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    • 1. 发明申请
    • COATING MATERIAL SPRAY MIST TREATMENT METHOD
    • 涂料材料喷雾雾化处理方法
    • US20140114015A1
    • 2014-04-24
    • US14129741
    • 2011-12-21
    • Takeo Kurushima
    • Takeo Kurushima
    • C09D133/00
    • C09D133/00B01D47/02B01D47/027B01D2247/105B01D2247/14B05B14/46B05B14/462B05B16/00C09D5/00C09D7/71Y02P70/36
    • Provided is a treatment method that directly and separately separates and recovers a resin phase and an inorganic filler phase from a coating mist for an organic solvent-based coating used in general coating application. In a method that collects an organic solvent-based coating spray mist, the treatment method for the organic solvent-based coating spray mist is characterized by including a step for collecting the spray mist by bringing the organic solvent-based coating spray mist into contact directly and at high speed with water that comprises strong alkaline electrolysis water and in which the pH is maintained at 9 or higher and ORP is +200 mV or lower and a step for thereafter separating a solid portion, which has been formed, from the water that comprises the strong alkaline electrolysis water in which the spray mist has been collected. Additionally, the coating mist can be recovered with excellent efficiency and as a reusable resource.
    • 提供一种直接和分开地从用于一般涂布应用中的有机溶剂基涂层用涂料雾分离和回收树脂相和无机填料相的处理方法。 在收集有机溶剂型涂料喷雾的方法中,有机溶剂型涂料喷雾的处理方法的特征在于包括通过使有机溶剂型涂料喷雾直接接触而收集喷雾的步骤 并且用高碱度电解水高压,其中pH值保持在9以上,ORP为+ 200mV以下,然后从水中分离形成的固体部分的步骤, 包括已经收集喷雾的强碱性电解水。 此外,可以以优异的效率和可再利用的资源回收涂层雾。
    • 3. 发明授权
    • Fluid washer for a spray booth
    • 用于喷漆室的流体清洗机
    • US06837931B1
    • 2005-01-04
    • US10767149
    • 2004-01-29
    • Louis F. McGough
    • Louis F. McGough
    • B05B15/12B05D15/12
    • B05B14/44B05B14/46B05B16/95Y10S55/46Y10S118/07
    • A water washer for spray booth includes a gas exhaust duct, an exhaust fan and a fluid pump. The duct includes an entrance and an exit, with the entrance of the duct including a plurality of apertures. The entrance of the duct is positioned to receive a gas mixed with a spray from a spray application area of a spray booth. The exhaust fan is positioned to draw the gas from the spray application area into the gas exhaust duct. The fluid pump is coupled to a source of fluid and fluid supply pipe, which is positioned to direct a fluid into the plurality of apertures at the entrance of the enclosure and thereby remove overspray from the gas drawn from the spray application area.
    • 用于喷雾室的洗衣机包括排气管,排风扇和流体泵。 管道包括入口和出口,管道的入口包括多个孔。 管道的入口被定位成接收与来自喷雾室的喷涂应用区域的喷雾混合的气体。 排气风扇被定位成将气体从喷涂区域吸入排气管道。 流体泵联接到流体源和流体供应管,其定位成将流体引导到外壳入口处的多个孔中,从而从喷雾施用区域抽出的气体中除去过量的喷雾。
    • 10. 发明申请
    • Unknown
    • 未知
    • US20160175873A1
    • 2016-06-23
    • US14972437
    • 2015-12-17
    • Eisenmann SE
    • Michael Schlipf
    • B05B15/12B03C3/41B03C3/04
    • B03C3/04B01D53/323B01D2257/704B01D2258/0258B03C3/017B03C3/019B03C3/08B03C3/12B03C3/41B03C3/47B03C2201/10B05B13/0431B05B14/42B05B14/44B05B14/46B05B14/48
    • An apparatus for separating particles from an air stream, the apparatus having an inlet region for the waste air stream, an outlet region for the waste air stream, a separating device arranged along the waste air stream, and at least one electrode arrangement which is connected to a high voltage source, wherein a charging region having one or more electrodes is provided to form a layer enriched with electrical charges, and wherein a separating region comprising having separating surfaces is provided, which is subordinate to the charging region. The invention also relates to a method for separating particles from the waste air stream of a coating booth, wherein the waste air stream through a charging region in which particles of the waste air stream are charged, and the waste air stream after leaving the charging region flows through a separating region in which charged particles are deposited on separating surfaces.
    • 一种用于从空气流中分离颗粒的装置,该装置具有用于废气流的入口区域,用于废气流的出口区域,沿着废气流排列的分离装置,以及至少一个连接的电极装置 提供具有一个或多个电极的充电区域以形成富含电荷的层,并且其中设置有分离表面的分离区域,其位于充电区域的下方。 本发明还涉及一种用于从涂层室的废气流中分离颗粒的方法,其中通过其中填充有废气流的颗粒的装料区域的废气流和离开充电区域之后的废气流 流过分离区域,其中带电粒子沉积在分离表面上。