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切萨皮克湾流域模型中估算农业用地土壤磷流失的修订方法与结果

Revised Method and Outcomes for Estimating Soil Phosphorus Losses from Agricultural Land in the Chesapeake Bay Watershed Model.

作者信息

Mulkey Alisha Spears, Coale Frank J, Vadas Peter A, Shenk Gary W, Bhatt Gopal X

出版信息

J Environ Qual. 2017 Nov;46(6):1388-1394. doi: 10.2134/jeq2016.05.0201.

Abstract

Current restoration efforts for the Chesapeake Bay watershed mandate a timeline for reducing the load of nutrients and sediment into receiving waters. The Chesapeake Bay watershed model (WSM) has been used for two decades to simulate hydrology and nutrient and sediment transport; however, spatial limitations of the WSM preclude edge-of-field scale representation of phosphorus (P) losses. Rather, the WSM relies on literature-derived, county-scale rates of P loss (targets) for simulated land uses. An independent field-scale modeling tool, Annual Phosphorus Loss Estimator (APLE), was used as an alternative to the current WSM approach. Identical assumptions of county-level acreage, soil properties, nutrient management practices, and transport factors from the WSM were used as inputs to APLE. Incorporation of APLE P-loss estimates resulted in greater estimated total P loss and a revised spatial pattern of P loss compared with the WSM's original targets. Subsequently, APLE's revised estimates for P loss were substituted into the WSM and resulted in improved WSM calibration performance at up to 79% of tributary monitoring stations. The incorporation of APLE into the WSM will improve its ability to assess P loss and the impact of field management on Chesapeake Bay water quality.

摘要

目前对切萨皮克湾流域的修复工作规定了一个减少进入受纳水体的营养物质和沉积物负荷的时间表。切萨皮克湾流域模型(WSM)已被使用了二十年,用于模拟水文以及营养物质和沉积物的输送;然而,WSM的空间局限性使得无法在田间边缘尺度上表示磷(P)的流失情况。相反,WSM依赖于从文献中得出的、县尺度的磷流失率(目标值)来模拟土地利用情况。一种独立的田间尺度建模工具——年度磷流失估算器(APLE),被用作当前WSM方法的替代方案。将与WSM中相同的县级种植面积、土壤特性、养分管理措施和输送因子的假设用作APLE的输入。与WSM的原始目标值相比,纳入APLE的磷流失估算值后,总磷流失估算值更高,且磷流失的空间格局也有所改变。随后,将APLE修订后的磷流失估算值代入WSM,结果显示在多达79%的支流监测站,WSM的校准性能得到了改善。将APLE纳入WSM将提高其评估磷流失以及田间管理对切萨皮克湾水质影响的能力。

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