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Particulate matter air pollution offsets ozone damage to global crop production

机译:颗粒物空气污染抵消了臭氧对全球作物生产的损害

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摘要

Ensuring global food security requires a comprehensive understanding of environmental pressures on food production, including the impacts of air quality. Surface ozone damages plants and decreases crop production; this effect has been extensively studied. In contrast, the presence of particulate matter (PM) in the atmosphere can be beneficial to crops given that enhanced light scattering leads to a more even and efficient distribution of photons which can outweigh total incoming radiation loss. This study quantifies the impacts of ozone and PM on the global production of maize, rice, and wheat in 2010 and 2050. We show that accounting for the growing season of these crops is an important factor in determining their air pollution exposure. We find that the effect of PM can offset much, if not all, of the reduction in yield associated with ozone damage. Assuming maximum sensitivity to PM, the current (2010) global net impact of air quality on crop production is positive (+6.0 %, +0.5 %, and +4.9 % for maize, wheat, and rice, respectively). Future emissions scenarios indicate that attempts to improve air quality can result in a net negative effect on crop production in areas dominated by the PM effect. However, we caution that the uncertainty in this assessment is large due to the uncertainty associated with crop response to changes in diffuse radiation; this highlights that more detailed physiological study of this response for common cultivars is crucial.
机译:确保全球粮食安全需要对粮食生产的环境压力,包括空气质量的影响有一个全面的了解。地表臭氧损害植物并降低作物产量;这种效果已被广泛研究。相比之下,大气中颗粒物(PM)的存在可能对作物有利,因为增强的光散射会导致光子分布更加均匀和有效,而光子的分布可能会超过传入的总辐射损失。这项研究量化了臭氧和PM对2010年和2050年全球玉米,水稻和小麦产量的影响。我们表明,考虑这些作物的生长期是确定其空气污染暴露的重要因素。我们发现,PM的影响可以抵消(即使不是全部)很多与臭氧破坏有关的产量下降。假设对PM的敏感性最高,当前(2010年)全球空气质量对作物生产的净影响为正(玉米,小麦和水稻分别为+6.0%,+ 0.5%和+ 4.9%)。未来的排放情景表明,改善空气质量的尝试可能对以PM效应为主的地区的农作物产量产生净负面影响。但是,我们提醒您,由于作物对扩散辐射变化的响应存在不确定性,因此该评估的不确定性很大。这突出表明,对于普通品种对该反应进行更详细的生理研究至关重要。

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