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首页> 外文期刊>ScientificWorldJournal >Effects of Soil Temperature, Flooding, and Organic Matter Addition on N2O Emissions from a Soil of Hongze Lake Wetland, China
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Effects of Soil Temperature, Flooding, and Organic Matter Addition on N2O Emissions from a Soil of Hongze Lake Wetland, China

机译:土壤温度,洪水和有机物质的影响对中国红杉湖湿地土壤N2O排放的影响

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The objectives of this study were to test the effects of soil temperature, flooding, and raw organic matter input on N2O emissions in a soil sampled at Hongze Lake wetland, Jiangsu Province, China. The treatments studied were—peat soil (I), peat soil under flooding (II), peat soil plus raw organic matter (III), and peat soil under flooding plus organic matter. These four treatments were incubated at 20°C and 35°C. The result showed that temperature increase could enhance N2O emissions rate and cumulative emissions significantly; moreover, the flooded soil with external organic matter inputs showed the lowest cumulative rise in N2O emissions due to temperature increment. Flooding might inhibit soil N2O emissions, and the inhibition was more pronounced after organic matter addition to the original soil. Conversely, organic matter input explained lower cumulative N2O emissions under flooding. Our results suggest that complex interactions between flooding and other environmental factors might appear in soil N2O emissions. Further studies are needed to understand potential synergies or antagonisms between environmental factors that control N2O emissions in wetland soils.
机译:本研究的目的是测试土壤温度,洪水和生物有机物质对江苏省江苏省洪泽湖湿地的土壤中N2O排放的影响。研究的治疗方法是泥炭土壤(I),泥炭土壤(II),泥炭土加原料物质(III),泛滥加上有机物质下的泥炭土壤。将这四种处理在20℃和35℃下孵育。结果表明,温度升高可提高N2O排放率和累积排放量大;此外,由于温度增量,具有外部有机物质输入的洪水土壤显示出N2O排放量的最低累积升高。洪水可能会抑制土壤N2O排放,并且在原始土壤的有机物外抑制更明显。相反,有机物输入解释了洪水下累积的N2O排放。我们的研究结果表明,洪水与其他环境因素之间的复杂相互作用可能出现在土壤N2O排放中。需要进一步的研究来了解控制湿地土壤中N2O排放的环境因素之间的潜在协同作用或对抗。

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