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First Assessment of NOx Sources at a Regional Background Site in North China Using Isotopic Analysis Linked with Modeling

机译:利用同位素分析与建模相结合的方法对华北地区背景站点的NOx来源进行首次评估

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摘要

important role in the formation of atmospheric particles. Thus, NOx emission reduction is critical for improving air quality, especially in severely air-polluted regions (e.g., North China). In this study, the source of NOx was investigated by the isotopic composition (delta N-15) of particulate nitrate (p-NO3-) at Beihuangcheng Island (BH), a regional background site in North China. It was found that the delta N-15-NO3- (n = 120) values varied between -1.7 parts per thousand and +24.0 parts per thousand and the delta O-18-NO3- values ranged from 49.4 parts per thousand to 103.9 parts per thousand. On the basis of the Bayesian mixing model, 27.78 +/- 8.89%, 36.53 +/- 6.66%, 22.01 +/- 6.92%, and 13.68 +/- 3.16% of annual NOx could be attributed to biomass burning, coal combustion, mobile sources, and biogenic soil emissions, respectively. Seasonally, the four sources were similar in spring and fall. Biogenic soil emissions were augmented in summer in association with the hot and rainy weather. Coal combustion increased significantly in winter with other sources showing an obvious decline. This study confirmed that isotope-modeling by delta N-15-NO3- is a promising tool for partitioning NOx sources and provides guidance to policymakers with regard to options for NOx reduction in North China.
机译:在形成大气颗粒中起重要作用。因此,减少NOx排放对于改善空气质量至关重要,特别是在空气污染严重的地区(例如华北)。在这项研究中,通过在中国北方区域背景站点北皇城岛(BH)的硝酸盐颗粒(p-NO3-)的同位素组成(δN-15)研究了NOx的来源。已发现,δN-15-NO3-(n = 120)值在-1.7千分之和+24.0千分之几之间变化,δO-18-NO3-值在千分之49.4至103.9之间每千。根据贝叶斯混合模型,年NOx的27.78 +/- 8.89%,36.53 +/- 6.66%,22.01 +/- 6.92%和13.68 +/- 3.16%可以归因于生物质燃烧,煤炭燃烧,移动源和生物土壤排放量。从季节上看,四个来源在春季和秋季相似。夏季炎热多雨的天气增加了生物源性土壤的排放。冬季,煤炭燃烧显着增加,其他来源则明显下降。这项研究证实,使用δN-15-NO3-进行同位素建模是划分NOx来源的有前途的工具,并为决策者提供了有关中国北方NOx减排选择的指导。

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