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Measurements of the O-17 excess in water with the equilibration method

机译:用平衡法测量水中O-17过量

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The equilibration method is the present-day standard method for measuring delta O-18 in water samples. The mass-to-charge ratio of 45 is measured at the same time but generally not used for further analysis. We show that an improved equilibration method can be used for precise determination of delta O-17 in addition to that of delta O-18, and therefore can estimate O-17 excess values to a precision of better than 0.1 parts per thousand. To control the masking effect of the 14 times more abundant C-13 on mass 45, we propose to use a chemical buffer in the water samples to keep the pH value and therefore the fractionation during the equilibration process of the C-13 constant. With this improved method, the precision for the delta O-18 value could also be slightly improved from 0.05 to 0.03 parts per thousand. Furthermore, we discuss the influences of the amount of water, the temperature, the CO2 gas pressures, and changes in the pH during the measuring procedure on oxygen and carbon isotopes. We noticed that measured delta(45) values are a good control for delta O-18 measurements. This study tries to fathom the possibilities and limitations of the equilibration method for measuring O-17 excess values of water samples.
机译:平衡法是当今用于测量水样品中δO-18的标准方法。同时测量质荷比为45,但通常不用于进一步分析。我们表明,除了三角洲O-18之外,改进的平衡方法还可用于三角洲O-17的精确测定,因此可以估算O-17过剩值,精度优于千分之0.1。为了控制14倍丰度的C-13对质量45的掩盖效果,我们建议在水样中使用化学缓冲剂以保持pH值,从而保持C-13平衡过程中的分馏恒定。使用这种改进的方法,δO-18值的精度也可以从千分之0.05略微提高到0.03。此外,我们讨论了水量,温度,CO2气压以及测量过程中pH值变化对氧气和碳同位素的影响。我们注意到,测得的delta(45)值是对增量O-18测量的良好控制。这项研究试图确定用于测量水样O-17过量值的平衡方法的可能性和局限性。

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