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Validation and Comparison of Calibration Techniques for Measurements of Carbon Dioxide in Atmospheric Air Standards

机译:大气标准中二氧化碳测量校准技术的验证和比较

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The increase in the concentration of carbon dioxide (CO2) in the atmosphere has led the scientific community to investigate the adverse effects on humanity and nature, including the greenhouse effect, which contributes to global warming and can lead to climate change, besides the risks associated with human health. Due to the importance of metrological issues in the current scenario, the Laboratory of Gas Analysis (Lanag) of the National Institute of Metrology, Quality and Technology (Inmetro) is developing the methodology of preparation of such primary standard gas mixtures through gravimetry. For the preparation of these standards, an analysis verification step is necessary, carried out by means of an analytical technique of comparison, at low levels of concentration, by cavity ringdown (CRDS) and by gas chromatography using a flame ionization detector coupled to a methaniser catalyst (GC-FIDmeth). This work presents the method validation of both methodologies developed to analyze a range of concentration of atmospheric standards of CO2 at a matrix of synthetic clean dry air (SCDA) by CRDS and GC-FIDmeth, of which the analysis results can compromise the measurements on atmospheric air quality. The objective is to compare results of method validation of both analytical methods for low CO2 concentration through the use of primary reference mixtures developed and also by certified reference material. The validation measurement results were analyzed according to the requirements of ISO 5725: 1994 parts 1 and 2, and the calculation of measurement uncertainty followed the methodology described in ISO 6143:2001, with results showing satisfactory consistent between both selected techniques. According to the work presented here, the obtained validation results for CRDS are better than the GC results, such as the relative uncertainty of samples evaluated for CRDS was 0.4% and 2.7% for GC_FID meth.
机译:大气中二氧化碳(CO2)浓度的增加已导致科学界研究对人类和自然的不利影响,包括温室效应,除了造成以下风险外,温室效应还导致全球变暖并可能导致气候变化与人类健康有关。由于在当前情况下计量问题的重要性,国家计量,质量和技术研究所(Inmetro)的气体分析实验室(Lanag)正在开发通过重量分析法制备这种主要标准气体混合物的方法。为了制备这些标准品,必须进行分析验证步骤,该分析验证步骤需要在低浓度下通过比较分析技术,通过腔衰荡(CRDS)以及使用与甲烷化器耦合的火焰离子化检测器的气相色谱法进行催化剂(GC-FIDmeth)。这项工作提出了两种方法的方法验证,这两种方法均通过CRDS和GC-FIDmeth分析在合成清洁干燥空气(SCDA)基质上分析一定浓度的大气中的CO2浓度,其中分析结果可能会影响大气中的测量空气质量。目的是通过使用开发的主要参考混合物和通过认证的参考物质,比较两种低CO2浓度分析方法的方法验证结果。根据ISO 5725:1994第1部分和第2部分的要求对验证的测量结果进行了分析,并按照ISO 6143:2001中描述的方法对测量不确定度进行了计算,结果表明两种所选技术之间的一致性令人满意。根据此处介绍的工作,获得的CRDS验证结果优于GC结果,例如,对于CRDS评估的样品,相对不确定度为0.4%,对于GC_FID方法为2.7%。

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