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Impacting habitat connectivity of the endangered Florida panther for the transition to utility-scale solar energy

机译:影响栖息地濒危的连通性过渡到佛罗里达豹太阳能能源

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摘要

The only breeding population of the endangered Florida panther Puma concolor coryi is restricted to <5% of its historic range in South Florida, but this area may be at carrying capacity and three viable populations within the historic range are needed for species recovery. The number of utility-scale solar energy (USSE) facility installations is increasing rapidly throughout Florida, and while important in combatting carbon emissions and climate change, they pose additional threats to Florida panther habitat and dispersal corridors. We compared Florida panther habitat suitability and connectivity pre- and post-installation of 45 USSE facilities within Peninsular Florida using random forest to predict probability of presence in 1 km(2) cells and circuit theory (Circuitscape 4.0) to predict movement probability between the areas of suitable habitat. We found that most often solar facilities were installed on grasslands and pastures (45.7% of total area replaced by solar facilities) and agricultural lands (34.9%). Forest was the third most impacted land cover category (13.2%). Probability of presence in the 351 impacted cells decreased by 0.03. The major changes in current density occurred within the cells overlapped by the facilities and within their vicinity. Post-installation effective resistance between core areas increased by 0.07%. Nine facilities were located within major corridors connecting the only breeding population with other areas with the potential to support populations of Florida panther, 26 facilities were located within lesser current density areas that maintain some dispersal capacity and six facilities had no, or very minimal, potential expected impact on connectivity (four were excluded from the analysis). Our findings suggest a substantial bias in the locating of USSE facilities within rural and undeveloped lands that may provide connectivity sufficient for Florida panther dispersal to habitat suitable for population establishment. Our research is the first study documenting the effect of USSE facilities on both habitat suitability and regional-scale connectivity of suitable habitat for any large carnivore. Synthesis and applications. Current permitting review methodologies resulting in USSE (utility-scale solar energy) facilities installation approval may be inadequate, and facility siting should consider landscape-level connectivity in addition to environmental impacts within facility boundaries.
机译:唯一的繁殖种群的濒危佛罗里达豹彪马concolor coryi受到限制< 5%的历史范围在南佛罗里达州,但这个区域可能在承载能力三个可行的人口在历史物种范围需要复苏。太阳能能源(USSE)设施安装快速增长佛罗里达,重要的打击碳排放和气候变化,他们的姿势额外的佛罗里达豹栖息地和威胁疏散通道。栖息地适宜性和连接性和安装后的45 USSE设施内使用随机森林预测佛罗里达半岛的概率在1公里(2)细胞的存在电路理论(Circuitscape 4.0)来预测运动区域之间的概率合适的栖息地。设施安装在草地和牧场(45.7%的面积被太阳能所取代设施)和农业土地(34.9%)。森林是第三大土地覆盖的影响类别(13.2%)。351年影响细胞下降了0.03。内的电流密度发生变化细胞内的设施和重叠他们的附近。核心区域之间的电阻增加了0.07%。九个设施位于专业走廊连接只繁殖种群与其他领域潜在的支持佛罗里达豹的数量、26设施较小的电流密度区域内定位保持一些分散能力和6设施没有,或非常小的潜力对连接(四人预期的影响排除在分析)。大量的偏见USSE的定位设施在农村和未开发的土地这可能足以提供连接佛罗里达豹栖息地适合传播人口建立。研究首次记录USSE的效果栖息地适宜性和设施对地区级的核连接合适的栖息地对于任何大型食肉动物。应用程序。方法导致USSE(储能太阳能)设施安装批准可能不足,设施选址应该吗除了考虑景观连接在设施环境影响边界。

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