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Testing DNDC model for simulating soil respiration and assessing the effects of climate change on the CO_2 gas flux from Irish agriculture

机译:测试DNDC模型以模拟土壤呼吸并评估气候变化对爱尔兰农业产生的CO_2气体通量的影响

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摘要

Simulation models can be valuable to investigate potential effects of climate change on greenhouse gas emissions from terrestrial ecosystems. DNDC (the DeNitrification-DeComposition model) was tested against observed soil respiration data from adjacent pasture and arable fields in the Irish midlands. The arable field was converted from grassland approximately 50 years ago and managed since 2003 under two different tillage systems; conventional and reduced tillage. Both fields were located on the same soil type, classified as a free draining sandy loam soil derived from fluvial glacial gravels with low soil moisture holding capacity. Soil respiration measurements were made from January 2003 to August 2005. Three climate scenarios were investigated, a baseline of measured climatic data from a weather station at the field site, and high and low temperature sensitivity scenarios predicted by the Community Climate Change Consortium for Ireland (C41) based on the Hadley Centre Global Climate Model (HadCM3) and the Intergovernment Panel on Climate Change (IPCC) A1B emission scenario. The aims of this study were to use measured soil respiration rates to validate the DNDC model for estimating CO_2 efflux from these key Irish soils, investigate the effects of future climate change on CO_2 efflux and estimate the efflux uncertainties due to using different future climate projections. The results indicate that the DNDC model can reliably estimate soil respiration from the two fields examined. The model underestimated annual measured CO_2 efflux from the pasture by onlyl 3% (model efficiency: ME = 0.6; root mean square error: RMSE = 1.9 and mean absolute error: MAE = 6.3) and that from the arable conventional and reduced tillage by 9% (ME = 0.6; RMSE = 1.6 and MAE = 2.4) and 8% (ME = 0.23; RMSE = 1.8 and MAE = 2.9), respectively. Short-term land use change had no significant effects on CO_2 effluxes from soil. Using the high temperature sensitivity scenario, future C effluxes would increase by 15% for the pasture and 14 and 16% for the arable conventional and reduced tillage systems, respectively. However, under the low temperature sensitivity scenario, lower increases in the C efflux of 6% for the pasture and 5% for the arable field were predicted. The calculated annual CO_2 efflux uncertainties for using the high and low temperature sensitivity scenarios were 9% for the pasture and 8% for the arable field.
机译:模拟模型对于研究气候变化对陆地生态系统温室气体排放的潜在影响非常有价值。针对来自爱尔兰中部地区的邻近牧场和耕地的土壤呼吸数据,对DNDC(DeNitrification-DeComposition模型)进行了测试。耕地大约是50年前从草地改建而来的,自2003年以来一直在两种不同的耕作制度下进行管理。传统耕作和减少耕种。两个田地都位于相同的土壤类型上,被归类为来自河流冰川碎石的低排水性沙质壤土,土壤含水量低。从2003年1月至2005年8月进行了土壤呼吸测量。调查了三种气候情景,实地气象站测得的气候数据的基线以及爱尔兰社区气候变化联合会预测的高低温敏感性情景( C41)基于哈德利中心全球气候模型(HadCM3)和政府间气候变化专门委员会(IPCC)A1B排放情景。这项研究的目的是使用测得的土壤呼吸速率来验证DNDC模型,以估算这些关键爱尔兰土壤中的CO_2流出量,调查未来气候变化对CO_2流出量的影响,并估算由于使用不同的未来气候预测而导致的流出量不确定性。结果表明,DNDC模型可以可靠地估算两个被调查土壤的土壤呼吸。该模型低估了牧场每年测得的CO_2流出量仅3%(模型效率:ME = 0.6;均方根误差:RMSE = 1.9和平均绝对误差:MAE = 6.3),而常规耕作和耕作减少了9分别为%(ME = 0.6; RMSE = 1.6和MAE = 2.4)和8%(ME = 0.23; RMSE = 1.8和MAE = 2.9)。短期土地利用变化对土壤CO_2排放没有显着影响。使用高温敏感性方案,牧场中未来的C排放量将分别增加15%,而常规耕种和耕种减少的耕种将分别增加14%和16%。但是,在低温敏感性的情况下,预计牧场的C外流和耕地的C外流的增加较低,分别为6%和5%。使用高温和低温敏感性情景计算得出的年CO_2外排不确定性在牧场中为9%,在耕地中为8%。

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  • 来源
    《Global and planetary change》 |2011年第4期|p.106-115|共10页
  • 作者单位

    Department of Botany, School of Natural Sciences, Trinity College Dublin, Dublin 2, Ireland;

    rnDuchy College, Stoke Climsland, University of Plymouth Colleges, Callington, Cornwall, PL 17 8PB, UK;

    rnDepartment of Botany, School of Natural Sciences, Trinity College Dublin, Dublin 2, Ireland;

    rnOak Park Crops Research Centre, Teagasc, Co., Carlow, Ireland;

    rnDepartment of Botany, School of Natural Sciences, Trinity College Dublin, Dublin 2, Ireland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    soil respiration; spring barley; soil tillage; pasture; DNDC;

    机译:土壤呼吸大麦土壤耕作;牧场;DNDC;

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