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首页> 外文期刊>Atmospheric Measurement Techniques >An ion-neutral model to investigate chemical ionization mass spectrometry analysis of atmospheric molecules - application to a mixed reagent ion system for hydroperoxides and organic acids
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An ion-neutral model to investigate chemical ionization mass spectrometry analysis of atmospheric molecules - application to a mixed reagent ion system for hydroperoxides and organic acids

机译:一种离子中性模型,以研究大气分子化学电离质谱分析 - 氢过氧化物和有机酸混合试剂离子体系的应用

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摘要

An ion-neutral chemical kinetic model is described and used to simulate the negative ion chemistry occurring within a mixed-reagent ion chemical ionization mass spectrometer (CIMS). The model objective was the establishment of a theoretical basis to understand ambient pressure (variable sample flow and reagent ion carrier gas flow rates), water vapor, ozone and oxides of nitrogen effects on ion cluster sensitivities for hydrogen peroxide (H2O2), methyl peroxide (CH3OOH), formic acid (HFo) and acetic acid (HAc). The model development started with established atmospheric ion chemistry mechanisms, thermodynamic data and reaction rate coefficients. The chemical mechanism was augmented with additional reactions and their reaction rate coefficients specific to the analytes. Some existing reaction rate coefficients were modified to enable the model to match laboratory and field campaign determinations of ion cluster sensitivities as functions of CIMS sample flow rate and ambient humidity. Relative trends in predicted and observed sensitivities are compared as instrument specific factors preclude a direct calculation of instrument sensitivity as a function of sample pressure and humidity. Predicted sensitivity trends and experimental sensitivity trends suggested the model captured the reagent ion and cluster chemistry and reproduced trends in ion cluster sensitivity with sample flow and humidity observed with a CIMS instrument developed for atmospheric peroxide measurements (PCIMSs). The model was further used to investigate the potential for isobaric compounds as interferences in the measurement of the above species. For ambient O-3 mixing ratios more than 50 times those of H2O2, O-3(-)(H2O) was predicted to be a significant isobaric interference to the measurement of H2O2 using O-2(-)(H2O2) at m/z 66. O-3 and NO give rise to species and cluster ions, CO3-(H2O) and NO3-(H2O), respectively, which interfere in the measurement of CH3OOH using O-2(-) (CH3OOH) at m/z 80. The CO3-(H2O) interference assumed one of its O atoms was O-18 and present in the cluster in proportion to its natural abundance. The model results indicated monitoring water vapor mixing ratio, m/z 78 for CO3-(H2O) and m/z 98 for isotopic CO3- (H2O)(2) can be used to determine when CO3-(H2O) interference is significant. Similarly, monitoring water vapor mixing ratio, m/z 62 for NO3- and m/z 98 for NO3-(H2O)(2) can be used to determine when NO3-(H2O) interference is significant.
机译:离子中性化学动力学模型的描述和用于模拟混合试剂离子化学电离质谱仪(CIMS)内发生的负离子化学。该模型的目的是建立一个理论基础的理解环境压力(变量样品流和试剂离子载气流速),水蒸汽,臭氧与对离子簇灵敏度为过氧化氢的氮的影响(H2O2),过氧化甲基氧化物(测定醋酸),甲酸(HFO)和乙酸(HAC)。该模式的发展开始建立大气离子化学机制,热力学数据和反应速度系数。化学机制用额外的反应和它们的反应速度系数特定于分析物的增强。一些现有的反应速度系数进行了修改,以使模型以匹配离子簇灵敏度的实验室和现场运动确定为CIMS样品流量和环境湿度的功能。在预测和观察灵敏度的相对趋势作为仪器的具体因素排除仪器灵敏度的直接计算作为样品压力和湿度的函数进行比较。预测灵敏度的趋势和实验灵敏度的趋势提出的模型捕获的试剂离子和簇化学和与大气过氧化物测量(PCIMSs)开发的CIMS仪器观察到样品流和湿度再现离子簇灵敏度的趋势。该模型进一步用于研究等压的化合物如在上述种类的测量的干扰的可能性。用于环境O-3的混合比超过50倍的那些H2O2的,O-3( - )(H 2 O)进行了预测使用O-2是与过氧化氢的测定一个显著同量异位干扰( - )(H 2 O 2)在m / ž66. O-3和NO产生物种和簇离子,CO3-(H2O)和NO3​​-(H2O),分别使用O-2在测定醋酸的测量,这干扰( - )(测定醋酸)在m / ž80. CO3-(H2O)干扰假定其O原子中的一个是O型18和存在于与它的天然丰度在群集中。模型结果表明监测水蒸气混合比率,M / Z 78为CO3-(H2O)和m / z 98对同位素CO3-(H2O)(2)可被用来确定何时CO3-(H2O)干扰是显著。类似地,监控水蒸气混合比率,M / Z 62 NO3-和m / z 98,以NO3-(H2O)(2)可被用来确定何时NO3-(H2O)干扰是显著。

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