†Potsdam Institute for Climate Impact Research (PIK), 14473 Potsdam, Germany.
‡Economics of Climate Change, Technische Universität Berlin (TU Berlin), 10623 Berlin, Germany.
Environ Sci Technol. 2015 Jun 2;49(11):6731-9. doi: 10.1021/es506201r. Epub 2015 May 19.
Climate change has impacts on agricultural yields, which could alter cropland requirements and hence deforestation rates. Thus, land-use responses to climate change might influence terrestrial carbon stocks. Moreover, climate change could alter the carbon storage capacity of the terrestrial biosphere and hence the land-based mitigation potential. We use a global spatially explicit economic land-use optimization model to (a) estimate the mitigation potential of a climate policy that provides economic incentives for carbon stock conservation and enhancement, (b) simulate land-use and carbon cycle responses to moderate climate change (RCP2.6), and (c) investigate the combined effects throughout the 21st century. The climate policy immediately stops deforestation and strongly increases afforestation, resulting in a global mitigation potential of 191 GtC in 2100. Climate change increases terrestrial carbon stocks not only directly through enhanced carbon sequestration (62 GtC by 2100) but also indirectly through less deforestation due to higher crop yields (16 GtC by 2100). However, such beneficial climate impacts increase the potential of the climate policy only marginally, as the potential is already large under static climatic conditions. In the broader picture, this study highlights the importance of land-use dynamics for modeling carbon cycle responses to climate change in integrated assessment modeling.
气候变化对农业产量有影响,这可能会改变对耕地的需求,从而影响森林砍伐率。因此,土地利用对气候变化的响应可能会影响陆地碳储量。此外,气候变化可能会改变陆地生物圈的碳储存能力,从而影响基于土地的减排潜力。我们使用一个全球空间显式经济土地利用优化模型来:(a) 估计为保护和增强碳储量提供经济激励的气候政策的减排潜力;(b) 模拟土地利用和碳循环对中等程度气候变化(RCP2.6)的响应;(c) 调查整个 21 世纪的综合影响。气候政策立即停止森林砍伐,大力增加造林,到 2100 年全球减排潜力为 191 吉吨碳。气候变化不仅直接通过增强碳固存(到 2100 年增加 62 吉吨碳),而且还通过更高的作物产量间接增加陆地碳储量(到 2100 年增加 16 吉吨碳)。然而,由于在静态气候条件下减排潜力已经很大,这种有利的气候影响只会略微增加气候政策的潜力。从更广泛的角度来看,本研究强调了土地利用动态在综合评估模型中模拟气候变化对碳循环响应的重要性。