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二氧化碳、碳酸氢盐及其他缓冲剂对锑微电极电位的影响。

The influence of carbon dioxide, bicarbonate and other buffers on the potential of antimony microelectrodes.

作者信息

Quehenberger P

出版信息

Pflugers Arch. 1977 Mar 11;368(1-2):141-7. doi: 10.1007/BF01063467.

Abstract

Antimony microelectrodes were calibrated at 37 degrees C in phosphate buffers, in different bicarbonate solutions at various CO2-partial pressures and in buffers like TRIS1, TES2, MES3 and malonic acid. By use of the latter buffers (with exception of malonic acid) the most reliable calibration curves were obtained ("normal values"). The usual calibration in 67 mmol/l standard phosphate buffers turned out to be unacceptable because the obtained mV-values were too high (negative) in comparison to all other buffers. Different calibration curves resulted from the use of pure bicarbonate solution whether the pH-values were changed by variation of pCO2 or of the bicarbonate concentration. Low bicarbonate concentrations in combination with low pCO2 gave mV-values which were too low relative to the other buffers. Both the increase of pCO2 as well as of the bicarbonate concentration caused a shift of the potential of the antimony electrodes toward "normal values". In solutions containing other buffers the influence of bicarbonate and pCO2 became negligible with increasing buffer concentration. Decreasing oxygen partial pressure was found to cause an increase of the potential of the antimony electrodes. The influence of liquid junction potentials at the reference electrode is discussed.

摘要

锑微电极在37摄氏度下,于磷酸盐缓冲液、不同二氧化碳分压下的不同碳酸氢盐溶液以及TRIS1、TES2、MES3和丙二酸等缓冲液中进行校准。使用后几种缓冲液(丙二酸除外)可获得最可靠的校准曲线(“正常值”)。结果表明,在67 mmol/l标准磷酸盐缓冲液中进行的常规校准不可接受,因为与所有其他缓冲液相比,所获得的毫伏值过高(为负值)。使用纯碳酸氢盐溶液时,无论pH值是通过改变pCO2还是碳酸氢盐浓度来改变,都会得到不同的校准曲线。低碳酸氢盐浓度与低pCO2相结合时,所得到的毫伏值相对于其他缓冲液过低。pCO2和碳酸氢盐浓度的增加都会使锑电极的电位向“正常值”偏移。在含有其他缓冲液的溶液中,随着缓冲液浓度的增加,碳酸氢盐和pCO2的影响可忽略不计。发现氧分压降低会导致锑电极电位升高。文中讨论了参比电极处液体接界电位的影响。

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