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Quantifying the Effects of Green Waste Compost Application, Water Content and Nitrogen Fertilization on Nitrous Oxide Emissions in 10 Agricultural Soils

机译:量化绿色垃圾堆肥的施用,水含量和氮肥对10种农业土壤中一氧化二氮排放的影响

摘要

Common management practices, such as the application of green waste compost, soil moisture manipulation, and nitrogen fertilization, affect nitrous oxide (N2O) emissions from agricultural soils. To expand our understanding of how soils interact with these controls, we studied their effects in 10 agricultural soils. Application of compost slightly increased N2O emissions in soils with low initial levels of inorganic N and low background emission. For soils in which compost caused a decrease in emission, this decrease was larger than any of the observed increases in the other soils. The five most important factors driving emission across all soils, in order of increasing importance, were native dissolved organic carbon (DOC), treatment-induced change in DOC, native inorganic N, change in pH, and soil iron (Fe). Notable was the prominence of Fe as a regulator of N2O emission. In general, compost is a viable amendment, considering the agronomic benefits it provides against the risk of producing a small increase in N2O emissions. However, if soil properties and conditions are taken into account, management can recognize the potential effect of compost and thereby reduce N2O emissions from susceptible soils, particularly by avoiding application of compost under wet conditions and together with ammonium fertilizer.
机译:常见的管理实践,例如绿色废物堆肥的应用,土壤湿度的处理和氮肥的施用,都会影响农业土壤中的一氧化二氮(N2O)排放。为了扩展我们对土壤与这些控件之间相互作用的理解,我们研究了它们在10种农业土壤中的作用。在无机氮的初始含量低且背景排放低的土壤中,堆肥的应用略微增加了N2O排放。对于堆肥导致排放量减少的土壤,这种减少幅度大于其他土壤中观察到的任何增加。按重要性增加的顺序,驱动所有土壤排放的五个最重要因素是天然溶解有机碳(DOC),处理引起的DOC变化,天然无机氮,pH值变化和土壤铁(Fe)。值得注意的是,Fe成为N2O排放的调节剂。总的来说,考虑到堆肥在农业上带来的好处,可以防止N2O排放量小幅增加,这是一种可行的改良方法。但是,如果考虑到土壤的性质和条件,管理层可以认识到堆肥的潜在影响,从而减少易感土壤的N2O排放,特别是避免在潮湿条件下与铵肥一起施用堆肥。

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