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Tackling Regional Climate Change By Leaf Albedo Bio-geoengineering

机译:叶反照率生物地球工程学解决区域气候变化

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The likelihood that continuing greenhouse-gas emissions will lead to an unmanageable degree of climate change (1] has stimulated the search for planetary-scale technological solutions for reducing global warming [2] ("geoengineering"), typically characterized by the necessity for costly new infrastructures and industries [3]. We suggest that the existing global infrastructure associated with arable agriculture can help, given that crop plants exert an important influence over the climatic energy budget [4, 5] because of differences in their albedo (solar reflectivity) compared to soils and to natural vegetation [6]. Specifically, we propose a "bio-geoengineering" approach to mitigate surface warming, in which crop varieties having specific leaf glossiness and/or canopy morphological traits are specifically chosen to maximize solar reflectivity. We quantify this by modifying the canopy albedo of vegetation in prescribed cropland areas in a global-climate model, and thereby estimate the near-term potential for bio-geoengineering to be a summertime cooling of more than 1 degrees C throughout much of central North America and midlatitude Eurasia, equivalent to seasonally off setting approximately one-fifth of regional warming due to doubling of atmospheric CO2 [7]. Ultimately, genetic modification of plant leaf waxes or canopy structure could achieve greater temperature reductions, although better characterization of existing intraspecies variability is needed first.
机译:持续的温室气体排放可能导致难以控制的气候变化的可能性(1)促使人们寻求减少全球变暖的行星级技术解决方案[2](“地球工程”),其典型特征是需要付出高昂的代价新的基础设施和产业[3]。我们建议与耕作农业相关的现有全球基础设施可以提供帮助,因为农作物由于其反照率(太阳能反射率)的差异而对气候能源预算产生了重要影响[4,5]。与土壤和自然植被相比[6]。具体而言,我们提出了一种“生物地球工程”方法来减轻表面变暖,在这种方法中,专门选择具有特定叶片光泽度和/或冠层形态特征的农作物品种以最大化太阳反射率。通过在全球气候模型中修改规定农田的植被冠层反照率来对此进行量化,从而估算在整个北美中部和中纬度的欧亚大陆,夏季,地球生物工程的短期潜力可能是夏季冷却超过1摄氏度,这相当于由于大气中CO2倍增而季节性偏移了大约五分之一的区域变暖[7] 。最终,尽管首先需要对现有种内变异性进行更好的表征,但对植物叶蜡或冠层结构的基因改造可以实现更大的降温效果。

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