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    • 11. 发明授权
    • Preparation of .epsilon.-caprolactam by catalytic rearrangement of
cyclohexanone-oxime
    • 通过催化重排环己酮 - 肟制备ε-己内酰胺
    • US4248782A
    • 1981-02-03
    • US78031
    • 1979-09-24
    • Hugo FuchsUwe BrandPeter Horn
    • Hugo FuchsUwe BrandPeter Horn
    • C07D201/04
    • C07D201/04Y02P20/52
    • In a process for the preparation of .epsilon.-caprolactam by catalytic rearrangement of cyclohexanone-oxime in the gas phase at from 230.degree. to 450.degree. C. over a supported catalyst, containing boron trioxide, in a fluidized bed, wherein the catalyst is removed from the fluidized bed at the rate at which it becomes spent and is treated, in a fluidized state, with gases containing molecular oxygen at from 600.degree. to 900.degree. C., after which boron trioxide or boric acid is added to the fluidized catalyst, at from 300.degree. to 900.degree. C., before the catalyst is returned to the fluidized bed, the improvement that boron trioxide or boric acid of particle size from 0.05 to 1.5 mm is fed to the fluidized catalyst at one or more points.
    • 在通过在230℃至450℃的气相中催化重排环己酮 - 肟在含有三氧化硼的载体催化剂的流化床中制备ε-己内酰胺的方法,其中将催化剂从 流化床以其流失的速率以流化状态处理含有分子氧的气体在600-900℃,之后将三氧化硼或硼酸加入到流化催化剂中,在 在催化剂返回到流化床之前,从300℃升至900℃,改善将粒径为0.05-1.5mm的三氧化硼或硼酸以一个或多个点进料到流化催化剂中。
    • 12. 发明申请
    • Device and Method For Sample Preparation
    • 样品制备的装置和方法
    • US20080236256A1
    • 2008-10-02
    • US11915783
    • 2006-06-02
    • Uwe BrandFalk-Thilo Ferse
    • Uwe BrandFalk-Thilo Ferse
    • G01N30/08G01N30/10B01D15/10G01N30/40
    • G01N30/40G01N30/08G01N30/34G01N30/461G01N30/468G01N2030/085G01N2030/143G01N2030/407
    • A system and method for sample preparation and/or sample enrichment are provided. The system comprises the following components: a first switch element with a switch element input and at least two mutually exclusive switch element outputs and a second corresponding switch element with at least two mutually exclusive switch element inputs and a switch element output, the first and second switch elements being connected to control means for opening and closing the switch element inputs and switch element outputs; a first distributor element with at least three ports and a second distributor element with at least three ports; as well as a first separation column and a second separation column, the components being in such fluidic communication with each other that by means of different positions of the switch elements it is possible to configure at least two different fluidic paths in the system, wherein said different positions are achievable through the control means. The system allows, for example, the simple performance of the backflush process.
    • 提供了用于样品制备和/或样品富集的系统和方法。 该系统包括以下组件:具有开关元件输入的第一开关元件和至少两个相互排斥的开关元件输出,以及具有至少两个互斥开关元件输入和开关元件输出的第二对应开关元件,第一和第二 开关元件连接到用于打开和关闭开关元件输入和开关元件输出的控制装置; 具有至少三个端口的第一分配器元件和具有至少三个端口的第二分配器元件; 以及第一分离塔和第二分离塔,所述组分彼此流体连通,通过开关元件的不同位置,可以在系统中配置至少两个不同的流体路径,其中所述 通过控制装置可以实现不同的位置。 该系统允许例如反冲洗过程的简单性能。
    • 15. 发明授权
    • Device and method for sample preparation
    • 样品制备装置及方法
    • US07958774B2
    • 2011-06-14
    • US11915783
    • 2006-06-02
    • Uwe BrandFalk-Thilo Ferse
    • Uwe BrandFalk-Thilo Ferse
    • G01N13/00
    • G01N30/40G01N30/08G01N30/34G01N30/461G01N30/468G01N2030/085G01N2030/143G01N2030/407
    • A system and method for sample preparation and/or sample enrichment are provided. The system comprises the following components: a first switch element with a switch element input and at least two mutually exclusive switch element outputs and a second corresponding switch element with at least two mutually exclusive switch element inputs and a switch element output, the first and second switch elements being connected to control means for opening and closing the switch element inputs and switch element outputs; a first distributor element with at least three ports and a second distributor element with at least three ports; as well as a first separation column and a second separation column, the components being in such fluidic communication with each other that by means of different positions of the switch elements it is possible to configure at least two different fluidic paths in the system, wherein said different positions are achievable through the control means. The system allows, for example, the simple performance of the backflush process.
    • 提供了用于样品制备和/或样品富集的系统和方法。 该系统包括以下组件:具有开关元件输入的第一开关元件和至少两个相互排斥的开关元件输出,以及具有至少两个互斥开关元件输入和开关元件输出的第二对应开关元件,第一和第二 开关元件连接到用于打开和关闭开关元件输入和开关元件输出的控制装置; 具有至少三个端口的第一分配器元件和具有至少三个端口的第二分配器元件; 以及第一分离塔和第二分离塔,所述组分彼此流体连通,通过开关元件的不同位置,可以在系统中配置至少两个不同的流体路径,其中所述 通过控制装置可以实现不同的位置。 该系统允许例如反冲洗过程的简单性能。
    • 16. 发明授权
    • Method and circuit configuration for adapting the voltage level for the transmission of data
    • 用于调整数据传输电压电平的方法和电路配置
    • US07023242B2
    • 2006-04-04
    • US10490578
    • 2002-09-20
    • Uwe BrandWilhelm König
    • Uwe BrandWilhelm König
    • H03K19/0175
    • H04L25/0288
    • The invention relates to a method and to a circuit configuration for adjusting the voltage level for the electrical data transmission between a transmitting component and a receiving component of one or different assemblies. According to the invention, the voltage level is increased step-wise or continuously until the required value for the correct representation of the signals to be transmitted is reached in the receiving component. Increase of the voltage level is stopped by the transmission of respective information. The inventive method and circuit are advantageous in that the minimum voltage level required for the transmission of data can be precisely adjusted. Power loss can be thereby reduced and adjacent channel interferences through high voltage levels can be reduced to a minimum.
    • 本发明涉及一种用于调整发送部件和一个或多个组件的接收部件之间的电气数据传输的电压电平的方法和电路配置。 根据本发明,电压电平逐步或连续地增加,直到在接收部件中达到要发送的信号的正确表示的所需值。 通过传送各个信息来阻止电压电平的增加。 本发明的方法和电路的优点在于可以精确地调整传输数据所需的最小电压电平。 因此能够降低功率损耗,并且可以将通过高电压电平的相邻信道干扰降低到最小。