| Literature DB >> 27388031 |
Xuexi Tie1,2, Ru-Jin Huang1,3,4, Wenting Dai1, Junji Cao1,5, Xin Long1, Xiaoli Su1, Shuyu Zhao1, Qiyuan Wang1, Guohui Li1.
Abstract
In China, regional haze pollution is a serious environmental problem. The impact on ecosystem, however, is not clearly understood. This study investigates the effect of regional haze pollution on the yields of rice and wheat in China. The spatial and temporal distributions of aerosol optical depth (AOD) show high particulate pollution in the North China Plain region, Yangtze River Delta region, the central eastern China, and the Si Chuan Basin, coexisted largely with crop growth in time and space. The solar irradiance reaching these regions is estimated to reduce by up to 28-49%, calculated using the AOD distributions and tropospheric ultraviolet-visible (TUV) model. Reduction of solar irradiance in these regions can depress optimal yields of about 45% of rice and 75% of wheat growth in China, leading to 2% reduction in total rice production and 8% reduction in total wheat production in China. However, there are large uncertainties of the estimate related to the diffuse solar radiation. For high diffuse radiation case, the estimate reductions of rice and wheat decrease to 1% and 4.5%, respectively. A further detailed study is needed to clearly understand this effect to meet the growing food demand in the nation in the coming decades.Entities:
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Year: 2016 PMID: 27388031 PMCID: PMC4937395 DOI: 10.1038/srep29612
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1The MODIS AOD horizontal distributions in different seasons (Winter-Dec. Jan. Feb., Spring-Mar. Apr. May., Summer-Jun. Jul. Aug., and Autumn-Sep. Oct. Nov.).
The outlines with numbers represent for different heavy aerosol pollution regions in China. 1 represents for the North China Plain region (NCP); 2 for the Yangtze River Delta region (YRD); 3 for the central eastern China (CEC); and 4 for the Si Chuan Basin (SCB). The map was generated by the IDL software version IDL 8.1 (Exelis, USA), http://www.exelisvis.com/.
Figure 2The calculated solar radiance reduction (%) at the surface, using the measured AOD distributions and the TUV model in different seasons.
The reduction ranges between the 25th and 75th percentiles for all four regions are 11–29% in winter, 4–12% in spring, 1–9% in summer, and 5–16% in autumn. More details about the statistical data are shown in Supplementary Information Table S3). The map was generated by the IDL software version IDL 8.1 (Exelis, USA), http://www.exelisvis.com/.
Figure 3The estimates of the reductions of wheat (left panels) and rice (right panels) productions in China.
The upper panels show the net yield reduction (10 Gg = 1010 g). The lower panels show the reduction of the net yield in percent. The map was generated by the IDL software version IDL 8.1 (Exelis, USA), http://www.exelisvis.com/.