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Estimating Yield and Economic Losses Induced by Ozone Exposure in South China Based on Full-Coverage Surface Ozone Reanalysis Data and High-Resolution Rice Maps
oleh: Jie Pei, Pengyu Liu, Huajun Fang, Xinyu Gao, Baihong Pan, Haolin Li, Han Guo, Feng Zhang
Format: | Article |
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Diterbitkan: | MDPI AG 2023-02-01 |
Deskripsi
Surface ozone (O<sub>3</sub>) pollution is an emerging environmental abiotic stress that poses substantial risks to crop yield losses and food security worldwide, and especially in China. However, the O<sub>3</sub>-induced detrimental effects on double-season rice have rarely been investigated at large scales and over relatively long temporal spans. In this study, we estimated the crop production reductions and associated economic losses for double-season rice across southern China during 2013–2019, using a high spatial resolution surface ozone reanalysis dataset and rice distribution maps, and county-level production data, in combination with a locally derived exposure-response function for rice. Results show that AOT40 (cumulative hourly O<sub>3</sub> exposure above 40 ppb) presented generally increasing trends over growing seasons in 2013–2019, spanning from 4.0 to 7.1 ppm h and 6.1 to 10.5 ppm h for double-early rice and double-late rice, respectively. Moreover, O<sub>3</sub>-induced relative yield losses ranged from 4.0% to 6.6% for double-early rice and 6.3% to 11.1% for double-late rice. Over the seven years, ambient O<sub>3</sub> exposure resulted in crop production losses of 1951.5 × 10<sup>4</sup> tons and economic losses of 8,081.03 million USD in total. To combat the O<sub>3</sub>-induced agricultural risks, measures such as stringent precursors emission reductions and breeding O<sub>3</sub>-resistant cultivars should be continuously implemented in the future.