烷基硝酸酯标气的碳溯源定值方法研究

    Study on the Carbon Traceability Determination of Alkyl Nitrate Standards

    • 摘要: 烷基硝酸酯作为大气中一类关键的活性含氮化合物,其大气转化过程将会影响臭氧和二次有机气溶胶的生成。由于烷基硝酸酯分子内含有硝基基团,化学性质活泼,导致烷基硝酸酯标气的溯源定值存在挑战。为实现烷基硝酸酯标气的溯源定值,开发了催化转化和气相色谱氢火焰离子化检测联用的集成系统(gas chromatography-pyrolytic catalysis- flame ionization detection,GC-PC-FID),并基于称量法实现了硝酸异丙酯和丙酮的混合标气配制。结合高精度甲烷和二氧化碳的标气使用,验证了该GC-PC-FID系统的测量可行性后,使用丙酮作为内标物对于配制的硝酸异丙酯标气进行溯源定值,定量分析结果和制备浓度的一致性分布在0.25%以内。因此,该GC-PC-FID检测系统是一种可用于烷基硝酸酯标气溯源定值的有效路径,为烷基硝酸酯量传体系的建立奠定了研究基础。

       

      Abstract: As one of the key active nitrogenous compounds in the atmosphere, the atmospheric transformation process of alkyl nitrates will affect the production of ozone and secondary organic aerosols. Alkyl nitrate molecules contain nitro groups and are chemically reactive, making the traceability of alkyl nitrate standards challenging. In order to realize the traceable calibration of alkyl nitrate standard gas, an integrated system of pyrolytic catalysis and gas chromatography with hydrogen flame ionization detection (GC-PC-FID) has been developed in this study, and the mixture standards of isopropyl nitrate and acetone were prepared based on the gravitational method. After the feasibility of the GC-PC-FID was verified by using high-precision methane and carbon dioxide standard gases, acetone was used as an internal standard for the traceability of the prepared isopropyl nitrate standard gas, and the agreement between the detection results and the gravitational concentration was within 0.25%. Therefore, this GC-PC-FID detection system is an effective pathway that can be used for the traceable calibration of alkyl nitrate standards, and lays a research foundation for the establishment of alkyl nitrate scale system.

       

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