Importance of background climate in determining impact of land-cover change on regional climate

环境科学 温室气体 气候变化 反照率(炼金术) 气候模式 土地覆盖 气候学 降水 温带气候 热带 大气科学 北方的 土地利用 地理 气象学 生态学 地质学 生物 艺术 考古 艺术史 表演艺术
作者
A. J. Pitman,F. B. Avila,Gab Abramowitz,Ying‐Ping Wang,Steven J. Phipps,Nathalie de Noblet‐Ducoudré
出处
期刊:Nature Climate Change [Nature Portfolio]
卷期号:1 (9): 472-475 被引量:184
标识
DOI:10.1038/nclimate1294
摘要

Both greenhouse gas emissions and changes in land use and cover have modified the Earth’s climate since preindustrial times. A modelling study now shows that the impact of land-cover change on regional climate depends critically on how snow cover and rainfall change under increased greenhouse gases. Humans have modified the Earth’s climate through emissions of greenhouse gases and through land-use and land-cover change (LULCC)1. Increasing concentrations of greenhouse gases in the atmosphere warm the mid-latitudes more than the tropics, in part owing to a reduced snow–albedo feedback as snow cover decreases2. Higher concentration of carbon dioxide also increases precipitation in many regions1, as a result of an intensification of the hydrological cycle2. The biophysical effects of LULCC since pre-industrial times have probably cooled temperate and boreal regions and warmed some tropical regions3. Here we use a climate model to show that how snow and rainfall change under increased greenhouse gases dominates how LULCC affects regional temperature. Increased greenhouse-gas-driven changes in snow and rainfall affect the snow–albedo feedback and the supply of water, which in turn limits evaporation. These changes largely control the net impact of LULCC on regional climate. Our results show that capturing whether future biophysical changes due to LULCC warm or cool a specific region therefore requires an accurate simulation of changes in snow cover and rainfall geographically coincident with regions of LULCC. This is a challenge to current climate models, but also provides potential for further improving detection and attribution methods.
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