或更多个反应管(7)之间形成的空间,以便在反应管(7)的延伸方向上喷射燃料,以及用于第二燃烧器排出的部分燃烧空气供给装置(10)和(11) 燃烧室(2)中的废气通过可渗透的储热器并通过蓄热器的潜热将第一燃烧器(8)的加热到高温的燃烧空气供给到反应器的外部; 该方法包括以下步骤:通过仅第一燃烧器(3a)至(6a)的燃烧使反应器中的温度升高直到反应器主体(1)的内部进入高温空气燃烧状态,起动 第二燃烧器(8)在反应器主体(1)内部的燃烧进入高温空气燃烧状态,并且减少多个第一燃烧器(3a)至(6a)的燃烧量, 根据第二燃烧器(8)的燃烧量的增加,由此可以提供必要的燃烧状态。