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    • 2. 发明公开
    • Method and Apparatus for Extracting a Compound from a Material
    • US20240066432A1
    • 2024-02-29
    • US18240258
    • 2023-08-30
    • Derek Osei BERCHIE
    • Derek Osei BERCHIE
    • B01D11/04
    • B01D11/0488B01D11/0484
    • An extraction apparatus comprising a boiler, an extraction chamber for holding material from which a compound is to be extracted, and a condenser for condensing the vaporized solvent, and returning the condensed solvent to the extraction chamber. A fluid connection between the boiler and the extraction chamber allows passage of vaporized solvent from the boiler to the extraction chamber and condensed solvent from the extraction chamber to the boiler. The extraction apparatus is configured such that, when the extraction apparatus is in use, the solvent moves repeatedly through a cycle in which: the solvent vaporizes within the boiler; the vaporized solvent passes from the boiler into the extraction chamber by way of the at least one fluid connection, and bubbles through condensed solvent within the extraction chamber so as to agitate the condensed solvent; the vaporized solvent condenses in the condenser and returns as condensed solvent to the extraction chamber; the condensed solvent interacts with the material in the extraction chamber to extract the compound; and at least a portion of the condensed solvent containing the extracted compound returns to the boiler from the extraction chamber. A corresponding method is also disclosed.
    • 7. 发明申请
    • SEPARATION METHOD AND SEPARATION DEVICE
    • 分离方法和分离装置
    • US20140008297A1
    • 2014-01-09
    • US13862145
    • 2013-04-12
    • Kabushiki Kaisha Koba Seiko Sho (Kobe Steel Ltd.)
    • Akira MatsuokaKoji Noishiki
    • B01D11/04
    • B01D11/0484B01D11/0488B01D11/0496
    • A separation method performs steps continuously and leads a solvent in which a separation object component is dissolved and a remaining fluid out of settlers under a separated state. The method includes leading a light fluid with a smaller specific gravity within the fluid in which the specific component is dissolved at the dissolution step and the remaining fluid out of settlers through upper side leading paths, and leading a heavy fluid with a larger specific gravity within the fluid in which the specific component is dissolved and the remaining fluid out of the settlers through lower side leading paths. A flow rate of the light fluid is controlled such that the height position of an interface between the light fluid and the heavy fluid within the settlers is maintained between the height position of connection parts of the upper side leading paths and the height position of connection parts of the lower side leading paths to the settlers.
    • 分离方法连续地进行步骤,并将分离对象成分溶解的溶剂和剩余的流体引导到分离状态下的沉降器中。 该方法包括在溶解步骤中将特定组分溶解的流体内的较小比重引导到较小的比重,​​并且通过上侧引导路径将剩余流体从沉降器中排出,并引导具有较大比重的重质流体 其中特定成分溶解的流体和剩余流体通过下侧引导路径流出沉降器。 控制光流体的流量,使得轻液体和沉降器内的重流体之间的界面的高度位置保持在上侧引导路径的连接部分的高度位置和连接部分的高度位置之间 的下方通往定居者的通道。