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首页> 外文期刊>The Science of the Total Environment >Modeling nitrous oxide emissions from three United Kingdom farms following application of farmyard manure and green compost
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Modeling nitrous oxide emissions from three United Kingdom farms following application of farmyard manure and green compost

机译:应用农家肥和绿色堆肥模拟了三个英国农场的一氧化二氮排放量

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Organic fertilizers, such as manure and compost, are promising additions for synthetic fertilizers in order to increase soil fertility and crop yields. However, the organic fertilizers applied to soils may increase nitrous oxide (N2O, a greenhouse gas) emissions due to their lower C/N ratios, and therefore potentially contribute to global warming. Very few studies have used process-based models to assess the environmental advantages and drawbacks of compost soil amendments compared to other field treatments. In this study, the UK-DNDC model was modified for simulation of nitrous oxide (N2O) fluxes emitted from the soils treated with green compost and farmyard manure at three UK farms (WE, PW and NW): one winter wheat and two grasslands. The results show that the annual overall N2O emissions were 1.45 kg N ha-1 y-1 for WE treated with farmyard manure, 0.71 for WE with green compost, 1.09910 for PW treated with farmyard manure, 0.94 for PW treated with green compost, 1.19 for NW treated with farmyard manure, and 1.18 for NW treated with green compost. A two dimensional linear model was developed to correlate nitrogen loading and soil pH for calculations of emissions and emission factors (EFs). The linear model could fit the emissions obtained from the UK-DNDC model well. The squares of correlation coefficients of the emissions between two models are 0.993 and 0.985 for farmyard manure and green compost, respectively. Analysis of correlation coefficients between N2O emissions and air temperature, precipitation as well as the time period between fertilizer application and sample measurement (PFS) for the three sites treated with farmyard manure and compost indicated that N2O emissions were mainly related to PFS. The modified DNDC model provides an approach to estimating N2O emissions from compost amended soils.
机译:有机肥料(例如肥料和堆肥)有望成为合成肥料的添加剂,以提高土壤肥力和农作物产量。但是,由于有机肥料的C / N值较低,可能会增加一氧化二氮(N2O,一种温室气体)的排放,因此可能导致全球变暖。与其他田间处理相比,很少有研究使用基于过程的模型来评估堆肥土壤改良剂的环境优缺点。在这项研究中,修改了UK-DNDC模型,以模拟在三个英国农场(WE,PW和NW)用绿色堆肥和农田肥料处理过的土壤中排放的一氧化二氮(N2O)通量:一个冬小麦和两个草原。结果表明,农用粪便处理WE的年总N2O排放量为1.45 kg N ha-1 y-1,绿色堆肥处理的WE为0.71,农用粪便处理的PW为1.09910,绿堆肥处理的PW为0.94,1.19 NW用农家肥处理,NW 1.18用绿色堆肥处理。建立了一个二维线性模型来关联氮负荷和土壤pH,以计算排放量和排放因子(EFs)。线性模型可以很好地拟合从UK-DNDC模型获得的排放。两种模型之间的排放量相关系数的平方分别为:粪肥和绿色堆肥分别为0.993和0.985。对三处农家肥和堆肥处理场地的N2O排放量与气温,降水量以及施肥和样品测量(PFS)之间的时间之间的相关系数的分析表明,N2O排放量主要与PFS有关。改进的DNDC模型提供了一种估算堆肥改良土壤中N2O排放的方法。

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