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In this study, 24-hour backward trajectories of the air mass in Nanjing were calculated by using the HYSPLIT model with the NCEP global reanalysis data from March 2019 to February 2020. The backward trajectories combined with the hourly concentration data of PM were then utilized in the trajectory clustering analysis and potential pollution source analysis. The results showed that the average concentration of PM in Nanjing was(36±20) μg·m during the study period, with 17 days exceeding the grade Ⅱ national ambient air quality standards (75 μg·m). PM concentration exhibited clear seasonal variation, with winter (49 μg·m)>spring (42 μg·m)>autumn (31 μg·m)>summer (24 μg·m). PM concentration was significantly positively correlated with surface air pressure but significantly negatively correlated with air temperature, relative humidity, precipitation, and wind speed. Based on the trajectories, seven transport routes were identified in spring, and six routes for the other seasons. The northwest and south-southeast routes in spring, southeast route in autumn, and southwest route in winter were the main pollution transport routes in each season, with the characteristics of short transport distance and slow air mass movement, indicating that local accumulation was one of the main reasons for the high value of PM in quiet and stable weather. The distance of the northwest route in winter was large, and the PM concentration was 58 μg·m, which was the 2 highest concentration in all routes, indicating that the cities in the northeast of Anhui had a great transport influence on Nanjing PM. The distribution of PSCF and CWT was relatively consistent, and the main potential source areas were mainly local and adjacent areas of Nanjing, indicating that PM control is needed to strengthen local control and carry out joint prevention and control with adjacent areas. Winter was most affected by transport, its main potential source area was located at the junction of northwest Nanjing and Chuzhou, and the main source origin was in Chuzhou; therefore joint prevention and control should be expanded to Anhui.
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http://dx.doi.org/10.13227/j.hjkx.202206256 | DOI Listing |
Surface ozone (O), a key hurdle in air quality improvement in China, often displays regional pollution characteristics. This study investigated the influence of meteorological conditions and air mass transport on O and non-methane hydrocarbons (NMHCs) concentrations in Nanjing, located in the western Yangtze River Delta (YRD) region of China during April-September of 2020 and 2021 based on online observations of O and its precursors and meteorological conditions, backward-trajectory analysis, and an observation-based box model (OBM). O concentrations rose with temperature, albeit non-linearly.
View Article and Find Full Text PDFToxics
August 2025
College of Environment and Climate, Institute of Mass Spectrometry and Atmospheric Environment, Guangdong Provincial Engineering Research Center for Online Source Apportionment System of Air Pollution, Jinan University, Guangzhou 510632, China.
In this study, typical haze pollution influenced by biomass burning (BB) activities in Changsha in the autumn of 2024 was investigated through the mixing state and evolution process of BB particles via the real-time measurement of single-particle aerosol mass spectrometry (SPAMS). From the clean period to the haze period, the PM concentration increased from 25 μg·m at 12:00 to 273 μg·m at 21:00 on 12 October, and the proportion of total BB single particles in the total detected particles increased from 17.2% to 54%.
View Article and Find Full Text PDFThis article investigates the SMFTSC for CPS facing jamming attacks and multiple physical faults. An intelligent attacker is capable of emitting interference power and adjusting its strategy by observing the transmitter's sending power, leading to packet dropouts in the controller-to-actuator channel. A Bayesian Stackelberg game is exploited to capture these competitive interactions between the two players, in which the transmitter and the intelligent attacker can only probabilistically obtain information about each other's channel state and transmission cost.
View Article and Find Full Text PDFJ Environ Sci (China)
December 2025
State Key Laboratory of Disaster Weather Science and Technology, Chinese Academy of Meteorological Sciences, Beijing 100081, China; Key Laboratory of Polar Atmosphere-ocean-ice System for Weather and Climate, Ministry of Education, Shanghai 200438, China. Electronic address:
Black carbon (BC) aerosols are considered key factors that contribute to rapid climate warming and ice melt in the Arctic region. However, compared with long-term observations from land-based stations, observational data over the Arctic Ocean remain relatively scarce. Four Arctic scientific expeditions were conducted in the summer and early autumn of 2010, 2012, 2016, and 2018 via the Chinese research vessel Xue Long, during which the BC concentrations along the routes were measured via light absorption methods.
View Article and Find Full Text PDFJ Environ Sci (China)
December 2025
Guangdong-Hongkong-Macau Joint Laboratory of Collaborative Innovation for Environmental Quality, College of Environment and Climate, Jinan University, Guangzhou 511443, China.
This study tracked the characteristics of atmospheric wet deposition of the toxic element arsenic (As) at both urban (Guangzhou (GZ)) and forested (Dinghushan Natural Reserve (DHS)) sites within the Pearl River Delta (PRD) region between 2016 and 2019, examining its correlation with rainfall patterns. Additionally, by employing backward trajectory analysis and the potential source contribution function (PSCF) in conjunction with pertinent emission inventories, we pinpointed the main pathways of atmospheric arsenic transport and evaluated the emission contributions from priority source areas. The study revealed that the atmospheric arsenic wet deposition fluxes at the GZ and DHS sites exhibited a trend of increase followed by a decrease over the four-year period.
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