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    • 3. 发明授权
    • Chromatographic two-layer particles
    • 色谱双层颗粒
    • US07208093B2
    • 2007-04-24
    • US10526088
    • 2003-08-18
    • Hans BergPhilippe BussonMats Carlsson
    • Hans BergPhilippe BussonMats Carlsson
    • B01D15/08
    • B01D15/363B01D15/1807B01J20/285B01J20/286B01J20/3285B01J20/3293B01J39/26B01J41/20
    • The present invention is a method of producing a chromatographic separation matrix, wherein porous polymeric particles comprised of two layers with different properties are prepared in a two-phase system by (a) providing porous polymeric particles with reactive groups on their surfaces; (b) washing said particles with a first solvent and draining the particles to enclose a first phase; (c) wetting the outer layer of the particles by adding a second solvent, which is essentially insoluble in the first solvent; (d) reacting the reactive groups in the outer layer by adding a reagent, which is essentially non-reactive in the first solvent; and (e) coupling of chromatographic binding groups to the reactive groups in the inner layer. The invention also encompasses a porous polymer particle suitable for use as a chromatographic separation matrix and a process of separation, wherein a matrix according to the invention is used.
    • 本发明是一种制备色谱分离基质的方法,其中通过(a)在其表面上提供具有反应性基团的多孔聚合物颗粒,在两相体系中制备由具有不同性质的两层组成的多孔聚合物颗粒。 (b)用第一溶剂洗涤所述颗粒并排出颗粒以包围第一相; (c)通过加入基本不溶于第一溶剂的第二溶剂润湿颗粒外层; (d)通过添加在第一溶剂中基本上不反应的试剂使外层中的反应性基团反应; 和(e)色谱结合基团与内层中的反应性基团的偶合。 本发明还包括适合用作色谱分离基质的多孔聚合物颗粒和分离方法,其中使用根据本发明的基质。
    • 7. 发明申请
    • METHOD AND DEVICE FOR TESTING THE MEASURING FUNCTION OF A MEASURING DEVICE
    • 用于测量测量装置的测量功能的方法和装置
    • US20100089121A1
    • 2010-04-15
    • US12525301
    • 2008-01-28
    • Tryggve HemmingssonMats Carlsson
    • Tryggve HemmingssonMats Carlsson
    • G01N33/497
    • G01N33/497
    • The present invention relates to the field of gas measurements, and more specifically to the field of testing the measuring function of a measuring device (7) for gas measurements, the measuring device (7) including a gas sensor (9) generating at least one output signal. The method includes connecting at least one simulation signal to the measuring device (7) and/or feeding a gas mixture to the measuring device wherein the magnitude of the concentration of a gas to be measured in the gas mixture is known. The invention also relates to a simulation device (1) for connection to the measuring device (7) for gas measurements when testing the measuring function of the measuring device (7). The simulation device (1) generates at least one simulation signal which can attain at least one signal level, wherein a certain signal value corresponds to a certain gas concentration.
    • 本发明涉及气体测量领域,更具体地涉及测量用于气体测量的测量装置(7)的测量功能领域,测量装置(7)包括气体传感器(9),其产生至少一个 输出信号。 该方法包括将至少一个模拟信号连接到测量装置(7)和/或将气体混合物馈送到测量装置,其中在气体混合物中待测量的气体的浓度的大小是已知的。 本发明还涉及一种用于在测量测量装置(7)的测量功能时连接到用于气体测量的测量装置(7)的模拟装置(1)。 模拟装置(1)产生至少一个能够获得至少一个信号电平的模拟信号,其中某个信号值对应于一定的气体浓度。
    • 8. 发明申请
    • Servo-brake system in an Otto cycle engine
    • 伺服制动系统在奥托循环发动机中
    • US20070063579A1
    • 2007-03-22
    • US11440523
    • 2006-05-25
    • Mats Carlsson
    • Mats Carlsson
    • B60T8/44B60T8/24F02M35/10
    • B60T17/02B60T13/52
    • The present invention relates to an internal combustion engine (1) of the Otto type, comprising an induction pipe (3) in conjunction with the engine's (1) cylinders, a brake servo unit (15), a flow connection (29) for evacuating air from the brake servo unit (15) to the induction pipe (3) for the purpose of building up a vacuum inside the brake servo unit (15), in conjunction with which a Venturi unit (25) is arranged in the flow connection (17, 19) to assist with the building up of the aforementioned vacuum. The internal combustion engine is characterized in that the flow connection (17, 19) comprises a bypass line (29) having a lower flow resistance than the Venturi unit (25), the bypass line (29) being intended to connect the evacuated air past the Venturi unit (25) in the event of a transient vacuum in the induction pipe (3).
    • 本发明涉及一种Otto型内燃机(1),其包括与发动机(1)气缸结合的感应管(3),制动伺服单元(15),用于排气的流动连接(29) 为了在制动伺服单元(15)内部建立真空,从制动伺服单元(15)到输入管(3)的空气与文丘里单元(25)配合在流动连接 17,19)协助建立上述真空。 内燃机的特征在于,流动连接(17,19)包括具有比文丘里单元(25)低的流动阻力的旁路管线(29),旁路管线(29)旨在连接已抽空的空气 文丘里单元(25)在感应管(3)中发生瞬时真空的情况下。