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Flow Injection Analysis of H_(2)O_(2) in Natural Waters Using Acridinium Ester Chemiluminescence: Method Development and Optimization Using a Kinetic Model

机译:cri啶化学发光技术在天然水中H_(2)O_(2)的流动注射分析:动力学模型的方法开发和优化

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摘要

Chemiluminescence (CL) of acridinium esters (AE) hasfound widespread use in analytical chemistry. Using the mechanism of the reaction of H_(2)O_(2) with 10-methyl-9-(p-formylphenyl)acridinium carboxylate trifluoromethane-sulfonate and a modified flow injection system, the reaction rates of each step in the mechanism were evaluated and used in a kinetic model to optimize the analysis of H_(2)O_(2). Operational parameters for a flow injection analysis system (reagent pH, flow rate, sample volume, PMT settings) were optimized using the kinetic model. The system is most sensitive to reaction pH due to competition between AE hydrolysis and CL. The optimized system was used to determine H_(2)O_(2) concentrations in natural waters, including rain, freshwater, and seawater. The lower limit of detection varied in natural waters, from 352 pM in open ocean seawater (mean, 779 pM +- 15.0percent, RSD) to 58.1 nM in rain (mean, 6,340 nM +- 0.92percent, RSD). The analysis is specific for H_(2)O_(2) and is therefore of potential interest for atmospheric chemistry applications where organoperoxides have been reported in the presence of H_(2)O_(2).
机译:a啶酯(AE)的化学发光(CL)已在分析化学中得到广泛使用。利用H_(2)O_(2)与10-甲基-9-(对甲酰基苯基)ac羧酸酯三氟甲烷磺酸盐和改进的流动注射系统的反应机理,评估了机理中每个步骤的反应速率并在动力学模型中用于优化H_(2)O_(2)的分析。使用动力学模型优化了流动注射分析系统的操作参数(试剂pH,流速,样品量,PMT设置)。由于AE水解和CL之间的竞争,该系统对反应pH最敏感。优化的系统用于确定天然水(包括雨水,淡水和海水)中的H_(2)O_(2)浓度。天然水中的检测下限有所不同,从公海海水中的352 pM(平均值为779 pM±15.0%,RSD)到雨中为58.1 nM(平均值为6,340 nM±0.92%,RSD)。该分析特定于H_(2)O_(2),因此对于大气化学应用具有潜在的意义,在大气化学应用中,据报道在H_(2)O_(2)存在下有机过氧化物。

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