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Riparian deforestation stream narrowing and loss of stream ecosystem services

机译:河岸森林砍伐河道狭窄和河道生态系统服务丧失

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摘要

A study of 16 streams in eastern North America shows that riparian deforestation causes channel narrowing, which reduces the total amount of stream habitat and ecosystem per unit channel length and compromises in-stream processing of pollutants. Wide forest reaches had more macroinvertebrates, total ecosystem processing of organic matter, and nitrogen uptake per unit channel length than contiguous narrow deforested reaches. Stream narrowing nullified any potential advantages of deforestation regarding abundance of fish, quality of dissolved organic matter, and pesticide degradation. These findings show that forested stream channels have a wider and more natural configuration, which significantly affects the total in-stream amount and activity of the ecosystem, including the processing of pollutants. The results reinforce both current policy of the United States that endorses riparian forest buffers as best management practice and federal and state programs that subsidize riparian reforestation for stream restoration and water quality. Not only do forest buffers prevent nonpoint source pollutants from entering small streams, they also enhance the in-stream processing of both nonpoint and point source pollutants, thereby reducing their impact on downstream rivers and estuaries.
机译:对北美东部16条河流的研究表明,河岸砍伐森林会导致河道狭窄,从而减少了每条河道长度的河道生境和生态系统的总量,并损害了河内污染物的处理。与连续的狭窄森林砍伐区相比,广阔的森林河段具有更多的大型无脊椎动物,生态系统对有机物的总处理量以及每单位通道长度的氮吸收量。溪流的缩小消除了森林砍伐在鱼类丰富,溶解有机物质量和农药降解方面的任何潜在优势。这些发现表明,森林河道具有更宽广,更自然的配置,这极大地影响了生态系统的总流入量和活动,包括污染物的处理。结果既强化了美国现行政策,认可沿岸森林缓冲带作为最佳管理实践,又加强了联邦和州计划,以补贴沿岸森林重新造林以恢复河流和水质。森林缓冲区不仅可以防止非点源污染物进入小溪流,还可以增强非点源和点源污染物的流内处理能力,从而减少其对下游河流和河口的影响。

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