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评估劳伦琴大湖盆地瓦管排水流域减少养分负荷的最佳管理实践:文献综述

Evaluating best management practices for nutrient load reductions in tile-drained watersheds of the Laurentian Great Lakes Basin: A literature review.

作者信息

Bodrud-Doza Md, Yang Wanhong, Liu Yongbo, Yerubandi Ram, Daggupati Prasad, DeVries Ben, Fraser Evan D G

机构信息

Department of Geography Environment and Geomatics, University of Guelph, Guelph, Ontario N1G 2W1, Canada.

Department of Geography Environment and Geomatics, University of Guelph, Guelph, Ontario N1G 2W1, Canada; Watershed Hydrology and Ecology Research Division, Environment and Climate Change Canada, 867 Lakeshore Rd, Burlington, ON L7S 1A1, Canada.

出版信息

Sci Total Environ. 2025 Feb 15;965:178657. doi: 10.1016/j.scitotenv.2025.178657. Epub 2025 Jan 31.

Abstract

Tile drainage systems are extensively implemented across the Laurentian Great Lakes Basin (GLB) to enhance agricultural productivity on poorly drained soils. However, these systems substantially contribute to excess nutrient runoff, particularly phosphorus (P) and nitrogen (N), exacerbating eutrophication and harmful algal blooms in the Great Lakes. This literature review synthesized current knowledge on nutrient loadings from tile-drained agricultural watersheds and evaluated the effectiveness of various agricultural best management practices (BMPs) in mitigating nutrient losses in the GLB. Through a meta-synthesis of field and watershed scale monitoring and modeling studies and statistical analysis using Box-Whisker plots and Monte Carlo simulations, we assessed the nutrient reduction potential of representative BMPs, including cover cropping, nutrient management, controlled drainage, and constructed wetlands in tile-drained landscapes. Findings indicated that individual BMPs substantially reduced nutrient loadings, but the effectiveness of these BMPs depended on site-specific factors, including climate conditions, soil type, and drainage system design. Integrated approaches at field, edge-of-field, and watershed scales with a combination of multiple BMPs enhanced nutrient reduction benefits, aligning with regional water quality targets. The review also highlighted the challenges of climate change that may undermine BMP performance by altering precipitation patterns and increasing extreme weather events. To address these complexities, we proposed a framework for developing adaptive BMP scenarios tailored to specific watershed conditions, emphasizing the need for long-term monitoring and hydrologic model enhancements. This framework was designed to help policymakers, stakeholders, and farmers protect water quality and balance agricultural productivity in the GLB and similar agricultural regions globally.

摘要

瓦管排水系统在劳伦琴大湖流域(GLB)广泛应用,以提高排水不良土壤上的农业生产力。然而,这些系统极大地导致了养分径流过剩,尤其是磷(P)和氮(N),加剧了大湖的富营养化和有害藻华。本文献综述综合了当前关于瓦管排水农业流域养分负荷的知识,并评估了各种农业最佳管理实践(BMPs)在减轻GLB养分流失方面的有效性。通过对田间和流域尺度监测与建模研究的综合分析以及使用箱线图和蒙特卡洛模拟的统计分析,我们评估了代表性BMPs(包括覆盖作物种植、养分管理、控制排水和在瓦管排水景观中建设湿地)的养分减排潜力。研究结果表明,单个BMPs能大幅减少养分负荷,但这些BMPs的有效性取决于特定地点的因素,包括气候条件、土壤类型和排水系统设计。在田间、田边和流域尺度采用多种BMPs相结合的综合方法可增强养分减排效益,符合区域水质目标。该综述还强调了气候变化带来的挑战,气候变化可能通过改变降水模式和增加极端天气事件来削弱BMPs的性能。为应对这些复杂性,我们提出了一个针对特定流域条件制定适应性BMPs情景的框架,强调了长期监测和水文模型改进的必要性。该框架旨在帮助政策制定者、利益相关者和农民保护GLB及全球类似农业地区的水质并平衡农业生产力。

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