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Comprehensive conservation planning to protect biodiversity and ecosystem services in Canadian boreal regions under a warming climate and increasing exploitation

机译:全面的保护规划,以保护气候变暖和开采日益增加的加拿大北方地区的生物多样性和生态系统服务

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Boreal regions contain more than half of the carbon in forested regions of the world and over 60% of the world's surface freshwater. Carbon storage and the flood control and water filtration provided by freshwaters and wetlands have recently been identified as the most important ecosystem services provided by boreal regions, with a value many times greater than current resource exploitation. Ecosystem services and sensitive ways of detecting their impairment have so far not been fully included in boreal conservation planning. Climate warming, via its effect on permafrost melting, insect damage, and forest fire, threatens to trigger large positive carbon feedbacks that may enhance the concentrations of greenhouse gases in the atmosphere, further amplifying climate warming. In a water-scarce world, there is increasing pressure to divert and exploit boreal freshwaters, and devising conservation plans to protect boreal freshwaters and their catchments is urgent. We propose a catchment-based approach that includes water and chemical mass-balances as a sensitive means of detecting early degradation of many ecosystem services in both catchments and freshwaters, and give some examples of where this has been advantageous in the past. The necessary modifications to current conservation planning are simple ones, and the advantages are great.
机译:北方地区的碳含量占世界森林区域的一半以上,占世界地表淡水的60%以上。最近,淡水和湿地提供的碳储存,防洪和水过滤已被确定为北方地区提供的最重要的生态系统服务,其价值是当前资源开发的许多倍。迄今为止,生态系统服务和检测其损害的敏感方法尚未完全包括在北方保护规划中。气候变暖通过影响永久冻土融化,虫害和森林火灾,有可能引发大量积极的碳反馈,从而增加大气中温室气体的浓度,从而进一步加剧气候变暖。在缺水的世界中,转移和开发北方淡水的压力越来越大,因此制定保护计划以保护北方淡水及其集水区十分紧迫。我们提出了一种基于流域的方法,其中包括水和化学物质的平衡,作为检测流域和淡水中许多生态系统服务的早期退化的灵敏手段,并举例说明了过去这种方法的优势所在。对当前保护规划的必要修改是简单的修改,其优点是巨大的。

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