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

Author:

Pei Jie12,Liu Pengyu1,Fang Huajun34,Gao Xinyu1,Pan Baihong5,Li Haolin6,Guo Han1,Zhang Feng78

Affiliation:

1. School of Geospatial Engineering and Science, Sun Yat-sen University, Zhuhai 519082, China

2. Key Laboratory of Natural Resources Monitoring in Tropical and Subtropical Area of South China, Ministry of Natural Resources, Zhuhai 519082, China

3. Key Laboratory of Ecosystem Network Observation and Modeling, Institute of Geographical Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China

4. The Zhongke-Ji’an Institute for Eco-Environmental Sciences, Ji’an 343000, China

5. Department of Microbiology and Plant Biology, University of Oklahoma, Norman, OK 73019, USA

6. School of Remote Sensing and Information Engineering, Wuhan University, Wuhan 430070, China

7. Zhuhai Natural Resources Bureau, Zhuhai 519015, China

8. College of Agriculture and Animal Husbandry, Qinghai University, Xining 810016, China

Abstract

Surface ozone (O3) 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 O3-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 O3 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, O3-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 O3 exposure resulted in crop production losses of 1951.5 × 104 tons and economic losses of 8,081.03 million USD in total. To combat the O3-induced agricultural risks, measures such as stringent precursors emission reductions and breeding O3-resistant cultivars should be continuously implemented in the future.

Funder

Guangdong Basic and Applied Basic Research Foundation

Science and Technology Project of Jinggangshan Agricultural High-Tech Industrial Demonstration Zone

Publisher

MDPI AG

Subject

Plant Science,Agronomy and Crop Science,Food Science

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