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    • 82. 发明授权
    • Method and device for separating gaseous pollutants from hot process gases by absorption and a mixer for moistening particulate dust
    • 通过吸收将气态污染物与热过程气体分离的方法和装置,以及用于润湿颗粒物的混合器
    • US07387662B2
    • 2008-06-17
    • US10527877
    • 2003-09-17
    • Stefan AhmanNils Bringfors
    • Stefan AhmanNils Bringfors
    • B01D53/50B01D53/83
    • B01F3/1271B01D53/508B01F3/1228B01F7/00908B01F7/022B01F15/00863B01F15/063
    • In a method of separating gaseous pollutants from hot process gases, the process gases are passed through a contact reactor (22), in which an absorbent material in a moistened state is introduced to convert the gaseous pollutants into separable dust. The dust is separated in a dust separator (10). The separated dust is cooled in a first step by being brought into direct contact with a cooling fluid. In a second step, the cooled dust is mixed with a gas containing water vapour, said gas having a saturation temperature that is higher than the temperature of the cooled dust. The dust moistened by condensation of the water vapour is introduced into the contact reactor (22) to be mixed with the process gases. A mixer (24) for moistening of absorbent material has a first end (26) and a second end (28) and is divided into two zones. A first zone is a cooling zone (68) located at the first end (26). A second zone is a moistening zone (80) located at the second end (28).
    • 在将气体污染物与热处理气体分离的方法中,工艺气体通过接触反应器(22),其中引入湿润状态的吸收材料以将气态污染物转化成可分离的粉尘。 灰尘在灰尘分离器(10)中分离。 分离的灰尘通过与冷却流体直接接触而在第一步骤中冷却。 在第二步骤中,将冷却的灰尘与含有水蒸气的气体混合,所述气体的饱和温度高于冷却的粉尘的温度。 通过水蒸汽冷凝润湿的灰尘被引入到接触反应器(22)中以与工艺气体混合。 用于润湿吸收材料的混合器(24)具有第一端(26)和第二端(28),并被分成两个区域。 第一区域是位于第一端(26)处的冷却区(68)。 第二区域是位于第二端(28)处的润湿区(80)。
    • 83. 发明申请
    • Method and device for separating gaseous pollutants from hot process gases by absorption and a mixer for moistening particulate dust
    • 通过吸收将气态污染物与热过程气体分离的方法和装置,以及用于润湿颗粒物的混合器
    • US20050244317A1
    • 2005-11-03
    • US10527877
    • 2003-09-17
    • Stefan AhmanNils Bringfors
    • Stefan AhmanNils Bringfors
    • B01D53/50B01F3/12B01F7/00B01F7/02B01F15/00B01F15/06C01F3/00
    • B01F3/1271B01D53/508B01F3/1228B01F7/00908B01F7/022B01F15/00863B01F15/063
    • In a method of separating gaseous pollutants from hot process gases, the process gases are passed through a contact reactor (22), in which an absorbent material in a moistened state is introduced to convert the gaseous pollutants into separable dust. The dust is separated in a dust separator (10). The separated dust is cooled in a first step by being brought into direct contact with a cooling fluid. In a second step, the cooled dust is mixed with a gas containing water vapour, said gas having a saturation temperature that is higher than the temperature of the cooled dust. The dust moistened by condensation of the water vapour is introduced into the contact reactor (22) to be mixed with the process gases. A mixer (24) for moistening of absorbent material has a first end (26) and a second end (28) and is divided into two zones. A first zone is a cooling zone (68) located at the first end (26). A second zone is a moistening zone (80) located at the second end (28).
    • 在将气体污染物与热处理气体分离的方法中,工艺气体通过接触反应器(22),其中引入湿润状态的吸收材料以将气态污染物转化成可分离的粉尘。 灰尘在灰尘分离器(10)中分离。 分离的灰尘通过与冷却流体直接接触而在第一步骤中冷却。 在第二步骤中,将冷却的灰尘与含有水蒸气的气体混合,所述气体的饱和温度高于冷却的粉尘的温度。 通过水蒸汽冷凝润湿的灰尘被引入到接触反应器(22)中以与工艺气体混合。 用于润湿吸收材料的混合器(24)具有第一端(26)和第二端(28),并被分成两个区域。 第一区域是位于第一端(26)处的冷却区(68)。 第二区域是位于第二端(28)处的润湿区(80)。
    • 86. 发明授权
    • Method for vertical mixing and device for this
    • 垂直混合方法及其设备
    • US06789935B2
    • 2004-09-14
    • US09973811
    • 2001-10-11
    • Heinz BinderAndrea HermsmeyerPhilipp Hanimann
    • Heinz BinderAndrea HermsmeyerPhilipp Hanimann
    • B01F716
    • B01F15/0267B01F7/00241B01F7/00633B01F7/007B01F7/18B01F7/20B01F15/00798B01F15/00863B01F2215/0014
    • The invention relates to a method for the vertical mixing of gaseous, liquid, powdery and/or pasty products using, for example, a hollow shaft and inner shaft arranged in a housing, whereby paddle-shaped mixing tools are provided on the hollow shaft and on the inner shaft there is provided a discharge device arranged below an outlet of the mixer. The mixer is thereby completely filled in the operating state and the product and additives are pressed onto the inner wall of the housing by means of the mixing tools. The product flows continuously downwards under the force of gravity and acts against the partly backward-conveying paddles. The continuous product flow is regulated using a rotary slide valve provided at the outlet. The mixer is especially suitable as a dosing device and/or for lubricating extruder and/or expander products.
    • 本发明涉及一种使用例如空心轴和布置在壳体中的内轴将气态,液体,粉状和/或糊状产品垂直混合的方法,由此在空心轴上设置桨形混合工具, 在内轴上设置有设置在混合器出口下方的排出装置。 混合器由此被完全填充到操作状态,产品和添加剂通过混合工具被压到壳体的内壁上。 产品在重力作用下连续向下流动,并对着部分向后输送的桨叶作用。 使用设在出口处的旋转滑阀来调节连续的产品流量。 混合器特别适合作为计量装置和/或润滑挤出机和/或膨胀机产品。