1
Return

Quantifying background PM2.5 concentrations in Hainan Province, China through model simulations constrained by multi-source observations

delete2025-10-20
delete0
delete
OA
AI
Y
Yibo Zhang
张妍宁 (Yanning Zhang)
Y
Yuhong Guo
J
Jiming Hao
W
Wenshuai Xu
W
Weijun Yan
王书肖 (Shuxiao Wang)
宋芊 cover
宋芊 (Qian Song)
S
Shengyue Li
W
Weiling Xiang
L
Li Luo
黄小凤 cover
黄小凤 (Xiaofeng Huang)
Z
Zhaohui Yang
X
Xiaochen Wu
Y
Yun Zhu
S
Shuhan Liu
赵斌 cover
赵斌 (Bin Zhao) *
DOI:10.1007/s11783-025-2093-5delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
As a national ecological civilization pilot zone with unprecedented strategic importance in China, Hainan Province requires precise identification of PM2.5 background concentrations to achieve world-leading air quality objectives. This study utilized the three-dimensional regional air quality modeling (WRF-CMAQ) and integrated multi-source ground observation data for model validation. To quantify the PM2.5 background values for Hainan, representing concentrations largely influenced by natural emissions and regional transport, we determined the contributions from these sources. The results identified local anthropogenic emissions (49.5%) and regional transport (29.3%) as the dominant PM2.5 sources in Hainan, with important natural contributions (19.0%). Based on the theoretical definition of background concentrations grounded in scientific research and the objective of providing practical policy insights for Hainan, the PM2.5 background values were defined as the PM2.5 concentration after (1) excluding local anthropogenic emissions; (2) excluding anthropogenic emissions across Hainan and its surrounding regions; and (3) excluding local emissions combined with projected 2035 emission scenarios for surrounding areas. Based on these three definition methods, the 18 cities-averaged PM2.5 background values for Hainan were determined as 6.9, 4.2, and 5.2 µg/m3, while the corresponding grid-averaged values calculated were 6.7, 4.6, and 4.9 µg/m3, respectively. Accounting for meteorological fluctuations could yield lower estimated PM2.5 concentrations for Hainan. Hainan’s PM2.5 background values showed comparability with levels documented in clean island areas globally. Our study demonstrated that Hainan maintained a relatively low PM2.5 background level, showing substantial emission reduction potential. Through implementation of effective control measures, Hainan is projected to achieve world-leading air quality by 2035.
Keywords:
Background value
PM 2.5 concentration
Source contribution
Hainan Province
CMAQ model

Journal

Frontiers of Environmental Science and Engineering cover
Frontiers of Environmental Science and Engineering
IF:
6.4
Papers:
1.7K
Citations:
5.6K

Organization

S
School of Environment
Scholars:
404
Papers: 171
Citations: 1
C
college of tourism and resources environment
Scholars:
2
Papers: 2
Citations: 0
S
School of Environment and Energy
Scholars:
40
Papers: 19
Citations: 0
S
south china university of technology
Scholars:
6.5W
Papers: 5.0W
Citations: 85
Cited Papers

Cited Papers

Citing Papers

Citing Papers