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首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >The effect of H2SO4 amine clustering on chemical ionization mass spectrometry (CIMS) measurements of gas-phase sulfuric acid
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The effect of H2SO4 amine clustering on chemical ionization mass spectrometry (CIMS) measurements of gas-phase sulfuric acid

机译:H2SO4胺聚类对气相硫酸化学电离质谱(CIMS)测量的影响

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The state-of-the art method for measuring atmospheric gas-phase sulfuric acid is chemical ionization mass spectrometry (CIMS) based on nitrate reagent ions. We have assessed the possible effect of the sulfuric acid molecules clustering with base molecules on CIMS measurements using computational chemistry. From the computational data, three conclusions can be drawn. First, a significant fraction of the gas-phase sulfuric acid molecules are very likely clustered with amines if the amine concentration is around or above a few ppt. Second, some fraction of these acid-amine clusters may not be charged by the CIMS instrument, though the most reliable computational methods employed predict this fraction to be small; on the order of ten percent or less. Third, the amine molecules will evaporate practically immediately after charging, thus evading detection. These effects may need to be taken into account in the interpretation of atmospheric measurement data obtained using chemical ionization methods. The purpose of this study is not to criticize the CIMS method, but to help understand the implications of the measured results.
机译:用于测量大气气相硫酸的最新方法是基于硝酸盐试剂离子的化学电离质谱(CIMS)。我们通过计算化学评估了硫酸分子与基础分子对基础分子进行的效果。从计算数据中,可以绘制三个结论。首先,如果胺浓度存在于几个pst或高于几ppt,则气相硫酸分子的显着分数非常可能与胺聚集在一起。其次,CIMS仪器可能不会通过CIMS仪器收取这些酸胺簇的一些部分,尽管采用最可靠的计算方法预测该级分是小的;大约10%或更少。第三,胺分子将在充电后几乎蒸发,从而脱落检测。在使用化学离子化方法获得的大气测量数据的解释中可能需要考虑这些效果。本研究的目的不是批评CIMS方法,而是帮助了解测量结果的影响。

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