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Modeling N transformation and removal in a duckweed pond: Model development and calibration

机译:浮萍池塘中氮转化和去除的模型:模型开发和校准

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Based on the dynamics of total ammoniacal N (N-am), nitrateitrite (N-ox) and organic nitrogen contained in sediment (N-sed), in water (N-org), and in hydrophyte pools (N-algae + N-dw), respectively, a mathematical model was developed to predict N transformation processes in duckweed ponds. The availability and the sensibility of the transformation model were investigated correspondingly The results showed that the transformation model could exactly simulate the annual variations of N,m, Nox, Nsed, Nalgae, and Ndw in a duckweed pond with the correlation coefficient ranging from 0.71 to 0.89. However, the simulated values of Norg were much lower than, the measured values in windy winter, resulting in the correlation coefficient between them only being 0.61. Sensitivity analysis revealed that the model was a stable simulation system except the variable of N-dw. Further research should concentrate on a better understanding of the N transformation in duckweed, so as to make the model a more comprehensive and predictive tool. (c) 2007 Elsevier B.V. All rights reserved.
机译:基于沉积物(N-sed),水(N-org)和水生植物库(N-藻类)中总氨氮(N-am),硝酸盐/亚硝酸盐(N-ox)和有机氮的动态+ N-dw),分别建立了数学模型来预测浮萍池塘中N的转化过程。相应地研究了该转化模型的有效性和敏感性。结果表明,该转化模型可以准确模拟浮萍塘中N,m,Nox,Nsed,Nalgae和Ndw的年变化,相关系数在0.71至1.02之间。 0.89。但是,Norg的模拟值比有风冬季的测量值低得多,因此它们之间的相关系数仅为0.61。敏感性分析表明,除N-dw变量外,该模型是一个稳定的仿真系统。进一步的研究应集中在对浮萍中氮的转化的更好理解上,从而使该模型成为更全面和更具预测性的工具。 (c)2007 Elsevier B.V.保留所有权利。

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