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Accelerating Forest Growth Enhancement due to Climate and Atmospheric Changes in British Colombia Canada over 1956-2001

机译:1956-2001年加拿大不列颠哥伦比亚省因气候和大气变化而加速森林生长

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摘要

Changes in climate and atmospheric CO2 and nitrogen (N) over the last several decades have induced significant effects on forest carbon (C) cycling. However, contributions of individual factors are largely unknown because of the lack of long observational data and the undifferentiating between intrinsic factors and external forces in current ecosystem models. Using over four decades (1956–2001) of forest inventory data at 3432 permanent samples in maritime and boreal regions of British Columbia (B.C.), Canada, growth enhancements were reconstructed and partitioned into contributions of climate, CO2 and N after removal of age effects. We found that climate change contributed a particularly large amount (over 70%) of the accumulated growth enhancement, while the remaining was attributed to CO2 and N, respectively. We suggest that climate warming is contributing a widespread growth enhancement in B.C.'s forests, but ecosystem models should consider CO2 and N fertilization effects to fully explain inventory-based observations.
机译:在过去的几十年中,气候和大气中二氧化碳和氮(N)的变化已对森林碳(C)循环产生了重大影响。但是,由于缺乏长期的观测数据以及当前生态系统模型中内在因素与外力之间没有区别,因此各个因素的贡献在很大程度上是未知的。利用加拿大不列颠哥伦比亚省(BC)沿海和寒带地区的3432个永久样本的四十年(1956-2001年)森林资源调查数据,重建了生长增强因子,并去除了年龄效应后将其分为气候,CO2和N贡献。我们发现,气候变化对累积增长的增长贡献特别大(超过70%),而其余分别分别归因于CO2和N。我们认为气候变暖正在促进卑诗省森林的广泛增长,但生态系统模型应考虑二氧化碳和氮肥的影响,以充分解释基于清单的观测结果。

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