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首页> 外文期刊>Environmental Modeling & Assessment >Using Geographically Isolated Loading Scenarios to Analyze Nitrogen and Phosphorus Exchanges and Explore Tailored Nutrient Control Strategies for Efficient Management
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Using Geographically Isolated Loading Scenarios to Analyze Nitrogen and Phosphorus Exchanges and Explore Tailored Nutrient Control Strategies for Efficient Management

机译:使用地理隔离的加载方案分析氮和磷交换,并探索量身定制的营养控制策略,以进行有效管理

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摘要

A set of geographically isolated differential nitrogen (N) and phosphorus (P) load model scenarios from major Chesapeake basins provides information on the relative impact of nutrient loads on primary production and dissolved oxygen in the Chesapeake Bay. Model results show the relationships of deep water dissolved oxygen with nutrient limitation-related algal blooms, organic carbon loads from the watershed, estuarine circulation, nutrient cycling, and nutrient diagenesis. The combined effect of changes in load from multiple basins is additive for changes in both chlorophyll-a and deep water dissolved oxygen concentrations. Management of both N and P are required in the Chesapeake watershed and tidal waters to achieve water quality standards, but overall efficiencies could be gained with strategies that place greater emphasis on P control in the upper Bay and greater emphasis on N control in the lower Bay. The areas of the Bay with the highest degree of dissolved oxygen degradation that generally drive management decisions are mostly P-limited and are significantly influenced by the load from the upper Bay's basins. Reducing P from the upper Bay's basins will intensify P limitation and would allow an increase in N of about six times the weight of P reduction. Combining the relative nutrient reduction effectiveness with the relative control cost information could improve management efficiency and provide benefits at a lower cost. This article describes initial steps that can be taken to examine the benefits from N-P exchanges.
机译:一组来自切萨皮克主要盆地的地理上不同的差分氮(N)和磷(P)负荷模型方案,提供了有关切萨皮克湾养分负荷对初级生产和溶解氧的相对影响的信息。模型结果表明,深水溶解氧与养分限制相关的藻华,分水岭的有机碳负荷,河口环流,养分循环和养分成岩的关系。来自多个盆地的负荷变化的综合影响是叶绿素-a和深水溶解氧浓度变化的叠加。切萨皮克河集水区和潮汐水域都需要对氮和磷进行管理,以达到水质标准,但是通过更加注重上海湾的磷控制和下海湾的氮控制的策略,可以提高整体效率。 。通常决定管理决策的溶解氧降解程度最高的海湾地区大部分是P限制的,并且受到上海湾盆地的负荷的显着影响。从上海湾盆地减少P会加剧P限制,并使N增加约P减少重量的六倍。将相对养分减少的有效性与相对控制成本信息相结合可以提高管理效率,并以较低的成本提供收益。本文介绍了可以用来检查N-P交换的好处的初始步骤。

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