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    • 3. 发明授权
    • Composite membrane and process
    • 复合膜和工艺
    • US07601263B2
    • 2009-10-13
    • US11480788
    • 2006-07-03
    • Katrin EbertJoachim KollJan Wind
    • Katrin EbertJoachim KollJan Wind
    • B01D61/00B01D39/00B01D39/10B01D71/06B01D63/00
    • B01D71/70B01D61/027B01D67/009B01D69/12B01D69/125B01D2323/34
    • The invention relates to a composite with a separation-active membrane layer and a supporting membrane, a process for the production of the same and a process for using the same. The composite membrane according to the invention is distinguished by the fact that the separation-active membrane layer comprises a polymer hardened by electromagnetic radiation with wave length that is less than 800 nm and/or by electron beams. The process according to the invention is distinguished by the fact that a layer of a solution of a polymer that can be hardened by electromagnetic radiation with a wavelength that is less than 800 nm and/or by electron beams and an initiator substance is applied to a supporting membrane and subsequently is hardened by electromagnetic radiation and/or by electron beams. The use according to the invention serves to retain low molecular weight substances from organic solutions.
    • 本发明涉及具有分离活性膜层和支撑膜的复合材料,其制备方法及其使用方法。 根据本发明的复合膜的特征在于分离活性膜层包含通过电磁辐射固化的聚合物,其波长小于800nm和/或通过电子束。 根据本发明的方法的特征在于以下事实:可以将波长小于800nm的电磁辐射和/或通过电子束和引发剂物质硬化的聚合物溶液层施加到 并且随后通过电磁辐射和/或电子束硬化。 根据本发明的用途用于从有机溶液中保留低分子量物质。
    • 6. 发明授权
    • Method and apparatus for reducing emissions from breather lines of
storage tanks
    • 减少储罐通气线排放的方法和装置
    • US6059856A
    • 2000-05-09
    • US732340
    • 1997-04-10
    • Klaus OhlroggeJan Wind
    • Klaus OhlroggeJan Wind
    • B67D7/04B01D53/22B01D61/00
    • B67D7/0476B01D53/22B67D7/049
    • A method and apparatus is disclosed for separating a vapor-gas mixture formed above a liquid in a tank and which mixture is exhausted from the tank through an exhaust line in order to relieve overpressure in the tank. The mixture is passed from the tank through a membrane unit having a separating membrane and underpressure is generated at least intermittently, on a permeate side of the membrane unit, by a pump. This produces on the permeate side of the membrane permeate enriched with vapor and on the retentate side of the membrane retentate deleted in vapor. The permeate is returned to the tank and the retentate is exhausted to the atmosphere via the exhaust line.
    • PCT No.PCT / DE95 / 00383 Sec。 371日期1997年04月10日 102(e)1997年4月10日PCT 1995年3月22日PCT PCT。 公开号WO95 / 26314 PCT 日期1995年10月5日公开了一种分离在罐中液体上形成的气 - 气混合物的方法和装置,并且该混合物通过排气管从罐排出,以便缓解罐中的过压。 混合物通过具有分离膜的膜单元从罐中通过,并且通过泵至少间歇地在膜单元的渗透侧产生负压。 这产生在富含蒸气的膜渗透物的渗透侧和在蒸汽中缺失的膜保留物的滞留物侧上。 渗透物返回到罐中,并且滞留物通过排气管排出到大气中。
    • 10. 发明授权
    • Hydraulic operating system
    • 液压操作系统
    • US5934176A
    • 1999-08-10
    • US903533
    • 1997-07-30
    • Laurentius A. G. MentinkRoelof Jan Wind
    • Laurentius A. G. MentinkRoelof Jan Wind
    • B60J7/12F15B21/02
    • B60J7/208B60J7/1273
    • A hydraulic operating system has a cylinder which is actuated to raise, hold or lower a load against the force of gravity. An electromagnetic 3/2 valve connects a working chamber of the cylinder to a hydraulic reservoir when not energized, and permits flow from a pump to the working chamber when energized. A non-return valve prevents flow from the working chamber to the pump when the valve is energized. A three position switch operates an electric control unit to raise, lower or hold the load in an intermediate position. When holding in an intermediate position, the control unit constantly energizes the valve during a first period, after which the control unit intermittently energizes and deenergizes the valve so as to lower the load in stepwise fashion during a second period.
    • 液压操作系统具有致动以反对重力提升,保持或降低负载的气缸。 电磁3/2阀在不通电时将气缸的工作室连接到液压储存器,并且在通电时允许从泵流到工作室。 当阀门通电时,止回阀防止从工作室流向泵。 三位置开关操作电控单元以将负载升高,降低或保持在中间位置。 当保持在中间位置时,控制单元在第一时段期间恒定地激励阀,之后控制单元间歇地给阀门通电和断电,从而在第二时段期间以逐步的方式降低负载。