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Investigation of the ultraviolet photolysis method for the determination of organic nitrogen in aerosol samples

机译:紫外光解法测定气溶胶样品中有机氮的研究

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摘要

The research objective was to adapt the ultraviolet (UV)-photolysis method to determine dissolved organic nitrogen (DON) in aqueous extracts of aerosol samples. DON was assumed to be the difference in total concentration of inorganic nitrogen forms before and after sample irradiation. Using a 2 2 factorial design the authors found that the optimal conversion of urea, amino acids (alanine, aspartic acid, glycine, and serine), and methylamine for a reactor temperature of 44 degrees C occurred at pH 2.0 with a 24-hr irradiance period at concentrations < 33 mu m of organic nitrogen. Different decomposition mechanisms were evident: the photolysis of amino acids and methylamine released mainly ammonium (NH4+), but urea released a near equimolar ratio of NH4+ and nitrate (NO3-). The method was applied to measure DON in the extracts of aerosol samples from Tampa, FL, over a 32-day sampling period. Average dissolved inorganic (DIN) and DON concentrations in the particulate matter fraction PM 10 were 78.1 +/- 29.2 nmol-Nm(-3) and 8.3 +/- 4.9 nmol-Nm(-3) respectively. The ratio between DON and total dissolved nitrogen ([TDN] = DIN + DON) was 10.1 +/- 5.7%, and the majority of the DON (79.1 +/- 18.2%) was found in the fine particulate matter (PM2.5) fraction. The average concentrations of DIN and DON in the PM,., fraction were 54.4 +/- 25.6 nmol-Nm(-3) and 6.5 +/- 4.4 nmol-Nm(-3), respectively.
机译:研究目的是采用紫外线(UV)-光解法测定气溶胶样品水提取物中的溶解有机氮(DON)。 DON被认为是样品辐照前后无机氮形式的总浓度之差。使用2 2因子分解设计,作者发现,在pH值为2.0且辐射24小时的条件下,尿素,氨基酸(丙氨酸,天冬氨酸,甘氨酸和丝氨酸)和甲胺的最佳转化发生在44摄氏度的反应器温度下浓度<33微米的有机氮。明显的分解机理是不同的:氨基酸和甲胺的光解主要释放出铵(NH4 +),而尿素释放出的NH4 +和硝酸盐(NO3-)几乎等摩尔。该方法用于在32天的采样期内测量佛罗里达州坦帕市气溶胶样品提取物中的DON。颗粒物级分PM 10中的平均溶解无机(DIN)和DON浓度分别为78.1 +/- 29.2 nmol-Nm(-3)和8.3 +/- 4.9 nmol-Nm(-3)。 DON与总溶解氮之比([TDN] = DIN + DON)为10.1 +/- 5.7%,大部分DON(79.1 +/- 18.2%)存在于细颗粒物(PM2.5)中) 分数。 DIN和DON在PM中的平均浓度分别为54.4 +/- 25.6 nmol-Nm(-3)和6.5 +/- 4.4 nmol-Nm(-3)。

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