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利用人工结构创造野生动物栖息地:对其在太阳能农场中的功效和潜在用途的综述。

Creating wildlife habitat using artificial structures: a review of their efficacy and potential use in solar farms.

机构信息

Ecosystem Management, School of Environmental and Rural Science, University of New England, Armidale, New South Wales, 2351, Australia.

出版信息

Biol Rev Camb Philos Soc. 2024 Oct;99(5):1848-1867. doi: 10.1111/brv.13095. Epub 2024 May 12.

Abstract

The biodiversity crisis is exacerbated by a growing human population modifying nearly three-quarters of the Earth's land surface area for anthropogenic uses. Habitat loss and modification represent the largest threat to biodiversity and finding ways to offset species decline has been a significant undertaking for conservation. Landscape planning and conservation strategies can enhance habitat suitability for biodiversity in human-modified landscapes. Artificial habitat structures such as artificial reefs, nest boxes, chainsaw hollows, artificial burrows, and artificial hibernacula have all been successfully implemented to improve species survival in human-modified and fragmented landscapes. As the global shift towards renewable energy sources continues to rise, the development of photovoltaic systems is growing exponentially. Large-scale renewable projects, such as photovoltaic solar farms have large space requirements and thus have the potential to displace local wildlife. We discuss the feasibility of 'conservoltaic systems' - photovoltaic systems that incorporate elements tailored specifically to enhance wildlife habitat suitability and species conservation. Artificial habitat structures can potentially lessen the impacts of industrial development (e.g., photovoltaic solar farms) through strategic landscape planning and an understanding of local biodiversity requirements to facilitate recolonization.

摘要

生物多样性危机因人类人口增长而加剧,人类为了自身用途,改造了近四分之三的地球陆地表面。生境丧失和改变是对生物多样性的最大威胁,寻找抵消物种减少的方法一直是保护生物多样性的一项重大任务。景观规划和保护策略可以提高人为改造景观中生物多样性的栖息地适宜性。人工生境结构,如人工礁石、鸟巢箱、链锯树洞、人工洞穴和人工冬眠场所,都已成功实施,以提高在人为改造和破碎化景观中物种的生存能力。随着全球向可再生能源的转变持续上升,光伏系统的发展呈指数级增长。大型可再生能源项目,如光伏太阳能农场,需要大量的空间,因此有可能取代当地的野生动物。我们讨论了“光伏系统”的可行性,即光伏系统结合了专门设计的元素,以增强野生动物栖息地的适宜性和物种保护。人工生境结构可以通过战略性的景观规划和对当地生物多样性需求的了解,减轻工业发展(例如,光伏太阳能农场)的影响,促进重新定居。

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