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农业土地利用的粒度措施在宏观尺度上对湖泊氮、磷的影响不同。

Granular measures of agricultural land use influence lake nitrogen and phosphorus differently at macroscales.

机构信息

Department of Fisheries and Wildlife, Michigan State University, 480 Wilson Road, East Lansing, Michigan, 48824, USA.

School of Business, State University of New York College at Geneseo, 1 College Circle, Geneseo, New York, 14454, USA.

出版信息

Ecol Appl. 2020 Dec;30(8):e02187. doi: 10.1002/eap.2187. Epub 2020 Jul 15.

Abstract

Agricultural land use is typically associated with high stream nutrient concentrations and increased nutrient loading to lakes. For lakes, evidence for these associations mostly comes from studies on individual lakes or watersheds that relate concentrations of nitrogen (N) or phosphorus (P) to aggregate measures of agricultural land use, such as the proportion of land used for agriculture in a lake's watershed. However, at macroscales (i.e., in hundreds to thousands of lakes across large spatial extents), there is high variability around such relationships and it is unclear whether considering more granular (or detailed) agricultural data, such as fertilizer application, planting of specific crops, or the extent of near-stream cropping, would improve prediction and inform understanding of lake nutrient drivers. Furthermore, it is unclear whether lake N and P would have different relationships to such measures and whether these relationships would vary by region, since regional variation has been observed in prior studies using aggregate measures of agriculture. To address these knowledge gaps, we examined relationships between granular measures of agricultural activity and lake total phosphorus (TP) and total nitrogen (TN) concentrations in 928 lakes and their watersheds in the Northeastern and Midwest U.S. using a Bayesian hierarchical modeling approach. We found that both lake TN and TP concentrations were related to these measures of agriculture, especially near-stream agriculture. The relationships between measures of agriculture and lake TN concentrations were more regionally variable than those for TP. Conversely, TP concentrations were more strongly related to lake-specific measures like depth and watershed hydrology relative to TN. Our finding that lake TN and TP concentrations have different relationships with granular measures of agricultural activity has implications for the design of effective and efficient policy approaches to maintain and improve water quality.

摘要

农业土地利用通常与溪流中高浓度养分和增加的养分负荷到湖泊有关。对于湖泊,这些关联的证据主要来自于对个别湖泊或流域的研究,这些研究将氮(N)或磷(P)浓度与农业土地利用的综合措施相关联,例如湖泊流域中用于农业的土地比例。然而,在宏观尺度上(即在大范围的数千个湖泊中),这些关系存在很大的可变性,并且不清楚考虑更细粒度(或详细)的农业数据,如施肥、特定作物的种植或近溪流作物的范围,是否会改善预测并有助于理解湖泊养分驱动因素。此外,不清楚湖泊 N 和 P 是否与这些措施有不同的关系,以及这些关系是否会因地区而异,因为在前瞻性研究中,使用农业的综合措施已经观察到了地区差异。为了弥补这些知识空白,我们使用贝叶斯分层建模方法,在美国东北部和中西部的 928 个湖泊及其流域中,检查了农业活动的细粒度措施与湖泊总磷(TP)和总氮(TN)浓度之间的关系。我们发现,湖泊 TN 和 TP 浓度都与这些农业措施有关,尤其是近溪流农业。农业措施与湖泊 TN 浓度之间的关系比 TP 更具区域性变化。相反,TP 浓度与湖泊特定的措施(如深度和流域水文)的关系比 TN 更密切。我们发现,湖泊 TN 和 TP 浓度与细粒度农业活动措施的关系不同,这对设计有效和高效的政策方法以维持和改善水质具有重要意义。

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