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首页> 外文期刊>Mathematical research letters: MRL >Quantitatively ranking the influencing factors of ammonia volatilization from paddy soils by grey relational entropy
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Quantitatively ranking the influencing factors of ammonia volatilization from paddy soils by grey relational entropy

机译:用灰色关系熵定量排名水稻土氨挥发的影响因素

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Ammonia (NH3) volatilization from paddy soils is a main source of atmospheric NH3 and the magnitude is affected by many factors. Because of the complex field condition, it is difficult to identify the relative importance of individual factor on NH3 volatilization process in different locations and at different times. In this study, the grey relational entropy method was used to evaluate the relative impact of four main factors (i.e., nitrogen fertilizer application rate, NH4-N concentration, pH, and temperature of the floodwater) on NH3 volatilization loss from three different field experiments. The results demonstrated that floodwater NH4-N concentration was the most important factor governing NH3 volatilization process. Floodwater pH was the second most important factor, followed by temperature of the floodwater and nitrogen fertilizer application rate. We further validated the grey relational entropy method with NH3 volatilization loss data from other published study and confirmed the order of importance for the four factors. We hope the findings of this study will be helpful for guiding design to reduce paddy soil NH3 emission.
机译:来自水稻土的氨(NH3)挥发是大气NH3的主要来源,其幅度受到许多因素的影响。由于近场条件,难以识别各个因素对不同位置和不同时间的单个因素对NH3挥发过程的相对重要性。在这项研究中,灰色关系熵方法用于评估四种主要因素(即氮肥施用率,NH4-N浓度,pH和温水的NH4-N浓度,pH和温度)对来自三种不同场实验的NH3挥发损失的相对影响。结果表明,洪水NH4-N浓度是NH3挥发过程中最重要的因素。洪水pH是第二个最重要的因素,其次是洪水温度和氮肥施用率。我们进一步验证了来自其他公布研究的NH3挥发损失数据的灰色关系熵方法,并确认了四个因素的重要性。我们希望这项研究的结果将有助于引导设计以减少水稻土NH3排放。

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