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    • 1. 发明申请
    • MULTI-CHANNEL FLUOROMETRIC SENSOR AND METHOD OF USING SAME
    • 多通道荧光传感器及其使用方法
    • WO2015048378A1
    • 2015-04-02
    • PCT/US2014/057598
    • 2014-09-26
    • ECOLAB USA INC.
    • BANKS, Rodney H.TOKHTUEV, Eugene
    • G01N21/00G01N21/64G01N21/47G01N21/49G01N1/10G01N27/02G01K13/00
    • G01N21/645G01N21/53G01N21/8507G01N33/1826G01N2033/184
    • An optical sensor may include multiple optical emitters configured to emit light into a fluid sample via an optical pathway. Light from the emitters can cause fluorescence from the sample and/or scatter off of the sample. Scattered and fluoresced light can be received by an optical detector in the sensor via the optical pathway, and used to determine at least one characteristic of the fluid sample. A second optical detector can provide reference measurements of the amount of light emitted to the sample. In one example, the optical detector can detect scattered and fluoresced light simultaneously. In another example, light is emitted and detected alternatingly. The sensor can be part of a system that includes one or more controllers configured to control the emitting and detecting of light to and from the fluid sample. The controller can use detected light to determine at least one characteristic of the fluid sample.
    • 光学传感器可以包括配置成经由光学路径将光发射到流体样品中的多个光发射器。 来自发射体的光可导致样品的荧光和/或样品的散射。 分散的和荧光的光可以通过光学路径的传感器中的光学检测器接收,并用于确定流体样品的至少一个特性。 第二光学检测器可以提供发射到样品的光量的参考测量值。 在一个示例中,光学检测器可以同时检测散射的和荧光的光。 在另一示例中,发光并交替检测光。 该传感器可以是系统的一部分,其包括一个或多个控制器,其被配置为控制向流体样品和从流体样品的光的发射和检测。 控制器可以使用检测到的光来确定流体样品的至少一个特性。
    • 5. 发明申请
    • CONDUCTIVITY SENSOR WITH VOID CORRECTION
    • 具有空隙校正的电导率传感器
    • WO2018035358A1
    • 2018-02-22
    • PCT/US2017/047415
    • 2017-08-17
    • ECOLAB USA INC.
    • GODFREY, Martin RayTOKHTUEV, EugeneERICKSON, Joseph
    • G01N27/02G01N27/08G01N27/22G01N27/07
    • Systems and methods can be used for correcting for the presence of voids in a fluid when measuring the conductivity thereof. The conductivity of a fluid can be measured using a conductivity sensor. Capacitance electrodes can be used to measure the capacitance of the fluid. The measured capacitance affected by the fluid can be used in combination with the measured conductivity to determine a corrected conductivity value that compensates for possible voids in the fluid. Other parameters, such as the makeup or temperature of the fluid can be used in determining the corrected conductivity measurement. Some such systems include an annular housing and can be inserted or integrated into fluid flow systems so that fluid to be analyzed flows through an aperture defined by the annular housing.
    • 系统和方法可用于在测量其电导率时校正流体中空隙的存在。 流体的电导率可以使用电导率传感器来测量。 电容电极可用于测量流体的电容。 所测量的流体影响的电容可以与测量的电导率组合使用,以确定补偿流体中可能的空隙的校正电导率值。 其他参数,例如流体的组成或温度可以用于确定校正的电导率测量值。 一些这样的系统包括环形壳体并且可以被插入或集成到流体流动系统中,使得待分析的流体流过由环形壳体限定的孔。