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生物多样性与产业生态系统管理。

Biodiversity and Industry Ecosystem Management.

作者信息

COLEMAN WG

机构信息

Environment GroupElectric Power Research Institute3412 Hillview Avenue Palo Alto, California 94304, USA

出版信息

Environ Manage. 1996 Nov;20(6):815-25. doi: 10.1007/BF01205961.

Abstract

/ The term biodiversity describes the array of interacting, genetically distinct populations and species in a region, the communities they comprise, and the variety of ecosystems of which they are functioning parts. Ecosystem health, a closely related concept, is described in terms of a process identifying biological indicators, end points, and values. The decline of populations or species, an accelerating trend worldwide, can lead to simplification of ecosystem processes, thus threatening the stability and sustainability of ecosystem services directly relevant to human welfare in the chain of economic and ecological relationships. The challenge of addressing issues of such enormous scope and complexity has highlighted the limitations of ecology-as-science. Additionally, biosphere-scale conflicts seem to lie beyond the scope of conventional economics, leading to differences of opinion about the commodity value of biodiversity and of the services that intact ecosystems provide. In the face of these uncertainties, many scientists and economists have adopted principles that clearly assign burdens of proof to those who would promote the loss of biodiversity and that also establish "near-trump" (preeminent) status for ecological integrity. Electric utility facilities and operations impact biodiversity whenever construction, operation, or maintenance of generation, delivery, and support facilities alters landscapes and habitats and thereby impacts species. Although industry is accustomed to dealing with broad environmental concerns (such as global warming or acid rain), the biodiversity issue invokes hemisphere-wide, regional, local, and site-specific concerns all at the same time. Industry can proactively address these issues of scope and scale in two main ways: first, by aligning strategically with the broad research agenda put forth by informed scientists and institutions; and second, by supporting focused management processes whose results will contribute incrementally to the broader agenda of rebuilding or maintaining biodiversity.KEY WORDS: Biodiversity; Ecosystem management; Environmental economics; Electric utilities; Research

摘要

生物多样性一词描述了一个区域内相互作用、基因不同的种群和物种的集合、它们所构成的群落,以及它们作为其功能组成部分的各种生态系统。生态系统健康是一个密切相关的概念,是根据识别生物指标、终点和价值的过程来描述的。种群或物种的减少是全球范围内加速的趋势,这可能导致生态系统过程简化,从而威胁到经济和生态关系链中与人类福祉直接相关的生态系统服务的稳定性和可持续性。应对如此广泛和复杂问题的挑战凸显了作为一门科学的生态学的局限性。此外,生物圈规模的冲突似乎超出了传统经济学的范畴,导致人们对生物多样性的商品价值以及完整生态系统提供的服务价值存在意见分歧。面对这些不确定性,许多科学家和经济学家采用了一些原则,这些原则明确将举证责任分配给那些主张生物多样性丧失的人,并且还确立了生态完整性的“近乎首要”(卓越)地位。每当发电、输电和支持设施的建设、运营或维护改变景观和栖息地从而影响物种时,电力设施和运营就会对生物多样性产生影响。尽管该行业习惯于应对广泛的环境问题(如全球变暖或酸雨),但生物多样性问题同时引发了半球范围、区域、地方和特定地点的关注。该行业可以通过两种主要方式积极应对这些范围和规模问题:第一,通过与有见识的科学家和机构提出的广泛研究议程进行战略协调;第二,通过支持有针对性的管理过程,其结果将逐步有助于实现重建或维护生物多样性这一更广泛议程。关键词:生物多样性;生态系统管理;环境经济学;电力公司;研究

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