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    • 1. 发明申请
    • DEVICE AND METHOD FOR GASIFICATION AND COMBUSTION OF SOLID WASTE
    • 用于固体废物燃烧和燃烧的装置和方法
    • WO2012154133A3
    • 2013-12-12
    • PCT/SI2012000029
    • 2012-05-15
    • KIV KOVINSKA IND VRANSKO D DKRECA IVOSARLAH ALENREMIC MARJANMAVRIC BOJAN
    • KRECA IVOSARLAH ALENREMIC MARJANMAVRIC BOJAN
    • F23G5/027F23G5/00F23G5/05F23G5/16F23H7/08
    • F23G5/0276F23G5/002F23G5/05F23G5/16F23G5/32F23H7/08F23L7/005
    • This process features separate gasification and combustion on same moving grate (1). The grate can also be manufactured as a cascade (6). The device comprises of chamber with moving grate (1). Under this grate the air is injected (2). Above the grate the combustion chamber is separated into two parts (3.1 and 3.2) into which the air is injected (4). The fuel is additionally heated and gasified by passing hot flue gases, recirculation or steam injection (5) through the fuel. During gasification this does not introduce oyxgen so synthesis gas of higher energy value is obtained. Fuel inlet (7) is positioned higher allowing larger amount of fuel into the first part of the chamber (3.1) thus generating larger amounts of synthesis gas. The device is designed to allow exit of synthetics gas through the exhaust outlet (8) and further use of it or mixing with other final incineration flue gases in the final combustion chamber (10). Into the final combustion chamber the air (oxygen) is injected, for perfect combustion.
    • 该过程在相同的移动炉篦(1)上具有单独的气化和燃烧。 炉排也可以制作为级联(6)。 该装置包括具有移动炉排(1)的室。 在这个格栅下,注入空气(2)。 在炉排上方,燃烧室被分成两部分(3.1和3.2),空气被注入其中(4)。 通过通过热烟道气,再循环或蒸汽注入(5)通过燃料,燃料另外被加热和气化。 在气化过程中,不会引入奥氏体,因此可获得更高能量的合成气。 燃料入口(7)被定位得更高,允许更大量的燃料进入腔室(3.1)的第一部分,从而产生更大量的合成气体。 该设备被设计成允许合成气体通过排气出口(8)排出,并进一步使用它或与最终燃烧室(10)中的其它最终焚化烟气混合。 进入最终的燃烧室,注入空气(氧气),以完美燃烧。
    • 2. 发明申请
    • DEVICE AND METHOD FOR GASIFICATION
    • 用于气化的装置和方法
    • WO2012154133A2
    • 2012-11-15
    • PCT/SI2012/000029
    • 2012-05-15
    • KIV KOVINSKA INDUSTRIJA VRANSKO d.d.KREČA, IvoŠARLAH, AlenREMIC, MarjanMAVRIČ, Bojan
    • KREČA, IvoŠARLAH, AlenREMIC, MarjanMAVRIČ, Bojan
    • F23G5/027
    • F23G5/0276F23G5/002F23G5/05F23G5/16F23G5/32F23H7/08F23L7/005
    • This process features separate gasification and combustion on same moving grate (1). The grate can also be manufactured as a cascade (6). The device comprises of chamber with moving grate (1). Under this grate the air is injected (2). Above the grate the combustion chamber is separated into two parts (3.1 and 3.2) into which the air is injected (4). The fuel is additionally heated and gasified by passing hot flue gases, recirculation or steam injection (5) through the fuel. During gasification this does not introduce oyxgen so synthesis gas of higher energy value is obtained. Fuel inlet (7) is positioned higher allowing larger amount of fuel into the first part of the chamber (3.1) thus generating larger amounts of synthesis gas. The device is designed to allow exit of synthetics gas through the exhaust outlet (8) and further use of it or mixing with other final incineration flue gases in the final combustion chamber (10). Into the final combustion chamber the air (oxygen) is injected, for perfect combustion.
    • 该过程在相同的移动炉排(1)上具有单独的气化和燃烧。 炉排也可以制作成级联(6)。 该装置包括具有移动炉篦(1)的室。 在这个炉排下,空气被注入(2)。 在炉排上方,燃烧室被分成两部分(3.1和3.2),空气被注入其中(4)。 通过通过热烟道气,再循环或蒸汽注入(5)通过燃料,燃料另外被加热和气化。 在气化过程中,不会引入奥氏体,因此可获得更高能量的合成气。 燃料入口(7)被定位得更高,允许更大量的燃料进入腔室(3.1)的第一部分,从而产生更大量的合成气体。 该设备被设计成允许合成气体通过排气出口(8)排出,并进一步使用它或与最终燃烧室(10)中的其它最终焚化烟气混合。 进入最终的燃烧室,注入空气(氧气),以完美燃烧。