Related Experiment Video
Updated: Sep 17, 2025

Composition and Distribution Analysis of Bioaerosols Under Different Environmental Conditions
Published on: January 7, 2019
Changes in the urban dew chemical composition in Northeast China from 2013 to 2023
Yingying Xu1, Haodong Hou1, Yachao Zhang1
1Key Laboratory of Songliao Aquatic Environment, Ministry of Education, Jilin Jianzhu University, Changchun 130118, China.
Abstract:
The chemical composition of dew is closely related to the air quality. Since 2013, China has promulgated a series of laws and regulations focused on air pollution control, and remarkable results have been achieved over the past decade. As an indicator of near-surface air quality, the chemical composition of dew obviously changes. The dew quality was affected mainly by the local air quality. The mean dew pH was 6.3 ± 0.4 (n = 186) from 2013 to 2023, and the order of ions was SO42-(3180.7 ± 3592.0 µeq/L) > NH4+(2552.3 ± 2971.8 µeq/L) > Ca2+ (1006.2 ± 945.5 µeq/L) > NO3- (397.2 ± 511.0 µeq/L) > Cl-(152.3 ± 133.4 µeq/L) > K+(149.4 ± 191.6 µeq/L) > F-(133.0 ± 110.3 µeq/L) > Na+(123.8 ± 94.9 µeq/L) > Mg2+(83.3 ± 65.6 µeq/L). The dew quality deteriorated on hazy days. There were no haze events during the condensation period after 2020, which caused a significant reduction in the concentration of the main ions in the dew. Over the past decade, electrical conductivity (EC), total dissolved solids (TDS), PM2.5 and PM10, as well as major ions (SO42-, NO3-, NH4+, Ca2+, Cl-, Na+, F-, K+ and Mg2+) in dew, have all tended to decrease. The annual mean NO3- concentration in 2023 was 86.5 % lower than that in 2013, with values of 79.3 % for SO42-, 77.3 % for Ca2+, 76.7 % for NH4+, 74.6 % for K+, 65.4 % for Mg2+, 63.4 % for Na+, 61.7 % for Cl-, and 60.3 % for F-.
Related Concept Videos
Global Climate Change
Precipitation and Co-precipitation

