首页> 外文期刊>Canadian Journal of Soil Science >Nitrous oxide emissions as affected by liquid and solid pig manures applied to annual and perennial forage crops on a sandy loam soil
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Nitrous oxide emissions as affected by liquid and solid pig manures applied to annual and perennial forage crops on a sandy loam soil

机译:受液态和固态猪粪肥料影响的一氧化二氮排放量,用于沙质壤土上的一年生和多年生饲草作物

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摘要

Emissions of nitrous oxide (N2O-N) from manure applied to annual crop (AC) and perennial forage (PF) are poorly quantified for the Canadian Prairie Region. This study used static chambers over two growing seasons to assess soil N2O-N emissions from solid pig manure (SPM) and liquid pig manure (LPM) in AC and PF systems on a sandy loam soil. In 2011, when manure application coincided with hot and wet soil conditions, both manure treatments in AC induced N2O-N emission episodes a week later. In the PF, however, only LPM resulted in an N2O-N emission peak after 8 d. In 2012, manure application did not coincide with hot and wet soil conditions, and emission rates were smaller. Overall, the effect of manure type was inconsistent. In 2011, cumulative emissions in AC from LPM and SPM were 5.8 and 7.8 kg N2O-N ha(-1), respectively, and in PF were 10.7 and 0.6 kg N2O-N ha(-1), respectively. In 2012, cumulative emissions were 1 kg N2O-N ha(-1), except LPM in PF. In 2011, LPMhad significantly higher emission factor (EF approximate to 7%) than SPM (= 0.2%) in both AC and PF, whereas in 2012 manure type had no effect on EF (approximate to 0). Over the two growing seasons and across manure types, EF did not differ between AC and PF. These results suggest that SPM would reduce N2O-N emission relative to LPM when conditions favor intense denitrification.
机译:对于加拿大大草原地区,施用于一年生作物(AC)和多年生牧草(PF)的粪便中的一氧化二氮(N2O-N)排放量很少。这项研究使用了两个生长季节的静态室来评估砂壤土上AC和PF系统中固态猪粪(SPM)和液态猪粪(LPM)的土壤N2O-N排放。 2011年,当施肥与湿热土壤条件相吻合时,一周后在AC诱导的N2O-N排放事件中同时施以两种肥料。但是,在PF中,只有LPM在8 d后导致N2O-N发射峰。 2012年,施肥与湿热土壤条件不符,排放量较小。总体而言,肥料类型的影响不一致。 2011年,LPM和SPM在AC中的累积排放分别为5.8和7.8 kg N2O-N ha(-1),在PF中分别为10.7和0.6 kg N2O-N ha(-1)。 2012年,除PF中的LPM外,累积排放量<1 kg N2O-N ha(-1)。在2011年,AC和PF的LPM排放因子(EF约7%)显着高于SPM(<= 0.2%),而在2012年,粪便类型对EF无影响(约0)。在两个生长季节和不同肥料类型中,AC和PF之间的EF无差异。这些结果表明,当条件有利于强力反硝化时,相对于LPM,SPM可以减少N2O-N排放。

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