首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >Modelling nitrogen transport and transformation in a transplanted rice field experiment with reduced irrigation
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Modelling nitrogen transport and transformation in a transplanted rice field experiment with reduced irrigation

机译:灌溉减少灌溉稻田实验中的氮传输和转化

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摘要

Application of water-saving irrigation technologies in transplanted rice (TPR) cultivation resulted in different soil water regimes compared to traditional flood irrigation and consequent diverse nitrogen transport and losses in paddy fields. In this study, nitrogen transport and transformations in a TPR field under multiple shallow irrigation (MSI) conditions in the Taihu Lake Basin of Eastern China were observed and simulated (Hydrus-1D model) during the 2008 and 2009 seasons based on a previous study. MSI controlled well the depth of floodwater and reduced nitrogen losses substantially through percolation and surface runoff, in particular during the 2008 season with relative less rainfall. Nitrogen balance analysis showed that both denitrification and NH3 volatilisation were the two major paths of nitrogen loss during the two seasons. Most nitrogen transformations occurred in top soil (0-40cm) during early-middle seasons. The overall nitrification and denitrification differed slightly between the two seasons but largely between soil depths, averagely 92.7% and 73.0% of respective total in a 120cm soil profile occurred in 0-40cm soil, respectively. MSI method coupled with deep applied fertiliser is recommended to substantially reduce nitrogen losses through surface runoff, percolation, and NH3 volatilisation in TPR fields.
机译:节水灌溉技术在移植稻(TPR)栽培中的应用与传统洪水灌溉相比,不同的土壤水分制度与随后稻田中的多样性氮气运输和损失相比。在本研究中,在2008年和2009年的2009年,在2008年和2009年赛季,在2008年和2009年赛季中,在2008年和2009年赛季中的多浅灌溉(MSI)条件下的氮气传输和转型在2008年和2009年的赛季。 MSI控制洪水深度,并通过渗透和表面径流的渗透和表面径流降低,特别是在2008季,降雨量相对降雨量。氮气平衡分析表明,脱氮和NH3挥发是两种季节中氮损失的两个主要路径。在早期的季节期间,大多数氮转化发生在顶部土壤(0-40厘米)中发生。两季之间的总体硝化和反硝化略有不同,但在土壤深度之间,平均值92.7%和73.0%的相应总量分别在0-40cm的土壤中发生。建议使用深层施肥的MSI方法加上TPR场中的表面径流,渗透和NH3挥发的氮气损失。

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