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The influence of floodplain restoration on stream ecosystem function in an agricultural landscape.

机译:洪泛区恢复对农业景观中河流生态系统功能的影响。

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摘要

xcess nitrogen (N) causes numerous water quality problems, including drinking water contamination, eutrophication, and loss of biodiversity. In the agricultural Midwest, the source of excess N is largely row crop agriculture, in which artificial drainage and N fertilizer additions facilitate the rapid movement of N from fields to downstream water bodies. One potential way to mitigate N pollution, while maintaining crop yields, is through two-stage ditch restoration, where floodplains are excavated adjacent to incised agricultural channels. During storm events, water flows onto the floodplains, spreads out, and slows down. My dissertation research examined the influence of the two-stage ditch on ecosystem function, including denitrification and whole-stream metabolism. I also assessed habitat constraints on the endangered clubshell mussel ( Pleurobema clava), and evaluated the influence of plants on wetland denitrification.;I found that floodplain restoration increased reach-scale denitrification by increasing the time and space over which denitrification can occur. Denitrification rates increased over the course of a floodplain inundation event, and the presence of vegetation enhanced floodplain denitrification rates. In addition, gross primary production increased during storm events, although ecosystem respiration and assimilatory N uptake remained unchanged. I also compared the two-stage ditch to other N removal practices and found that wetlands are the most cost-effective practice (in
机译:过量氮(N)会引起许多水质问题,包括饮用水污染,富营养化和生物多样性丧失。在中西部的农业中,过量的氮源主要来自行作农业,其中人工排水和氮肥的添加促进了氮从田地到下游水体的快速移动。在保持作物产量的同时,减轻氮污染的一种潜在方法是通过两阶段沟渠修复,在该沟渠附近切开的农业渠道开挖洪泛区。在暴风雨期间,水流到泛滥平原,扩散并减速。我的论文研究考察了两步沟对生态系统功能的影响,包括反硝化作用和全流代谢。我还评估了濒临灭绝的贝类贻贝(Pleurobema clava)上的栖息地限制,并评估了植物对湿地反硝化的影响。我发现洪泛区恢复通过增加发生反硝化的时间和空间来增加规模反硝化作用。在洪泛区淹没过程中,反硝化率增加,植被的存在增加了洪泛区的反硝化率。此外,尽管生态系统呼吸和同化氮的吸收保持不变,但暴风雨期间初级生产总值增加了。我还比较了两阶段沟渠与其他N去除做法,发现湿地是最具成本效益的做法(在

著录项

  • 作者

    Roley, Sarah S.;

  • 作者单位

    University of Notre Dame.;

  • 授予单位 University of Notre Dame.;
  • 学科 Biology Ecology.;Biology Limnology.;Water Resource Management.;Agriculture Wildlife Management.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 306 p.
  • 总页数 306
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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