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    • 2. 发明申请
    • GAS FILTRATION APPARATUS AND METHOD
    • 气体过滤装置和方法
    • WO2017162814A1
    • 2017-09-28
    • PCT/EP2017/056968
    • 2017-03-23
    • KONINKLIJKE PHILIPS N.V.
    • MARRA, JohanRONDA, Cornelis, ReinderDE GRAAF, Pascal
    • F24F3/16F24F11/00
    • A gas filtration apparatus comprising a filter for filtering a gaseous pollutant from a gas to be filtered, the filter comprising filter walls impregnated with an impregnant. The apparatus further comprises a relative humidity sensor for measuring relative humidity; a ventilation system for controllably driving gas through the filter, and a controller configured to control the ventilation system based on relative humidity information obtained by the relative humidity sensor. The controller is configured to control the ventilation system based on the measured relative humidity level and filter relative humidity level information.
    • 气体过滤装置,其包括用于过滤来自待过滤气体的气态污染物的过滤器,所述过滤器包括浸渍有浸渍剂的过滤器壁。 该设备还包括用于测量相对湿度的相对湿度传感器; 用于可控地驱动气体通过过滤器的通风系统,以及配置成基于由相对湿度传感器获得的相对湿度信息来控制通风系统的控制器。 控制器被配置为基于测量的相对湿度水平和过滤器相对湿度水平信息来控制通风系统。
    • 9. 发明申请
    • AIR POLLUTANT SENSING
    • WO2018229171A1
    • 2018-12-20
    • PCT/EP2018/065742
    • 2018-06-14
    • KONINKLIJKE PHILIPS N.V.
    • KELLY, Declan, PatrickRONDA, Cornelis, ReinderCHEN, WeizhongBOUMA, Peter, Hermanus
    • G01N33/00G01N15/14G01N21/00G01N15/00B01D46/44
    • G01N33/0036G01N15/06G01N15/14G01N2015/0046G01N2015/0693
    • A device (10, 100) is disclosed for determining an ambient air pollutant concentration. The device comprises a processor (15) adapted to receive a sensor signal from an air pollutant sensor (120) of a portable air pollutant sensor device (100) comprising an air flow channel (110) extending between a first opening (111) open to an ambient environment including the ambient air pollutant concentration and a second opening (113) open to said ambient environment, the air flow channel comprising a sensing area (115) including the air pollutant sensor (120) and a heating element (140) for inducing an air flow through said air flow channel; receive a further sensor signal from an orientation sensor (130) arranged to determine an orientation of the portable air pollutant sensor device; determine an orientation of the portable air pollutant sensor device from the received further sensor signal; compare the determined orientation of the portable air pollutant sensor with a defined range of orientations (220) including an optimal orientation (210) of the portable air pollutant sensor device for sensing said ambient air pollutant concentration; determine the ambient air pollutant concentration only if the determined orientation of the portable air pollutant sensor lies within the defined range of orientations by determining an actual air pollutant count from the received sensor signal and correcting the actual air pollutant count based on the determined orientation of the portable air pollutant sensor if the determined orientation differs from the optimal orientation. A computer program product for configuring such a device is also disclosed.