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Effects of Timber Harvesting with Best Management Practices on Ecosystem Metabolism of a Low Gradient Stream on the United States Gulf Coastal Plain

机译:最佳管理方式的木材采伐对美国墨西哥湾沿岸平原低梯度河流生态系统代谢的影响

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Stream metabolism can be used as a measure of freshwater ecosystem health because of its responsiveness to natural and anthropogenic changes. In this study, we used stream metabolic rates to test for the effects of a timber harvest with Louisiana’s current best management practices (BMPs). The study was conducted from 2006 to 2010 in a loblolly pine (Pinus taeda) stand in north-central Louisiana, USA, 45 ha of which was clear cut harvested in the summer of 2007. Dissolved oxygen (DO), water temperature, and stream depth were recorded at a site upstream (serving as a reference) and a site downstream of the harvested area. Using diurnal DO change and an open-system, single-station method at each site, we quantified rates of net ecosystem productivity (NEP), gross primary productivity (GPP), community respiration (CR), and the GPP/CR ratio. The system was predominately heterotrophic, with a GPP/CR ratio of less than one for 82% of the time at the upstream site. No calculated metabolic rate was significantly changed by the timber harvest (two-way ANOVA with interaction; p 0.001). Overall, the results suggest that timber harvests of similar intensity with Louisiana’s current BMPs may not significantly impact stream biological conditions.
机译:溪流的新陈代谢因其对自然和人为变化的响应能力,因此可以用作衡量淡水生态系统健康的指标。在这项研究中,我们使用溪流代谢率,根据路易斯安那州目前的最佳管理规范(BMP)测试木材采伐的影响。该研究于2006年至2010年在美国路易斯安那州中北部的火炬松(Pinus taeda)林分中进行,其中45公顷于2007年夏季被明确砍伐。溶解氧(DO),水温和水流在采伐区上游(作为参考)和下游采伐的地点记录深度。使用每个站点的每日DO变化和开放系统的单站方法,我们量化了净生态系统生产力(NEP),总初级生产力(GPP),社区呼吸(CR)和GPP / CR比率。该系统主要是异养性的,在上游站点中,有82%的时间GPP / CR比率小于1。木材采伐并没有明显改变新陈代谢率(双向ANOVA交互作用; p <0.001)。总体而言,结果表明,与路易斯安那州目前的BMP强度相似的木材采伐可能不会显着影响河流生物条件。

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