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    • 1. 发明授权
    • Process for the conversion of a glass furnace with the aid of a
combustion with oxygen
    • 借助氧气燃烧转化玻璃炉的方法
    • US5855639A
    • 1999-01-05
    • US856475
    • 1997-05-14
    • Lahcen OugaraneThierry Legiret
    • Lahcen OugaraneThierry Legiret
    • C03B5/235
    • C03B5/2353Y02P40/535Y02P40/55
    • Provided is a process for the production of a loop-shaped flame in a glass furnace. The furnace includes, in a rear part, a glass melting zone heated by injecting through at least one port a fuel gas and an oxidizer gas having more than 50 vol % of oxygen and, in a front part, a glass refining zone. The process involves defining a stoichiometry coefficient Ks of the flame in the melting zone or the refining zone according to the following formula: ##EQU1## The oxidizer gas and the fuel gas injected through at least the first port are adjusted to obtain a stoichiometry coefficient Ks in the glass melting zone equal to at most 0.8. A fuel-oxidizer mixture is injected into the refining zone to obtain a stoichiometry coefficient Ks in the refining zone which is greater than the stoichiometry coefficient Ks in the melting zone and which is between 0.8 and 1.5. An oxidizer gas is injected into the melting zone in the vicinity of a fume discharge zone to obtain a quantity of oxygen in the fumes of between 0.5 and 3% by volume. The invention has particular applicability to end-fired furnaces with recuperators in which the blocking of the recuperator makes it necessary to employ ports with oxygen during the blocking of the recuperator, to maintain output at an acceptable volume.
    • 提供了一种在玻璃熔炉中生产环形火焰的方法。 该炉在后部包括通过至少一个端口注入燃料气体和具有大于50体积%氧气的氧化剂气体以及在前部玻璃精炼区域中加热的玻璃熔融区域。 该方法包括根据以下公式定义熔融区或精炼区中的火焰的化学计量系数Ks:调节通过至少第一端口注入的氧化剂气体和燃料气体以获得化学计量系数Ks 在玻璃熔融区中等于至多0.8。 将燃料 - 氧化剂混合物注入到精炼区中以获得在精炼区中的化学计量系数Ks大于熔融区的化学计量系数Ks并且在0.8和1.5之间。 在烟气排出区附近的熔融区域内注入氧化剂气体,得到0.5〜3体积%的烟气中的氧气量。 本发明特别适用于具有换热器的终端燃烧炉,其中隔热装置的阻塞使得必须在隔热装置中使用具有氧气的端口,以将输出保持在可接受的体积。
    • 3. 发明授权
    • Microwave plasma torch, device comprising such a torch and process for
manufacturing powder by the use thereof
    • 微波等离子体焰炬,包括这种割炬的装置以及通过其使用制造粉末的方法
    • US4924061A
    • 1990-05-08
    • US204866
    • 1988-06-10
    • Jean-Luc LabatLahcen OugaraneMichel Gastiger
    • Jean-Luc LabatLahcen OugaraneMichel Gastiger
    • B22F9/30H05H1/30H05H1/42H05H1/46
    • H05H1/30H05H1/46
    • The microwave torch comprises at least one gas supply conduit (1, 2); a resonant cavity (3) forming around the conduit a sleeve open adjacent to the outlet of the conduit and including a lateral opening (4); a transition coaxial structure perpendicular to the sleeve comprising, on one hand, an outer tube (5) connected to the lateral opening (4) of the sleeve and, on the other hand, an inner element (6) having one end (20) in contact with the conduit and an opposite end which is in contact with the outer surface of a wave guide (8) and carries a transition member (7) disposed in the wave guide; said wave guide supplying microwave energy and having a rectangular section and perpendicular to the coaxial structure (5, 6) being provided with an opening (27) where the outer tube (5) of the coaxial structure is connected; shielding gas supply means in the wave guide and/or the coaxial structure and/or the sleeve; optionally tuning means; and optionally plasma igniting means.
    • 微波炉包括至少一个气体供应管道(1,2); 在所述导管周围形成有与所述导管的出口相邻的套筒并且包括侧向开口(4)的谐振腔(3); 一方面,垂直于套筒的过渡同轴结构一方面包括连接到套筒的侧向开口(4)的外管(5),另一方面,具有一端(20)的内部元件(6) 与导管接触并且与波导件(8)的外表面接触的相对端并且承载设置在波导管中的过渡构件(7); 所述提供微波能量的波导具有矩形截面并且垂直于所述同轴结构(5,6)设置有连接所述同轴结构的外管(5)的开口(27); 波导和/或同轴结构和/或套筒中的保护气体供应装置; 可选调谐装置; 和任选的等离子体点火装置。
    • 6. 发明授权
    • Combustion process and apparatus therefore containing separate injection
of fuel and oxidant streams
    • 因此,燃烧过程和装置包含单独注入燃料和氧化剂流
    • US5833447A
    • 1998-11-10
    • US714743
    • 1996-09-13
    • Pierre BodelinPatrick RecourtLahcen Ougarane
    • Pierre BodelinPatrick RecourtLahcen Ougarane
    • F23C99/00C03B5/235F23C5/14F23C7/02F23D14/22F23D14/32F23D99/00F23M5/02F23M3/02
    • C03B5/2353F23D14/22F23D14/32F23M5/025F23D2900/00013Y02P40/55
    • A burner assembly having improved flame length and shape control is presented, which includes in exemplary emodiments at least one fuel fluid inlet and at least one oxidant fluid inlet, means for transporting the fuel fluid from the fuel inlet to a plurality of fuel outlets, the fuel fluid leaving the fuel outlets in fuel streams that are injected into a combustion chamber, means for transporting the oxidant fluid from the oxidant inlets to at least one oxidant outlet, the oxidant fluid leaving the oxidant outlets in oxidant fluid streams that are injected into the combustion chamber, with the fuel and oxidant outlets being physically separated, and geometrically arranged in order to impart to the fuel fluid streams and the oxidant fluid streams angles and velocities that allow combustion of the fuel fluid with the oxidant in a stable, wide, and luminous flame. Alternatively, injectors may be used alone or with the refractory block to inject oxidant and fuel gases. The burner assembly affords improved control over flame size and shape and may be adjusted for use with a particular furnace as required.
    • 提供了具有改进的火焰长度和形状控制的燃烧器组件,其包括在示例性实施例中至少一个燃料流体入口和至少一个氧化剂流体入口,用于将燃料流体从燃料入口输送到多个燃料出口的装置, 将燃料出口离开燃料出口的燃料流注入到燃烧室中的装置,用于将氧化剂流体从氧化剂入口输送到至少一个氧化剂出口的装置,氧化剂流体在注入氧化剂流体的氧化剂流体流中离开氧化剂出口 燃烧室,燃料和氧化剂出口在物理上分离,并且几何地布置以便赋予燃料流体流和氧化剂流体流的角度和速度,其允许燃料流体与氧化剂在稳定的,宽的和 发光的火焰。 或者,喷射器可以单独使用或与耐火块一起使用以注入氧化剂和燃料气体。 燃烧器组件提供了对火焰尺寸和形状的改进的控制,并且可以根据需要调节用于特定的炉。