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Evaluating the Impact of Legacy P and Agricultural Conservation Practices on Nutrient Loads from the Maumee River Watershed

机译:评估遗留磷和农业保护措施对莫米河流域营养负荷的影响

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摘要

The recent resurgence of hypoxia and harmful algal blooms in Lake Erie, driven substantially by phosphorus loads from agriculture, have led the United States and Canada to begin developing plans to meet new phosphorus load targets. To provide insight into which agricultural management options could help reach these targets, we tested alternative agricultural-land-use and land-management scenarios on phosphorus loads to Lake Erie. These scenarios highlight certain constraints on phosphorus load reductions from changes in the Maumee River Watershed (MRW), which contributes roughly half of the phosphorus load to the lake's western basin. We evaluate the effects on phosphorus loads under nutrient management strategies, reduction of fertilizer applications, employing vegetative buffers, and implementing widespread cover crops and alternative cropping changes. Results indicate that even if fertilizer application ceased, it may take years to see desired decreases in phosphorus loads, especially if we experience greater spring precipitation or snowmelt. Scenarios also indicate that widespread conversions to perennial crops that may be used for biofuel production are capable of substantially reducing phosphorus loads. This work demonstrates that a combination of legacy phosphorus, land management, land use, and climate should all be considered when seeking phosphorus-loading solutions.
机译:由于主要来自农业的磷负荷,最近伊利湖缺氧和有害藻华再次出现,这导致美国和加拿大开始制定计划以实现新的磷负荷目标。为了深入了解哪些农业管理方案可以帮助实现这些目标,我们测试了伊利湖磷负荷的其他农业土地利用和土地管理方案。这些情况突显了莫米河流域(MRW)的变化对磷负荷减少的某些限制,这导致该湖西部盆地的磷负荷约占一半。我们评估了在养分管理策略,减少肥料用量,使用营养缓冲剂以及实施广泛的覆盖作物和替代种植方式下对磷负荷的影响。结果表明,即使停止施用肥料,磷的负荷仍可能需要花费数年的时间才能减少,尤其是当我们遇到较大的春季降水或融雪时。情景还表明,可用于生物燃料生产的向多年生作物的广泛转化能够大大减少磷的负荷。这项工作表明,在寻求磷加载解决方案时,应综合考虑遗留磷,土地管理,土地利用和气候的问题。

著录项

  • 来源
    《Environmental Science & Technology》 |2016年第15期|8146-8154|共9页
  • 作者单位

    Graham Sustainability Institute, University of Michigan, 625 East Liberty Street, Suite 300, Ann Arbor, Michigan 48104, United States;

    Graham Sustainability Institute, University of Michigan, 625 East Liberty Street, Suite 300, Ann Arbor, Michigan 48104, United States,Department of Food, Agricultural and Biological Engineering, The Ohio State University, 590 Woody Hayes, Columbus, OH 43210;

    Graham Sustainability Institute, University of Michigan, 625 East Liberty Street, Suite 300, Ann Arbor, Michigan 48104, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 13:59:08

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