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热演化和化学发光检测法同时测定气溶胶无机氮和有机氮。

Simultaneous Determination of Aerosol Inorganic and Organic Nitrogen by Thermal Evolution and Chemiluminescence Detection.

机构信息

Division of Environment and Sustainability, Hong Kong University of Science & Technology, Clear Water Bay, Kowloon, Hong Kong 999077, China.

Department of Chemistry, Hong Kong University of Science & Technology, Clear Water Bay, Kowloon, Hong Kong 999077, China.

出版信息

Environ Sci Technol. 2021 Sep 7;55(17):11579-11589. doi: 10.1021/acs.est.1c04876. Epub 2021 Aug 16.

Abstract

Inorganic nitrogen (IN) and organic nitrogen (ON) molecules constitute a significant part of atmospheric aerosol. Unlike IN, the total ON quantity remains largely unquantified due to a lack of a simple and direct measurement method. This analytical deficiency hinders the quantitative assessment of the various environmental and health effect impacts by aerosol ON. In this work, we developed an analyzer system that utilizes programmed thermal evolution of carbonaceous and nitrogenous aerosols and chemiluminescence detection coupled with the multivariate curve resolution data treatment to achieve simultaneous quantification of IN and ON. The system is capable of detecting IN and ON as low as 96 ng N per sample on a small filter aliquot (1 cm) without any pretreatment. This method breakthrough opens the door to quantifying an important pool of aerosol N that was analytically inaccessible in the past and holds the promise to quantifying IN and ON in other environmental samples. As a demonstration, quantification of aerosol ON at an urban site in Hong Kong, China, in samples spanning over a year reveals ON constituting a significant fraction (9-52%) of the total aerosol nitrogen and having major source origins in both secondary formation and primary emissions.

摘要

无机氮 (IN) 和有机氮 (ON) 分子构成了大气气溶胶的重要组成部分。与 IN 不同,由于缺乏简单直接的测量方法,总 ON 量在很大程度上仍未被量化。这种分析上的不足阻碍了对气溶胶 ON 各种环境和健康影响的定量评估。在这项工作中,我们开发了一种分析器系统,该系统利用碳质和含氮气溶胶的程序热演化以及化学发光检测,并结合多元曲线分辨数据处理,实现了 IN 和 ON 的同时定量。该系统能够在无需任何预处理的情况下,从小部分(1 厘米)过滤器上检测到低至 96 ng N 的 IN 和 ON。这一方法上的突破为定量分析过去无法分析的气溶胶 N 的重要部分打开了大门,并有望实现其他环境样品中 IN 和 ON 的定量。作为一个示范,对中国香港一个城市地区的气溶胶 ON 进行了一年多的样本定量,结果表明,ON 构成了总气溶胶氮的重要部分(9-52%),其主要来源是二次形成和一次排放。

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