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The biodiversity-wind energy-land use nexus in a global biodiversity hotspot

机译:生物多样性风能 - 在全球生物多样性热点中使用Nexus

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Wind energy is the leading renewable technology towards achieving climate goals, yet biodiversity trade-offs via land take are emerging. Thus, we are facing the paradox of impacting on biodiversity to combat climate change. We suggest a novel method of spatial planning that enhances windfarm sustainability: investments are prioritized in the most fragmented zones that lie outside the Natura 2000 network of protected areas. We showcase it in Greece, a biodiversity hotspot with a strong climate policy and land conflict between conservation and wind energy schemes. The analysis indicates that the suggested investment zone supports wind harnessing 1.5 times higher than the 2030 national goal, having only marginally lower (4%) wind speed. It performs well for the conservation of the annexed habitats and species of the two Nature Directives and it greatly overlaps with the Important Bird Areas (93%) and the roadless areas (80%) of Greece. It also greatly overlaps (82%-91%) with the exclusion zones suggested according to three sensitivity maps for bird conservation. Since land use change triggers biodiversity decline, we underline the necessity of such approaches for meeting both climate and biodiversity goals and call for a greater environmental policy convergence towards biodiversity conservation and no net land take.
机译:风能是实现气候目标的领先可再生技术,但通过土地采取生物多样性权衡正在出现。因此,我们正面临影响生物多样性对抗气候变化的悖论。我们建议一种新颖的空间规划方法,增强了风毒可持续性:投资是在Natura 2000保护区网络之外的最零碎的区域优先考虑。我们在希腊展示它,一个生物多样性热点,具有强烈的气候政策和保护和风能方案之间的土地冲突。该分析表明,建议的投资区支持风力利用比2030年的2030年高1.5倍,只有边际较低(4%)风速。它表现良好的是保护两种性质指令的附带的栖息地和物种,它与重要的鸟类区域(93%)和希腊无路(80%)重叠。对于根据鸟类保护的三种敏感性图建议的排除区,它也大大重叠(82%-91%)。由于土地利用变化触发生物多样性下降,因此我们强调了满足气候和生物多样性目标的这种方法的必要性,并呼吁更大的环境政策趋同对生物多样性保护,没有净土地。

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