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Ion concentration-measuring method

  • US 5,112,454 A
  • Filed: 02/16/1990
  • Issued: 05/12/1992
  • Est. Priority Date: 06/16/1986
  • Status: Expired due to Term
First Claim
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1. A method for measuring an ion concentration of a test liquid using an electrode device including a reference electrode, ion-selective electrodes and a liquid path through which a test liquid to be tested is passed for measuring electromotive forces generated between the reference electrode and the ion-selective electrodes, comprising the steps of:

  • conducting a reference liquid with a known ion concentration into the liquid path of the electrode device to measure a first electromotive force;

    conducting a first standard liquid with a concentration having a value smaller than that of the reference liquid into the liquid path of the electrode device to measure a second electromotive force;

    conducting the reference liquid with the known ion concentration into the liquid path of the electrode device to measure a third electromotive force after the measuring of the second electromotive force is performed;

    obtaining a first mean value of the first and third electromotive forces of the reference liquid;

    calculating a first electromotive force difference between the first mean value and the second electromotive force;

    conducting the reference liquid with the known ion concentration into the liquid path of the electrode device to measure a fourth electromotive force;

    conducting a second standard liquid with a known high ion concentration having a value larger than that of the reference liquid into the liquid path to measure a fifth electromotive force;

    conducting the reference liquid with the known ion concentration into the liquid path to measure a sixth electromotive force after the measuring of the second standard liquid is performed;

    obtaining a second mean value of the fourth and sixth electromotive forces of the reference liquid;

    calculating a second electromotive force difference between the second mean value and the fifth electromotive force;

    generating at calibration curve according to the first and second electromotive force differences;

    conducting the reference liquid into the liquid path of the electrode device to measure a seventh electromotive force;

    conducting the test liquid into the liquid path to measure an eighth electromotive force;

    conducting the reference liquid into the liquid path of the electrode device to wash the liquid path after measurement of the eighth electromotive force of the test liquid is performed;

    conducting the reference liquid into the liquid path to measure a ninth electromotive force after the liquid path is washed by the reference liquid;

    obtaining an electromotive force of the reference liquid by weighting with constants the seventh and ninth electromotive forces of the reference liquid obtained before and after the measurement of the eighth electromotive force of the test liquid;

    obtaining a third electromotive force difference between the eighth electromotive force of the test liquid and the weighted electromotive force of the reference liquid; and

    determining an unknown ion concentration of the test liquid by plotting the third electromotive force difference against the generated calibration curve.

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