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首页> 外文期刊>Arctic, antarctic, and alpine research >Impact of Wildfire on Stream Nutrient Chemistry and Ecosystem Metabolism in Boreal Forest Catchments of Interior Alaska
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Impact of Wildfire on Stream Nutrient Chemistry and Ecosystem Metabolism in Boreal Forest Catchments of Interior Alaska

机译:野火对阿拉斯加内部北方森林集水区河流营养化学和生态系统代谢的影响

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With climatic warming, wildfire occurrence is increasing in the boreal forest of interior Alaska. Loss of catchment vegetation during fire can impact streams directly through altered solute and debris inputs and changed light and temperature regimes. Over longer time scales, fire can accelerate permafrost degradation, altering catchment hydrology and stream nutrient dynamics. In 2004, the 217,000 ha Boundary Fire burned 65% of an established Study site in the Caribou-Poker Creeks Research Watershed. We used this opportunity to investigate the impact of wildfire on stream chemistry and metabolism in boreal forest catchments. Wildfire impacts on chemistry were evaluated by examining solute chemistry in four catchments from 2002 to 2007. Ecosystem metabolism was measured over the summer of 2005 in one burned and two unburned catchments. Wildfire led to stream nitrate concentration increasing up to threefold, whereas dissolved organic carbon (DOC) and dissolved organic nitrogen concentrations decreased post-fire. Average stream gross primary production in the burned catchment was double that of the unburned sites (2.4 and 1.2 g O-2 m(-2) day(-1), respectively). Respiration rate was also elevated in the burned stream (6.6 g O-2 m(-2) day(-1)) compared with the control streams (1.2 and 4.5 g O-2 m(-2) day(-1)). Climatic warming has the potential to impact boreal forest streams through permafrost thaw and increased fire frequency, leading to altered solute inputs and production and respiration rates.
机译:随着气候变暖,阿拉斯加内部的北方森林野火的发生在增加。火灾期间集水区植被的丧失会通过改变溶质和碎屑输入以及改变光照和温度状态直接影响河流。在更长的时间范围内,火灾会加速永久冻土的退化,改变集水区的水文状况和溪流养分动态。 2004年,在Cari​​bou-Poker Creeks研究分水岭,217,000公顷的边界火烧毁了已建立研究场地的65%。我们利用这次机会调查了野火对北方森林集水区河流化学和新陈代谢的影响。通过检查2002年至2007年间四个集水区的溶质化学性质,评估了野火对化学的影响。2005年夏季,对一个燃烧和两个未燃烧集水区的生态系统代谢进行了测量。野火导致溪流硝酸盐浓度增加至三倍,而火后溶解的有机碳(DOC)和溶解的有机氮浓度降低。流域燃烧后的平均河流总初级生产力是未燃场所的两倍(分别为2.4和1.2 g O-2 m(-2)day(-1))。与对照流(1.2和4.5 g O-2 m(-2)day(-1))相比,燃烧流(6.6 g O-2 m(-2)day(-1))的呼吸速率也有所提高。 。气候变暖有可能通过多年冻土融化和增加火灾频率来影响北方森林溪流,从而导致溶质输入以及产量和呼吸速率的变化。

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