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首页> 外文期刊>Forest Ecology and Management >Organic matter inputs into headwater streams of southwestern British Columbia as a function of riparian reserves and time since harvesting.
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Organic matter inputs into headwater streams of southwestern British Columbia as a function of riparian reserves and time since harvesting.

机译:有机质输入到不列颠哥伦比亚省西南部的源头溪流中,是河岸储备量和收获后时间的函数。

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Riparian vegetation strongly influences the structure and function of terrestrial and aquatic ecosystems; therefore, harvest of riparian trees can profoundly impact these habitats. Riparian reserves (no harvest zones) are used world-wide to reduce these impacts, including effects on organic matter dynamics. There are, however, few experimental evaluations of their efficacy. Particulate organic matter delivery from riparian vegetation to streams, a critical ecosystem process, was measured over an eight year period after logging in southwestern British Columbia, Canada to quantify the relationship between these litter fluxes and riparian reserves (unlogged controls, 30 and 10-m wide uncut reserves, and clear-cuts). We hypothesized that the timing, composition and quantity of organic matter entering these streams would vary as a function of reserve width, but that these differences would decline with time since logging. We also hypothesized that inter-annual variation in precipitation patterns would partially contribute to litter dynamics. Riparian treatment significantly affected the quantity and composition of litter flux: inputs of needles and twigs were significantly lower and proportion of deciduous litter higher in clear-cut streams compared to other treatments. ANOVA models indicated that treatment differences in litter flux persisted through year 7 for some components of litter, while regression models indicated positive trends between reserve width and litter flux through year 8. This positive slope indicates the clear-cut treatment had yet to recover from logging. Variation in snowfall and plant succession contributed to temporal variation in litter flux; in some cases, litter inputs increased with annual snowfall. Another key finding from this study was that riparian reserves provided total litter inputs to streams that were similar to fully forested controls.Digital Object Identifier http://dx.doi.org/10.1016/j.foreco.2010.08.016
机译:河岸植被强烈影响陆地和水生生态系统的结构和功能;因此,河岸树木的收获会深刻影响这些栖息地。河岸保护区(无收割区)在世界范围内被用于减少这些影响,包括对有机物动力学的影响。但是,对其功效的实验评估很少。在加拿大不列颠哥伦比亚西南部伐木后的八年中,测量了从河岸植被到河流的颗粒有机物输送,这是一个关键的生态系统过程,以量化这些凋落物通量与河岸储备之间的关系(未记录的对照,30和10-m广泛的未开采储量和明确的储量)。我们假设进入这些流的有机物的时间,组成和数量将随着储层宽度的变化而变化,但是自采伐以来,这些差异会随着时间而减小。我们还假设降水模式的年际变化将部分有助于凋落物动力学。河岸处理显着影响凋落物通量的数量和组成:与其他处理相比,在明渠中,针叶和细枝的输入量显着降低,落叶凋落物的比例更高。方差分析模型表明,对于部分凋落物,凋落物通量的处理差异一直持续到第7年,而回归模型表明,直到第8年,保留宽度和凋落物通量之间的正趋势都是正相关的。 。降雪和植物演替的变化导致凋落物通量的时间变化;在某些情况下,垃圾的投入随年度降雪而增加。这项研究的另一个主要发现是河岸保护区向类似于完全森林控制的河流提供了全部垃圾输入。数字对象标识符http://dx.doi.org/10.1016/j.foreco.2010.08.016

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