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Regulating riparian forests for aquatic productivity in the Pacific Northwest, USA: addressing a paradox

机译:调节太平洋西北地区的水生生产力河流林:解决悖论

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Forested riparian buffers isolate streams from the influence of harvesting operations that can lead to water temperature increases. Only forest cover between the sun and stream limits stream warming, but that cover also reduces in-stream photosynthesis, aquatic insect production, and fish productivity. Water temperature increases that occur as streams flow through canopy openings decrease rapidly downstream, in as little as 150 m. Limiting management options in riparian forests restricts maintenance and optimization of various buffer contributions to beneficial uses, including forest products, fish, and their food supply. Some riparian disturbance, especially along cold streams, appears to benefit fish productivity. Options for enhancing environmental investments in buffers should include flexibility in application of water quality standards to address the general biological needs of fish and temporary nature of clearing induced warming. Local prescriptions for optimizing riparian buffers and practices that address long-term habitat needs deserve attention. Options and incentives are needed to entice landowners to actively manage for desirable riparian forest conditions.
机译:森林河流缓冲区从收获操作的影响中分离出可以导致水温的影响。只有森林覆盖在太阳和流之间限制了流暖,但盖子也减少了流中的光合作用,水生昆虫生产和鱼类生产力。随着流式流通开口的流动迅速下游减小,水温增加,速度下降,只需150米。河岸森林的限制管理选择限制了对各种缓冲贡献的维护和优化,包括林产品,鱼类及其食品供应。一些河岸干扰,特别是沿着冷溪流,似乎有利于鱼类生产力。加强缓冲区环境投资的选择应包括应用水质标准的灵活性,以解决鱼类的一般生物需求和清除诱导变暖的临时性质。用于优化河岸缓冲区和解决长期栖息地需求的实践的当地处方值得关注。需要选择和激励措施来激发土地所有者积极管理理想的河岸森林条件。

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