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  4. High-Resolution Data Sets Unravel the Effects of Sources and Meteorological Conditions on Nitrate and Its Gas-Particle Partitioning
 
research article

High-Resolution Data Sets Unravel the Effects of Sources and Meteorological Conditions on Nitrate and Its Gas-Particle Partitioning

Shi, Xurong
•
Nenes, Athanasios  
•
Xiao, Zhimei
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February 22, 2019
Environmental Science & Technology

Nitrate is one of the most abundant inorganic water-soluble ions in fine particulate matter (PM2.5). However, the formation mechanism of nitrate in the ambient atmosphere, especially the impacts of its semivolatility and the various existing forms of nitrogen, remain under-investigated. In this study, hourly ambient observations of speciated PM2.5 components (NO3−,SO42−, etc.) were collected in Tianjin, China. Source contributions were analyzed by PMF/ME2 (Positive Matrix Factorization using the Multilinear Engine 2) program, and pH were estimated by ISORROPIA-II, to investigate the relationship between pH and nitrate. Five sources (factors) were resolved: secondary sulfate (SS), secondary nitrate (SN), dust, vehicle and coal combustion. SN and pH showed a triangle-shaped relationship. When SS was high, the fraction of nitrate partitioning into the aerosol phase exhibits a characteristic “S-curve” relationship with pH for different seasons. An index (ITL) is developed and combined with pH to explore the sensitive regions of “S-curve”. Controlling the emissions of anions (SO42−, Cl−), cations (Ca2+, Mg2+, etc.) and gases (NOx, NH3, SO2, etc.) will change pH, potentially reducing or increasing SN. The findings of this work provide an effective approach for exploring the formation mechanisms of nitrate under different influencing factors (sources, pH, and IRL).

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Type
research article
DOI
10.1021/acs.est.8b06524
Author(s)
Shi, Xurong
•
Nenes, Athanasios  
•
Xiao, Zhimei
•
Song, Shaojie
•
Yu, Haofei
•
Shi, Guoliang
•
Zhao, Qianyu
•
Chen, Kui
•
Feng, Yinchang
•
Russell, Armistead G.
Date Issued

2019-02-22

Published in
Environmental Science & Technology
Volume

53

Issue

6

Start page

3048

End page

3057

Subjects

Aerosol

•

Air Quality

•

Acidity

•

Emissions

•

Nitrate

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LAPI  
Available on Infoscience
March 24, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/155702
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