Journals / Atmospheric Pollution Research / 2019 / Cilt: 10 - Sayı: 4

Driving factors of the significant increase in surface ozone in the Yangtze River Delta, China, during 2013–2017

Pages
1357–1364
DOI
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Özet

Photochemical pollution in the Yangtze River Delta (YRD), China is presently quite serious. It is important toascertain the impacts of the anthropogenic precursors and the effectiveness of air quality management in theregion based on long-term air quality trends independent of meteorological influences. In this study,Kolmogorov-Zurbenko (KZ) filtering, a technique used to separate different scales of motion in a time series, wasapplied to analyze the time series of the maximum daily 8-h running average for O3 (MDA8) from 16 cities in theYRD during 2013–2017, and its trends and driving factors were discussed. Results of the KZ filtering revealedthat the short-term, seasonal and long-term components of O3 account for 54.2%, 43.4%, and 2.3% of the totalvariance, respectively. Long-term component of MDA8 in the YRD is comparable to that of Los Angeles in the1990s and the most recent 4 years, and is much higher than those of Berlin, Paris and London. The long-termtrend in the YRD indicates that MDA8 underwent a large increase during 2013–2017, at average rates of1.35–8.14 μg m−3/yr for specific cities. Only Taizhou in Zhejiang Province had a decreasing trend of−0.69 μg m−3/yr. This pattern could be attributed to emission changes of O3 precursors (76.7%), particularly areduction in nitrogen oxide (NOx) emissions and an increase in the release of volatile organic compounds(VOCs). Large decreases in particulate matter were estimated to be responsible for O3 increases of 22% onaverage for cities in the YRD, impling that further decreases in NOx and VOCs emissions are necessary in order toovercome the effect of decreasing PM2.5 causing an increase in ozone.