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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Effect of variation in argon content of calibration gases on determination of atmospheric carbon dioxide
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Effect of variation in argon content of calibration gases on determination of atmospheric carbon dioxide

机译:标定气体氩含量变化对测定大气中二氧化碳的影响

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Carbon dioxide (CO2) is a greenhouse gas that makes by far the largest contribution to the global warming of the Earth's atmosphere. For the measurements of atmospheric CO2 a non-dispersive infrared analyzer (NDIR) and gas chromatography are conventionally being used. We explored whether and to what degree argon content can influence the determination of atmospheric CO2 using the comparison of CO2 concentrations between the sample gas mixtures with varying At amounts at 0 and 18.6 mmol mol(-1) and the calibration gas mixtures with Ar at 8.4, 9.1, and 9.3 mmol mol(-1). We newly discovered that variation of At content in calibration gas mixtures could undermine accuracy for precise and accurate determination of atmospheric CO2 in background air. The differences in CO2 concentration due to the variation of Ar content in the calibration gas mixtures were negligible (<+/-0.03 mu mol mol(-1)) for NDIR systems whereas they noticeably increased (<+/-1.09 mu mol mol(-1)) especially for the modified GC systems to enhance instrumental sensitivity. We found that the thermal mass flow controller is the main source of the differences although such differences appeared only in the presence of a flow restrictor in GC systems. For reliable monitoring of real atmospheric CO2 samples, one should use calibration gas mixtures that contain At content close to the level (9.332 mmol mol(-1)) in the ambient air as possible. Practical guidelines were highlighted relating to selection of appropriate analytical approaches for the accurate and precise measurements of atmospheric CO2. In addition, theoretical implications from the findings were addressed.
机译:二氧化碳(CO2)是一种温室气体,迄今为止对地球大气的全球变暖贡献最大。为了测量大气中的二氧化碳,通常使用非分散红外分析仪(NDIR)和气相色谱仪。我们通过比较在0和18.6 mmol mol(-1)处变化的At量的样品气体混合物与8.4 Ar的校准气体混合物之间的CO2浓度比较,探索了氩含量是否以及在何种程度上会影响大气中的CO2测定,9.1和9.3 mmol mol(-1)。我们新近发现,校准气体混合物中At含量的变化可能会破坏准确,准确地测定背景空气中大气CO2的准确性。对于NDIR系统,由于校准气体混合物中Ar含量的变化而导致的CO2浓度差异可以忽略不计(<+/- 0.03μmolmol(-1)),而显着增加(<+/- 1.09μmolmol(( -1)),特别是用于改进的GC系统以提高仪器灵敏度。我们发现,热质量流量控制器是差异的主要来源,尽管这种差异仅在GC系统中存在限流器的情况下才会出现。为了可靠地监测实际大气中的CO2样品,应使用校准气体混合物,该混合物中的At含量应尽可能接近环境空气中的水平(9.332 mmol mol(-1))。着重强调了有关选择合适的分析方法以准确和精确地测量大气CO2的实用指南。此外,研究结果也有理论意义。

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