首页> 外文期刊>Water, Air, and Soil Pollution >ELM, AN ESTUARINE NITROGEN LOADING MODEL: FORMULATION AND VERIFICATION OF PREDICTED CONCENTRATIONS OF DISSOLVED INORGANIC NITROGEN
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ELM, AN ESTUARINE NITROGEN LOADING MODEL: FORMULATION AND VERIFICATION OF PREDICTED CONCENTRATIONS OF DISSOLVED INORGANIC NITROGEN

机译:ELM,一种天然的氮素加载模型:溶解的无机氮的预期浓度的公式和验证

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摘要

ELM is an Estuarine Loading Model that calculates mean annual concentration of dissolved inorganic nitrogen (DIN) available to producers in shallow estuaries by considering how different processes modify pools of nitrogen provided by inputs (streams, groundwater flow, atmospheric deposition, N_2 fixation, and regeneration), and losses (burial and denitrification), within components of the estuarine system (bare sediments, seagrass meadows, salt marshes, water column). ELM also considers the effect of flushing rate within an estuary. Its formulation was constrained to minimize demands of data needed to run the model. In spite of simplifications such as the use of loss coefficients instead of functional formulations of processes, and uncertainties in all the terms included in ELM, predictions of mean annual DIN in water were not significantly different than field measurements done in estuaries in Cape Cod, Massachusetts, subject to different rates of nitrogen (N) loading. This verification suggests that, in spite of its simple formulation, ELM captures the functioning of nutrient dynamics within estuaries. ELM may therefore be a reasonable tool for use in basic studies in nutrient dynamics and land/estuary coupling. Because of its simplicity and comprehensiveness in inclusion of components and processes, ELM may also be useful in efforts to manage N loads to estuaries and related management issues.
机译:ELM是一个河口负荷模型,它通过考虑不同过程如何修改输入(河流,地下水流量,大气沉积,N_2固着和再生)提供的氮池,来计算浅河口生产者可获得的溶解无机氮(DIN)的平均年浓度。 )和损失(埋葬和反硝化作用)在河口系统的各个组成部分(裸露的沉积物,海草草甸,盐沼,水柱)内发生。 ELM还考虑了河口内冲洗率的影响。它的表述受约束以最小化运行模型所需的数据需求。尽管使用了诸如使用损耗系数代替过程的函数公式之类的简化方法,以及ELM中所有术语的不确定性,但对水中平均年DIN的预测与在马萨诸塞州科德角的河口进行的野外测量并没有显着差异,但要承受不同的氮(N)加载速率。该验证表明,尽管其配方简单,但ELM仍能捕获河口内营养动态的功能。因此,ELM可能是用于营养动力学和土地/河口耦合基础研究的合理工具。由于包含组件和过程的简便性和全面性,ELM在管理河口的N个负载和相关管理问题方面也可能很有用。

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