首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >Cropland age from grassland conversion to cropland affects nitrous oxide emissions
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Cropland age from grassland conversion to cropland affects nitrous oxide emissions

机译:从草地转变为农田的耕地年龄影响一氧化二氮的排放

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The effects of soil properties and cropland age on atmospheric nitrous oxide (N2O) emissions following the conversion of grassland to cropland in temperate grassland ecosystems are uncertain. In this study, N2O emissions were compared among grassland and cropland soils in the agro-pastoral ecotone of Inner Mongolia over three growing seasons. Four adjacent sites with different land-use histories were selected, including grassland and croplands cultivated for 5, 10, and 50 years after conversion. N2O flux measurements were obtained using a closed-chamber method and were performed continuously during vegetation periods. After the conversion of grassland to cropland, N2O emission initially decreased and thereafter increased in the study sites. The cumulative N2O emissions of the cropland soils 5 and 10 years in age were 10-50% less than those of the grassland, and the N2O emissions from the cropland soil 50 years in age were 10-30% greater than the grassland. When the seasonal emissions were correlated against single soil parameter, the key soil parameter that affected N2O emissions over the entire growing season was the soil moisture content. When the interactions among soil parameters were considered, the amount of N2O emissions could be quantitatively described by a linear combination of two soil variables, the soil ammonium nitrogen (NH4+-N) and moisture concentrations. This study demonstrates how the time of land use conversion from grassland to cropland can positively or negatively affect N2O emission.
机译:在温带草原生态系统中由草地转变为农田后,土壤性质和耕地年龄对大气中一氧化二氮(N2O)排放的影响尚不确定。在本研究中,比较了内蒙古农牧交错带三个生长季节的草地和农田土壤中的N2O排放。选择了四个具有不同土地利用历史的相邻地点,包括转换后分别种植5年,10年和50年的草地和农田。 N2O通量的测量是使用封闭腔室方法获得的,并且在植被期连续进行。草地转化为农田后,研究地点的N2O排放量开始减少,随后增加。 5和10岁年龄的农田土壤的累积N2O排放量比草地少10-50%,50岁年龄农田的土壤N2O排放量比草地高10-30%。当季节性排放与单个土壤参数相关时,在整个生长季节中影响N2O排放的关键土壤参数是土壤含水量。当考虑土壤参数之间的相互作用时,可以通过土壤铵态氮(NH4 + -N)和水分浓度这两个土壤变量的线性组合来定量描述N2O排放量。这项研究表明,从草地到农田的土地利用转化时间可以对N2O排放产生正面或负面影响。

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