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    • 1. 发明公开
    • AIRBORNE MICROBIAL MEASUREMENT APPARATUS AND METHOD
    • 洛克希提斯特MIKROBIELLE MESSVORRICHTUNG UND VERFAHREN
    • EP3111198A1
    • 2017-01-04
    • EP14883905.3
    • 2014-12-12
    • LG Electronics Inc.
    • PARK, ChulwooLEE, SunghwaJUNG, Yeekyeong
    • G01N21/76C12Q1/04
    • G01N15/0625C12Q1/04C12Q1/06C12Q1/24G01N1/2205G01N1/2208G01N15/00G01N15/0643G01N21/763G01N2015/0019G01N2015/0069
    • Provided is an airborne microbial measurement apparatus and a method of measuring the same. The airborne microbial measurement apparatus includes a particle separation device comprising an introduction part for introducing air and a nozzle part disposed on one side of the introduction part, a microbial particle passage through which microbial particles in the air passing through an inner passage of the nozzle part flow, an air particle passage through which air particles in the air passing through an outer space of the nozzle part flow, a collection device communicating with the microbial particle passage, the collection device comprising a filter part onto which the microbial particles are collected, and a luminescence measurement device dispose on one side of the collection device to detect an amount or intensity of light emitted from the microbial particles collected onto the filter part.
    • 本发明提供一种空气微生物测定装置及其测定方法。 空气微生物测定装置具备:颗粒分离装置,其具有引入空气的导入部和设置在导入部的一侧的喷嘴部,微生物粒子通过空气中的微生物粒子通过喷嘴部的内部通路 流过空气颗粒通道,穿过喷嘴部分的外部空间的空气颗粒流过该空气颗粒通道,与微生物颗粒通道连通的收集装置,该收集装置包括收集微生物颗粒的过滤部分,以及 发光测量装置设置在收集装置的一侧以检测从收集到过滤器部分上的微生物颗粒发射的光的量或强度。
    • 2. 发明公开
    • DUST MEASUREMENT DEVICE AND METHOD
    • EP3614124A2
    • 2020-02-26
    • EP18787255.1
    • 2018-03-09
    • LG Electronics Inc.
    • PARK, ChulwooSUNG, Bongjo
    • G01N15/02G01N27/04
    • The present invention relates to a dust measurement device and method which can increase the accuracy of dust measurement by deriving a mass concentration on the basis of a number concentration distribution according to particle sizes. The dust measurement device of the present invention comprises: a charging unit for charging a feed material with electrical charges; a first dust collecting unit including a first and a second dust collecting electrode which are spaced apart from each other, through which the material passes, and to which different voltages are applied; a second dust collecting unit for collecting the material which has passed through the first dust collecting unit; a current measurement unit for measuring current flowing through the second dust collecting unit; and a control unit for calculating a mass concentration of the material by using the value of the current measured by the current measurement unit and adjusting voltages applied to the charging unit and the first dust collecting unit on the basis of the mass concentration.