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Influence of surface ozone on crop yield of maize in China 被引量:8

Influence of surface ozone on crop yield of maize in China
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摘要 This study investigated the adverse effect of surface ozone on the maize yield using a unique panel from 880 counties in China.To identify the impact of elevated surface ozone concentrations,we constructed an econometric model by controlling the impact of climate variables and related economic variables.This study also considered the potential spatial correlation in the measurement of the impact of surface ozone on maize yield.Results confirmed that the increase of ozone concentration decreased the maize yield.Moreover,maize was found to be the most sensitive to ozone at the end of the second month of the growing season.The average annual loss of maize caused by ozone pollution is about 4.234 million tons in 2013–2015,accounting for 1.9%of the average output. This study investigated the adverse effect of surface ozone on the maize yield using a unique panel from 880 counties in China. To identify the impact of elevated surface ozone concentrations, we constructed an econometric model by controlling the impact of climate variables and related economic variables. This study also considered the potential spatial correlation in the measurement of the impact of surface ozone on maize yield. Results confirmed that the increase of ozone concentration decreased the maize yield. Moreover, maize was found to be the most sensitive to ozone at the end of the second month of the growing season. The average annual loss of maize caused by ozone pollution is about 4.234 million tons in 2013–2015, accounting for 1.9% of the average output.
出处 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2020年第2期578-589,共12页 农业科学学报(英文版)
基金 the financial support by the National Natural Science Foundation of China (71673137) the Nanjing Agricultural University, China (Y0201400037, SKCX2015004) the Education Department of Jiangsu Province, China (2014SJD069) the Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD) the China Center for Food Security Studies at Nanjing Agricultural University Jiangsu Rural Development and Land Policy Research Institute Jiangsu Agriculture Modernization Decision Consulting Center, China
关键词 ozone pollution MAIZE YIELD food security ozone pollution maize yield food security
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