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Pronounced Increases in Future Soil Erosion and Sediment Deposition as Influenced by Freeze-Thaw Cycles in the Upper Mississippi River Basin

机译:未来的土壤侵蚀和沉积物沉积的发音增加,受到密西西比河流域的冻融循环的影响

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摘要

Soil erosion and sediment deposition are relevant to multiple important ecosystem services essential for natural and human systems. The present study aims to project future soil erosion and sediment deposition in the Upper Mississippi River Basin (UMRB) using climate projections by five Global Circulation Models (GCMs) under the Representative Concentrations Pathway (RCP) 8.5 scenario. To understand the importance of freeze-thaw cycles (FTCs) for soil erosion and sediment deposition estimation with climate change, this study compared two Soil and Water Assessment Tool (SWAT) models with different representations of the FTCs, with the standard SWAT using a simple regression method and SWAT-FT employing a physically based method. Modeling results show that future climate change can pronouncedly intensify soil erosion and increase sediment deposition, and the impacts are sensitive to how FTCs are represented in the model. The standard SWAT projected an increase in soil erosion by nearly 40% by the end of the 21st century, which is much lower than the projected over 65% increase in soil erosion by SWAT-FT. For sediment deposition, the projected percent changes by the standard SWAT and SWAT-FT also deviate from each other (i.e., about 70% by the standard SWAT vs about 120% by SWAT-FT). Overall, these results demonstrate the important roles of FTCs in projecting future soil erosion and sediment deposition and underline the need to consider the effects of conservation practices on FTCs to realistically assess the effectiveness of those measures.
机译:土壤侵蚀和沉积物沉积与自然和人类系统必不可少的多重重要生态系统服务相关。本研究旨在使用五个全局循环模型(GCMS)在代表性浓度途径(RCP)8.5场景下的气候预测在上层密西西比河流域(UMRB)中的未来土壤侵蚀和沉积物沉积。要了解冻融周期(FTCS)对土壤侵蚀和沉积物沉积估算的重要性,气候变化,该研究将两种土壤和水分评估工具(SWAT)模型与FTCS的不同表示相比,标准SWAT使用简单基于物理方法的回归方法和SWAT-FT。建模结果表明,未来的气候变化可以发明地强化土壤侵蚀并提高沉积物沉积,并且对模型中的FTCS如何敏感。在21世纪末,标准的SWAT预计土壤侵蚀的增加近40%,比SWAT-FT的土壤侵蚀增加远远低于65%。对于沉积物沉积,标准SWAT和SWAT-FT的预计百分比也彼此偏离(即,由标准SWAT约为120%的标准SWAT约为120%)。总体而言,这些结果表明了FTCS在预测未来土壤侵蚀和沉积物沉积方面的重要作用,强调需要考虑对FTCS对FTC的效果,以实际评估这些措施的有效性。

著录项

  • 来源
    《Environmental Science & Technology》 |2021年第14期|9905-9915|共11页
  • 作者单位

    Joint Global Change Research Institute Pacific Northwest National Laboratory and University of Maryland College Park Maryland 20740 United States;

    Earth System Science Interdisciplinary Center University of Maryland College Park College Park Maryland 20740 United States;

    Joint Global Change Research Institute Pacific Northwest National Laboratory and University of Maryland College Park Maryland 20740 United States;

    U.S. Environmental Protection Agency Washington District of Columbia 20460 United States;

    U.S. Environmental Protection Agency Washington District of Columbia 20460 United States;

    Joint Global Change Research Institute Pacific Northwest National Laboratory and University of Maryland College Park Maryland 20740 United States;

    Earth System Science Interdisciplinary Center University of Maryland College Park College Park Maryland 20740 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

    climate change; economic cost; soil erosion; global circulation model; watershed modeling;

    机译:气候变化;经济成本;水土流失;全球流通模型;流域造型;

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