METHOD FOR OPERATING A COLOR MEASUREMENT SYSTEM
    29.
    发明公开
    METHOD FOR OPERATING A COLOR MEASUREMENT SYSTEM 审中-公开
    一种用于操作FARBMESSYSTEMS

    公开(公告)号:EP1877744A1

    公开(公告)日:2008-01-16

    申请号:EP05767116.6

    申请日:2005-05-12

    Applicant: X-RITE, INC.

    Abstract: A color measurement system includes a hand held color measurement instrument, which may be provided with a wireless interface to a computer. The color measurement system includes a scanning guide for holding the hand held color measurement instrument in proper alignment with a color target. The scanning guide includes a calibration reference to allow convenient calibration of the hand-held color measurement instrument. The hand-held color instrument includes an illumination ring to provide visual feedback to the user. The color of the illumination ring changes in order to display a color similar to that being read by the hand-held color measurement instrument. Color management profiling of the hand held color measurement instrument illumination ring improves the color rendition capability of the illumination ring.

    AN ARSENIC METER
    30.
    发明公开
    AN ARSENIC METER 审中-公开
    ARSENMESSER

    公开(公告)号:EP1567840A4

    公开(公告)日:2007-11-14

    申请号:EP03793353

    申请日:2003-08-21

    Applicant: UNIV COLUMBIA

    Abstract: A field test-kit for analyzing arsenic concentration in water samples is provided. The kit includes a portable infrared beam photometer for measuring light absorbance in aqueous specimens. An infrared light emitting diode is configured to direct a beam of light through a specimen. A photodetector diode measures the intensity of light passing through the specimen. The photodetector output voltages relate to the light absorbed in the specimen and are displayed on a liquid crystal display screen. The kit is assembled using off-the-shelf electronic and opto-electronic components that have low power requirements. Dry cell batteries or solar cells power the kit. To test for arsenic, molybdenum based chemistries are used to selectively bind and convert arsenates and phosphates in the specimen into molybdenum-blue color complexes. The light absorbance of a specimen with both arsenates and phosphates bound in molybdenum-blue color complexes is compared to that of a reference specimen in which phosphates but not arsenates are bound and converted. The differential light absorbance of the two specimens is used to arrive at a quantitative value for the arsenic concentration in the water sample.

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