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Confronting the Food-Energy-Environment Trilemma: Global Land Use in the Long Run

机译:面对粮食—能源—环境三难:从长远来看全球土地利用

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摘要

Economic, agronomic, and biophysical drivers affect global land use, so all three influences need to be considered in evaluating economically optimal allocations of the world's land resources. A dynamic, forward-looking optimization framework applied over the course of the coming century shows that although some deforestation is optimal in the near term, in the absence of climate change regulation, the desirability of further deforestation is eliminated by mid-century. Although adverse productivity shocks from climate change have a modest effect on global land use, such shocks combined with rapid growth in energy prices lead to significant deforestation and higher greenhouse gas emissions than in the baseline. Imposition of a global greenhouse gas emissions constraint further heightens the competition for land, as fertilizer use declines and land-based mitigation strategies expand. However, anticipation of the constraint largely dilutes its environmental effectiveness, as deforestation accelerates prior to imposition of the target.
机译:经济,农艺和生物物理驱动因素会影响全球土地使用,因此在评估世界上土地资源的经济最优配置时需要考虑所有这三种影响。一个动态的,具有前瞻性的优化框架在下个世纪的过程中应用表明,尽管在短期内某些森林砍伐是最佳的,但由于没有气候变化法规,本世纪中叶消除了进一步砍伐森林的必要性。尽管气候变化带来的不利生产力冲击对全球土地使用产生了适度的影响,但这种冲击与能源价格的快速增长相结合,导致森林砍伐和温室气体排放量均高于基准线。随着肥料使用量的减少和基于土地的减缓战略的扩大,施加全球温室气体排放限制进一步加剧了对土地的竞争。但是,由于在实施目标之前森林砍伐加速,因此对该限制的预期会大大降低其环境效益。

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