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案件記録

ELECTROLYTE CONCENTRATION MEASURING METHOD

発明審査中
4請求項 · 1 独立
§ Ⅰ

案件概要

発明者

TAKESHI YAMAMOTO; KEIJI MIYAZAKI; JUN MIURA; FUKA ENOKIDO; HARUNOBU MAEDA; MASANORI TANAKA; MAKOTO FUKATSU

IPC分類

G1N 27/416G1N 27/333

CPC分類

G1N27/416G1N27/333

The present disclosure relates to an electrolyte concentration measuring method that has a simple configuration, does not require effort and time for measurement, enables stable measurement, and enables measurement with a small amount of sample, and to an electrolyte concentration measuring method including a first step of dispensing a standard solution of known concentration into a channel region and obtaining, after the standard solution has reached a reference electrode and a working electrode, first potential difference information based on a potential difference between the reference electrode and the working electrode, a second step of dispensing a sample onto the working electrode or near the working electrode and obtaining second potential difference information based on a potential difference between the reference electrode and the working electrode, and a step of obtaining data on an electrolyte concentration of the sample using the first potential difference information and the second potential difference information.

原文(中国語)

The present disclosure relates to an electrolyte concentration measuring method that has a simple configuration, does not require effort and time for measurement, enables stable measurement, and enables measurement with a small amount of sample, and to an electrolyte concentration measuring method including a first step of dispensing a standard solution of known concentration into a channel region and obtaining, after the standard solution has reached a reference electrode and a working electrode, first potential difference information based on a potential difference between the reference electrode and the working electrode, a second step of dispensing a sample onto the working electrode or near the working electrode and obtaining second potential difference information based on a potential difference between the reference electrode and the working electrode, and a step of obtaining data on an electrolyte concentration of the sample using the first potential difference information and the second potential difference information.

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