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    • 3. 发明授权
    • Gasification reactor and process for entrained-flow gasification
    • 气化反应器和夹带气化过程
    • US09290709B2
    • 2016-03-22
    • US12733720
    • 2008-09-18
    • Johannes KowollEberhard KuskeRalf AbrahamMax Heinritz-Adrian
    • Johannes KowollEberhard KuskeRalf AbrahamMax Heinritz-Adrian
    • C10J3/82C10J3/78C10J3/48C10J3/84
    • C10J3/82C01B3/02C10J3/20C10J3/485C10J3/78C10J3/845C10J2200/09C10J2300/0916C10J2300/093C10J2300/0943C10J2300/1223Y02P20/145
    • A process and device for the gasification of liquid or fine-grain solid fuel materials with the aid of oxygenous, gaseous gasification agents in a reactor is described. Liquid slag is separated on the walls of the reactor. The synthesis gas is generated in a first reaction chamber arranged in the upper part of the reactor and the feedstock is fed to the upper part. Liquid slag precipitates on its lateral walls, with free downflow and no solidification of the slag surface. The lower side has a hole with a slag drop-off edge, from which the generated synthesis gas can be withdrawn in downward direction and the liquid slag can drop off the edge. A second chamber which is delimited by a water film is located under the opening and used to keep the synthesis gas dry and cool. A third chamber is adjacent to the bottom of the second and fed with water to cool the synthesis gas. A water bath is adjacent the bottom of the third chamber and collects the slag particles already solidified and dropped off or those particles still in the liquid phase. The synthesis gas is withdrawn from the pressure vessel in an area below or on the side of the third chamber but in any case located above the water bath.
    • 描述了在反应器中借助于氧气气化气化剂气化液体或细粒固体燃料材料的方法和装置。 液体渣在反应器的壁上分离。 在布置在反应器上部的第一反应室中产生合成气,并将原料送入上部。 液体渣在其侧壁上沉淀,具有自由下流并且没有熔渣表面的固化。 下侧具有具有熔渣落下边缘的孔,所产生的合成气可从该孔向下拉出并且液体渣可以从边缘脱落。 由水膜界定的第二个室位于开口下方,用于保持合成气干燥和冷却。 第三室与第二室的底部相邻并且供给水以冷却合成气。 水浴与第三室的底部相邻,并收集已经凝固并脱落的渣粒,或者仍然处于液相的颗粒。 合成气体在第三室的下方或侧面的区域内从压力容器中取出,但是无论如何位于水浴上方。
    • 5. 发明申请
    • GASIFICATION REACTOR AND PROCESS FOR ENTRAINED-FLOW GASIFICATION
    • 气化反应器和进气流化过程
    • US20100263278A1
    • 2010-10-21
    • US12733720
    • 2008-09-18
    • Johannes KowollEberhard KuskeRalf AbrahamMax Heinritz-Adrian
    • Johannes KowollEberhard KuskeRalf AbrahamMax Heinritz-Adrian
    • C10J3/46C10J3/48
    • C10J3/82C01B3/02C10J3/20C10J3/485C10J3/78C10J3/845C10J2200/09C10J2300/0916C10J2300/093C10J2300/0943C10J2300/1223Y02P20/145
    • A process and device for the gasification of liquid or fine-grain solid fuel materials with the aid of oxygenous, gaseous gasification agents in a reactor is described. Liquid slag is separated on the walls of the reactor. The synthesis gas is generated in a first reaction chamber arranged in the upper part of the reactor and the feedstock is fed to the upper part. Liquid slag precipitates on its lateral walls, with free downflow and no solidification of the slag surface. The lower side has a hole with a slag drop-off edge, from which the generated synthesis gas can be withdrawn in downward direction and the liquid slag can drop off the edge. A second chamber which is delimited by a water film is located under the opening and used to keep the synthesis gas dry and cool. A third chamber is adjacent to the bottom of the second and fed with water to cool the synthesis gas. A water bath is adjacent the bottom of the third chamber and collects the slag particles already solidified and dropped off or those particles still in the liquid phase. The synthesis gas is withdrawn from the pressure vessel in an area below or on the side of the third chamber but in any case located above the water bath.
