首页> 外文学位 >Disturbance interactions in subalpine forests, their impacts on forest resilience, carbon, and future carbon storage under a variety of management and climate change scenarios.
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Disturbance interactions in subalpine forests, their impacts on forest resilience, carbon, and future carbon storage under a variety of management and climate change scenarios.

机译:在各种管理和气候变化情景下,亚高山森林中的干扰相互作用,它们对森林适应力,碳和未来碳储存的影响。

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摘要

Forest disturbances are inevitable, and recovery from those disturbances (termed resilience) is required for the persistence of forests through time. Extraordinarily severe or compounding multiple disturbances may, however, exceed that resilience and shift the ecosystems into alternate regimes with potentially large implications for ecosystem structure and functioning. A compound disturbance event (wind, logging, and fire) in a Colorado subalpine forest was studied for the impact of the multiple disturbance events on disturbance characteristics, tree regeneration, and carbon stocks, an important ecosystem service provided by many forests. The regeneration was also grown using the Forest Vegetation Simulator to simulate the effects of climate change and various management/regeneration amounts on carbon stocks in the next century. Results indicate that the disturbances did interact in a mechanistic way, producing a novel disturbance with extreme burn times and temperatures. Regeneration was altered by this interaction, with the serotinous species (lodgepole pine) having reduced regeneration, whereas the seed dispersing species were relatively unaffected. Logging prior to the fire reduced this compound effect, supporting the conclusion that the interaction drove the differential regeneration. Carbon was additively affected by the disturbances, with more disturbances resulting in less carbon and charcoal on the plots. Given literature-derived decomposition rates, the interactions may result in a net loss of charcoal on the landscape over the entire fire return interval. Looking forward, carbon stocks recovered in the near-term despite the loss of conifers in many locations due to the influx of aspen. However, in the majority of the climate change scenarios large tree mortality near the end of the century reduced tree cover and carbon stocks. Aggressive planting of local species was not successful in maintaining tree/carbon stocks; only the establishment of non-local, more warm-climate adapted species maintained the forest. Overall, disturbance interactions create novel, interesting situations with implications for forest resilience, and result in an increase in heterogeneity across the landscape. Carbon is also affected by multiple disturbances. But the growing effects of climate change will likely overshadow the impacts of the disturbances and differential recovery in the next century.
机译:森林的干扰是不可避免的,要使森林持续存在,就必须从这些干扰中恢复(称为复原力)。但是,异常严重或加剧的多重扰动可能会超过这种抵御能力,并将生态系统转变为对生态系统的结构和功能可能产生重大影响的替代体制。研究了科罗拉多亚高山森林的复合扰动事件(风,伐木和火),以了解多种扰动事件对扰动特征,树木再生和碳储量的影响,这是许多森林提供的重要生态系统服务。还使用森林植被模拟器对再生进行了生长,以模拟下个世纪气候变化和各种管理/再生量对碳储量的影响。结果表明,干扰确实以机械方式相互作用,产生了具有极端燃烧时间和温度的新型干扰。通过这种相互作用改变了再生,其中含血的物种(黑松)的再生减少,而种子分散物种则相对不受影响。火灾之前的伐木降低了这种复合效应,支持了相互作用推动差异再生的结论。碳受到干扰的累加影响,干扰越大,小区中的碳和木炭就越少。给定文献衍生的分解速率,相互作用可能会导致整个回火间隔内景观上的木炭净损失。展望未来,尽管由于白杨木的涌入,许多地方的针叶树数量减少,但近期碳库仍在恢复。但是,在大多数气候变化情景中,到本世纪末,大量的树木死亡减少了树木的覆盖和碳储量。大量种植本地物种未能成功维持树木/碳储量;只有非本地,适应气候更温暖的物种的建立才能维持森林。总体而言,干扰相互作用会产生新颖有趣的情况,从而影响森林的复原力,并导致整个景观的异质性增加。碳还受到多种干扰的影响。但是,气候变化的日益严重的影响很可能会掩盖下个世纪干扰和差异恢复的影响。

著录项

  • 作者

    Buma, Brian.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Biology Ecology.;Environmental Sciences.;Agriculture Forestry and Wildlife.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 213 p.
  • 总页数 213
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:40:47

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