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    • 3. 发明申请
    • FLOW CELL, DETECTOR, AND LIQUID CHROMATOGRAPH
    • 流动池,检测器和液相色谱
    • US20120127469A1
    • 2012-05-24
    • US13388765
    • 2010-06-18
    • Nobuhiro TsukadaShigenori TogashiYoshihiro NagaokaTomohiro Shoji
    • Nobuhiro TsukadaShigenori TogashiYoshihiro NagaokaTomohiro Shoji
    • G01N21/59
    • G01N30/74G01N2030/746
    • In a liquid chromatograph, a flow cell, in which a direction of detecting light and a flow direction of a sample fluid are parallel to each other, and in which the flow direction of the sample fluid changes at the moment of the sample fluid flowing out of a detecting portion into an outflow channel and at the moment of the sample fluid flowing into the detecting portion from an inflow channel, is capable of suppressing a peak broadening of a chromatogram. A plurality of outflow channels are provided, which shorten a distance between a flow outlet and a flow bend in the sample flow. A plurality of inflow channels are also provided, some of which collide jets flowing into the detecting portion from the inflow channels and others of which produce a swirl of jets flowing into the detecting portion from the inflow channels.
    • 在液相色谱仪中,流动池中检测光的方向和样品流体的流动方向彼此平行,并且样品流体流动方向在样品流体流出时变化的流动池 的检测部分流入流出通道,并且在样品流体从流入通道流入检测部分的时刻能够抑制色谱图的峰值变宽。 提供了多个流出通道,其缩短了流出口和样品流中的流动弯曲之间的距离。 还设置有多个流入通道,​​其中一些流入通道从流入通道碰撞流入检测部分的射流,其中一些从流入通道产生流入检测部分的喷流漩涡。
    • 4. 发明授权
    • Fluid mixer
    • 流体搅拌机
    • US08287179B2
    • 2012-10-16
    • US12708070
    • 2010-02-18
    • Tetsuro MiyamotoYoshishige EndoShigenori TogashiErika Katayama
    • Tetsuro MiyamotoYoshishige EndoShigenori TogashiErika Katayama
    • B01F5/04
    • B01F5/0665B01F5/0679B01F13/0062B01F13/0066
    • A fluid mixer for mixing a first fluid and a second fluid includes an introducing component having a bore, a cylindrical component fitted into the bore of the introducing component and a mixing component having a conical recess and on which the introducing component and the cylindrical component are held. A first introducing flow path receives the first fluid and a first distributing flow path distributes the first fluid over the whole circumference of the cylindrical component. A second introducing flow path receives the second fluid. A second distributing flow path distributes the second fluid so that the first fluid and the second fluid are alternately arranged in an circumferential direction. A joining part joins together the first fluid and the second fluid fed with the fluids alternately arranged circumferentially.
    • 用于混合第一流体和第二流体的流体混合器包括具有孔的引入部件,装配在引入部件的孔中的圆柱形部件和具有锥形凹部的混合部件,引导部件和圆柱形部件 保持。 第一引入流动路径接收第一流体,并且第一分配流动路径将第一流体分布在圆柱形部件的整个圆周上。 第二引入流路接收第二流体。 第二分配流路分配第二流体,使得第一流体和第二流体沿圆周方向交替布置。 接合部将第一流体和供给有周向交替布置的流体的第二流体连接在一起。
    • 5. 发明授权
    • Liquid-liquid extraction system
    • 液 - 液萃取系统
    • US08252239B2
    • 2012-08-28
    • US12783924
    • 2010-05-20
    • Mami HakariShigenori TogashiYasuhiko Sasaki
    • Mami HakariShigenori TogashiYasuhiko Sasaki
    • B06B1/20B01D11/00B01D17/02
    • B01D11/04B01D11/0265B01D11/0496B01F3/0819B01F11/0283
    • The invention aims to reduce the processing time of liquid-liquid extraction, reduce variations in the amount of extraction of a solute, and improve the extraction efficiency. Provided are a container adapted to contain a continuous phase and a dispersion phase that are mutually immiscible liquids, and a solute dissolved in at least one of the continuous and dispersion phases, a water tank accommodating therein the container and containing water around the container, an emulsification ultrasonic oscillation source disposed outside the water tank, on a plane substantially parallel with the interface between the continuous and dispersion phases, a separation ultrasonic oscillation source disposed outside the water tank, an ultrasonic-oscillation-source driving circuit configured to drive the emulsification ultrasonic oscillation source and the separation ultrasonic oscillation source, and a control unit configured to control the ultrasonic-oscillation-source driving circuit such that it sequentially drives the emulsification ultrasonic oscillation source and the separation ultrasonic oscillation source.
    • 本发明旨在减少液 - 液萃取的处理时间,减少溶质萃取量的变化,提高萃取效率。 提供一种容器,其适于容纳相互不混溶的液体的连续相和分散相,以及溶解在至少一个连续分散相中的溶质,在其中容纳容器并在容器周围容纳水的水箱, 乳化超声波振荡源设置在水箱外部,与基本上平行于连续分散相之间的界面的平面上,设置在水箱外部的分离超声波振荡源,构造成驱动乳化超声波的超声波振荡源驱动电路 振荡源和分离超声波振荡源,以及控制单元,被配置为控制超声波振荡源驱动电路,使得其依次驱动乳化超声波振荡源和分离超声波振荡源。
    • 6. 发明申请
    • LIQUID-LIQUID EXTRACTION SYSTEM
    • 液体萃取系统
    • US20100296976A1
    • 2010-11-25
    • US12783924
    • 2010-05-20
    • Mami HAKARIShigenori TogashiYasuhiko Sasaki
    • Mami HAKARIShigenori TogashiYasuhiko Sasaki
    • B06B1/20B01D11/00B01D17/02
    • B01D11/04B01D11/0265B01D11/0496B01F3/0819B01F11/0283
    • The invention aims to reduce the processing time of liquid-liquid extraction, reduce variations in the amount of extraction of a solute, and improve the extraction efficiency. Provided are a container adapted to contain a continuous phase and a dispersion phase that are mutually immiscible liquids, and a solute dissolved in at least one of the continuous and dispersion phases, a water tank accommodating therein the container and containing water around the container, an emulsification ultrasonic oscillation source disposed outside the water tank, on a plane substantially parallel with the interface between the continuous and dispersion phases, a separation ultrasonic oscillation source disposed outside the water tank, an ultrasonic-oscillation-source driving circuit configured to drive the emulsification ultrasonic oscillation source and the separation ultrasonic oscillation source, and a control unit configured to control the ultrasonic-oscillation-source driving circuit such that it sequentially drives the emulsification ultrasonic oscillation source and the separation ultrasonic oscillation source.
    • 本发明旨在减少液 - 液萃取的处理时间,减少溶质萃取量的变化,提高萃取效率。 提供一种容器,其适于容纳相互不混溶的液体的连续相和分散相,以及溶解在至少一个连续分散相中的溶质,在其中容纳容器并在容器周围容纳水的水箱, 乳化超声波振荡源设置在水箱外部,与基本上平行于连续分散相之间的界面的平面上,设置在水箱外部的分离超声波振荡源,构造成驱动乳化超声波的超声波振荡源驱动电路 振荡源和分离超声波振荡源,以及控制单元,被配置为控制超声波振荡源驱动电路,使得其依次驱动乳化超声波振荡源和分离超声波振荡源。