    • 描述了在反应器中借助于氧气气化气化剂气化液体或细粒固体燃料材料的方法和装置。 液体渣在反应器的壁上分离。 在布置在反应器上部的第一反应室中产生合成气,并将原料送入上部。 液体渣在其侧壁上沉淀,具有自由下流并且没有熔渣表面的固化。 下侧具有具有熔渣落下边缘的孔,所产生的合成气可从该孔向下拉出并且液体渣可以从边缘脱落。 由水膜界定的第二个室位于开口下方,用于保持合成气干燥和冷却。 第三室与第二室的底部相邻并且供给水以冷却合成气。 水浴与第三室的底部相邻,并收集已经凝固并脱落的渣粒,或者仍然处于液相的颗粒。 合成气体在第三室的下方或侧面的区域内从压力容器中取出,但是无论如何位于水浴上方。
    • 8. 发明申请
    • DISCHARGE CONE
    • 放电锥
    • US20130202369A1
    • 2013-08-08
    • US13643677
    • 2011-04-08
    • Stefan HamelJohannes Kowoll
    • Stefan HamelJohannes Kowoll
    • B65G53/38B65G69/06
    • B65D83/06B65D88/28B65D88/72
    • A device for discharging a fine-grained solid from a container wherein the container has a discharge cone in the lower area, which opens into a discharge opening and discharge device, a mechanism for fluidizing or loosening the solid are provided the discharge cone has at least one offset in the form of a gap the offset having openings a gas can be fed through each of the openings of the gap-shaped offsets, each of the gap-shaped offsets is covered toward the center axis of the discharge cone, the gap-shaped offsets are not directed toward the center axis of the discharge cone, and wherein the gaps of the gap-shaped offsets are closed by cover pates which have round or slit-shaped openings, and the gaps extend in the downward direction.
    • 一种用于从容器排出细粒状固体的装置,其中容器在下部区域中具有排放锥体,其通向排放开口和排出装置,设置用于使固体流体化或松动的机构,排出锥体至少具有 间隙形式的偏移具有可以通过间隙形偏置的每个开口进给的具有开口的开口的偏移,每个间隙形偏移被朝向排出锥的中心轴线覆盖, 形状偏移不指向排出锥体的中心轴线,并且间隙形偏移的间隙由具有圆形或狭缝形开口的盖板封闭,并且间隙沿向下方向延伸。
    • 10. 发明申请
    • METHOD AND APPARATUS FOR RECEIVING FINE-GRAINED TO COARSE-GRAINED SOLIDS FROM A VESSEL AND TRANSFERRING THEM TO A HIGHER-PRESSURE SYSTEM
    • 用于从容器中接收精细磨粒的粗细固体并将其传送到高压系统的方法和装置
    • US20100322721A1
    • 2010-12-23
    • US12735681
    • 2009-01-23
    • Stefan HamelJohannes KowollEberhard Kuske
    • Stefan HamelJohannes KowollEberhard Kuske
    • B65G53/22
    • B65D88/70B65D88/28
    • A device and a method for receiving and handing over fine-grain to coarse-grain solids from a container to a higher pressure system via a cut-off device. The device and method allow improvement of the hand-over of the solids while reliably guaranteeing the solids transport even for difficult bulk materials, high operational flexibility when used for various bulk materials and high flow rates towards the receiving container while avoiding compression of the bulk material. The device is formed from at least one vertical central tubular body (central tube) which is arranged inside the container at a distance in the direction of gravitation upstream of the cut-off device and which is open at the top and at the bottom, and by gas supply devices impinging the container bottom and/or the central tube to produce a solids flow in the central tube.
    • 一种装置和方法,用于通过切断装置接收并将细颗粒从容器移送到粗粒固体,并将其从较高压力系统移送到较高压力系统。 该设备和方法允许改进固体的切换,同时可靠地保证即使对于困难的散装材料的固体输送,当用于各种散装材料时具有高的操作灵活性以及朝向接收容器的高流速,同时避免了散装材料的压缩 。 该设备由至少一个垂直中心管状体(中心管)形成,该中心管状体(中心管)在截留装置的上游沿着重力方向的一定距离处设置在容器的内部,并且在顶部和底部是开放的, 通过撞击容器底部和/或中心管的气体供应装置在中心管中产生固体流。