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锑pH电极的制造与应用

Manufacture and utilization of antimony pH electrodes.

作者信息

Caflisch C R, Pucacco L R, Carter N W

出版信息

Kidney Int. 1978 Aug;14(2):126-41. doi: 10.1038/ki.1978.100.

Abstract

A new technique for manufacturing single-barreled and double-barreled antimony pH microelectrodes is described. The results of investigations into the accuracy of antimony as a pH sensor disclosed that the pH-voltage response is: 1) within the physiologic range, principally the result of the hydrogen ion activity of the solution in which the voltage is being developed, 2) in part, qualitatively anion-dependent, 3) modified by the presence of significant amounts of at least carbon dioxide, oxygen, and nitrogen gases, and 4) markedly offset by fluctuations in temperature. Our results further indicate that the accuracy of antimony as a pH sensor is determined by the quality of the calibration procedure. We conclude that if the antimony electrode is to accurately determine the pH of a biological fluid, the pH calibration solutions must closely resemble the unknown biological fluid with respect to temperature, PO2, PN2, and types of buffering anions. A calibration procedure is described which can minimize errors with antimony pH estimations when measuring the pH of proximal tubular fluid of the mammalian kidney.

摘要

本文描述了一种制造单管和双管锑pH微电极的新技术。对锑作为pH传感器准确性的研究结果表明,pH-电压响应为:1)在生理范围内,主要是产生电压的溶液中氢离子活性的结果;2)部分在定性上依赖于阴离子;3)受至少大量二氧化碳、氧气和氮气的存在影响;4)明显受温度波动的影响。我们的结果进一步表明,锑作为pH传感器的准确性取决于校准程序的质量。我们得出结论,如果锑电极要准确测定生物流体的pH值,pH校准溶液在温度、PO2、PN2和缓冲阴离子类型方面必须与未知生物流体非常相似。本文描述了一种校准程序,在测量哺乳动物肾脏近端小管液的pH值时,该程序可将锑pH值估计的误差降至最低。

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