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    • 72. 发明申请
    • TRACE COMPONENT REMOVAL IN CO2 REMOVAL PROCESSES BY MEANS OF A SEMIPERMEABLE MEMBRANE
    • 二氧化碳去除方法中的可除去膜的组分去除
    • US20130333568A1
    • 2013-12-19
    • US13825961
    • 2011-09-14
    • Jon K. BockmanMichael Koch
    • Jon K. BockmanMichael Koch
    • B01D53/14
    • B01D53/1425B01D53/1475B01D53/229B01D53/62B01D61/025B01D2252/102B01D2257/504B01D2258/0283F23J15/04F23J2215/50F23J2219/40Y02A50/2342Y02C10/04Y02C10/06Y02E20/326
    • A system (1) for removing carbon dioxide (CO2) from a gas stream by bringing the gas stream into contact with a circulating ammoniated solution stream such that CO2 is absorbed in said ammoniated solution, characterized in that the system comprises a membrane purifier (17), said membrane purifier having a first compartment (18) and a second compartment (19), wherein said first and second compartment are separated by a semipermeable membrane (20), a method for removing carbon dioxide (CO2) from a gas stream by bringing the gas stream into contact with a circulating ammoniated solution stream such that CO2 is absorbed in said ammoniated solution, said method comprising the step of separating trace components from a circulating solution using a semipermeable membrane, and the use of a membrane purifier having a first and a second compartment, wherein said first and a second compartments are separated by a semipermeable membrane, for reducing the trace component and/or water content of a circulating solution stream in a method or system for removing carbon dioxide (CO2) using a circulating ammoniated solution.
    • 一种用于通过使气流与循环的氨化溶液流接触以使得CO 2在所述氨化溶液中被吸收而从气流中除去二氧化碳(CO 2)的系统(1),其特征在于,所述系统包括膜净化器(17 ),所述膜净化器具有第一隔室(18)和第二隔室(19),其中所述第一和第二隔室由半透膜(20)分离,用于从气流中除去二氧化碳(CO 2)的方法由 使气流与循环的氨化溶液流接触,使得CO 2被吸收在所述氨化溶液中,所述方法包括使用半透膜从循环溶液中分离痕量组分的步骤,以及使用具有第一 和第二隔室,其中所述第一和第二隔室由半透膜隔开,用于减少AC的痕量成分和/或水含量 在使用循环氨化溶液除去二氧化碳(CO 2)的方法或系统中的循环溶液流。
    • 73. 发明申请
    • HIGH-VOLTAGE BUSHING
    • 高压母线
    • US20120292073A1
    • 2012-11-22
    • US13522360
    • 2011-01-07
    • Engelbert EngelsMichael KochAchim Langens
    • Engelbert EngelsMichael KochAchim Langens
    • H02G15/00H01B7/00
    • H01B17/28
    • An improved high-voltage duct has an electrically insulated winding body extending in a longitudinal direction and contains electrically conductive inserts wound about a winding core. The inserts are spaced apart from each other by insulation layers soaked in resin. A high-voltage conductor extends as a winding core in the winding body. A fastening flange is mounted on the winding body in a fastening area of the flange for assembly of the high-voltage duct, such that the duct can also be used for DC levels above 550 kV. Accordingly, the winding body contains different thicknesses in the fastening area thereof, so that areas of changes in diameter are configured in which the winding body contains different diameters at different locations along in a longitudinal direction thereof.
    • 改进的高压管道具有沿纵向方向延伸的电绝缘绕组体,并且包含缠绕在绕组芯上的导电插入件。 插入物通过浸泡在树脂中的绝缘层彼此间隔开。 高压导体在卷绕体中作为绕组芯延伸。 在用于组装高压管道的法兰的紧固区域中,紧固凸缘安装在卷绕体上,使得管道也可以用于高于550kV的DC电平。 因此,绕线体在其紧固区域中包含不同的厚度,使得直径变化的区域被构造成其中绕组主体在其纵向方向上的不同位置处包含不同的直径。