首页> 外文期刊>Geoderma: An International Journal of Soil Science >Nitrogen mineralization in paddy soils of the Taihu Region of China under anaerobic conditions: dynamics and model fitting
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Nitrogen mineralization in paddy soils of the Taihu Region of China under anaerobic conditions: dynamics and model fitting

机译:厌氧条件下中国太湖地区稻田土壤氮素矿化:动力学与模型拟合

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摘要

The processes and characteristics of nitrogen mineralization in paddy soils of the Taihu Region of China were studied with 120-day anaerobic incubation at 25 and 35 degreesC. Results showed that the organic nitrogen mineralized ranged from 4.0% to 9.4% of total N (60-241 mg kg(-1)) and that the mineral N was only correlated with total N (partial correlation analysis). The pH changed greatly and was related to the mineral nitrogen contents during mineralization. Temperature was one of the main factors influencing the mineralization of nitrogen. Four models, (1) effective cumulated temperature model; (2) a one-component, first-order exponential model (one-pool model); (3) a two-component, first-order exponential model (two-pool model); and (4) a two-component, mixed first- and zero-order exponential model including a constant term (special model), were fitted to the observed mineral N vs. incubation days using a non-linear regression procedure. The exponential models were significantly better than the effective cumulated temperature model, and the two-pool model and the special model gave the best fits among the four models. The special model was the unique one that could appropriately reflect the responses of organic nitrogen mineralization to incubation temperature in all studied paddy soils. All results showed that the special model made a better prediction of nitrogen mineralization under flooded conditions than the other models.
机译:通过在25和35℃下进行120天厌氧培养,研究了中国太湖地区稻田土壤氮矿化的过程和特征。结果表明,有机氮矿化量占总氮的60%至241 mg kg(-1)的4.0%至9.4%,而矿质氮仅与总氮相关(偏相关分析)。在矿化过程中,pH值变化很大,与矿质氮含量有关。温度是影响氮矿化的主要因素之一。四种模型,(1)有效累积温度模型; (2)单成分一阶指数模型(单池模型); (3)两分量一阶指数模型(两池模型); (4)使用非线性回归程序,将包含常数项的两成分混合一阶和零阶指数模型(特殊模型)拟合到观察到的矿物质氮对潜伏天数。指数模型明显优于有效累积温度模型,并且两个模型和特殊模型在四个模型中具有最佳拟合。这种特殊的模型是唯一可以适当反映所有研究稻田土壤中有机氮矿化对培养温度的响应的模型。所有结果表明,该特殊模型比其他模型更好地预测了淹水条件下的氮矿化。

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