首页> 外文期刊>Earth System Science Data >A new dataset of soil carbon and nitrogen stocks and profiles from an instrumented Greenlandic fen designed to evaluate land-surface models
【24h】

A new dataset of soil carbon and nitrogen stocks and profiles from an instrumented Greenlandic fen designed to evaluate land-surface models

机译:来自仪表绿色芬的土壤碳和氮肥和型材的新数据集,旨在评估陆地型号

获取原文
       

摘要

Arctic and boreal peatlands play a major role in the global carbon (C) cycle. They are particularly efficient at sequestering carbon because their high water content limits decomposition rates to levels below their net primary productivity. Their future in a climate-change context is quite uncertain in terms of carbon emissions and carbon sequestration. Nuuk fen is a well-instrumented Greenlandic fen with monitoring of soil physical variables and greenhouse gas fluxes (CH4 and CO2) and is of particular interest for testing and validating land-surface models. But knowledge of soil carbon stocks and profiles is missing. This is a crucial shortcoming for a complete evaluation of models, as soil carbon is one of the primary drivers of CH4 and CO2 soil emissions. To address this issue, we measured, for the first time, soil carbon and nitrogen density, profiles and stocks in the Nuuk peatland (64°07′51′′ N, 51°23′10′′ W), colocated with the greenhouse gas measurements. Measurements were made along two transects, 60 and 90 m long and with a horizontal resolution of 5 m and a vertical resolution of 5 to 10 cm, using a 4 cm diameter gouge auger. A total of 135 soil samples were analyzed. Soil carbon density varied between 6.2 and 160.2 kg C m?3 with a mean value of 50.2 kg C m?3. Mean soil nitrogen density was 2.37 kg N m?3. Mean soil carbon and nitrogen stocks are 36.3 kg C m?2 and 1.7 kg N m?2. These new data are in the range of those encountered in other arctic peatlands. This new dataset, one of very few in Greenland, can contribute to further development of joint modeling of greenhouse gas emissions and soil carbon and nitrogen in land-surface models. The dataset is open-access and available at https://doi.org/10.1594/PANGAEA.909899 (Morel et?al.,?2019b).
机译:北极和北极泥炭地在全球碳(C)周期中发挥着重要作用。它们在螯合碳中特别有效,因为它们的高含水量限制了分解率降至其净初级生产率的水平。在气候变化环境中的未来在碳排放和碳封存方面非常不确定。 Nuuk Fen是一种良好的绿色芬,具有监测土壤物理变量和温室气体通量(CH4和CO2),对测试和验证土地面模型特别令人兴趣。但缺少了土壤碳储备和概况的知识。这是一项对模型完全评估的至关重要的缺点,因为土壤碳是CH4和CO2土壤排放的主要驱动因素之一。为了解决这个问题,我们首次测量了Nuuk Peatland(64°07'51'N,51°23'10''W)中的土壤碳和氮密度,曲线和股票,与温室共同气体测量。使用4cm直径直径的凿螺旋钻,沿两个横断波,60和90μm长,水平分辨率和5至10cm的垂直分辨率进行测量。分析了总共135种土壤样品。土壤碳密度在6.2和160.2kg C m 2之间变化,平均值为50.2kg Cm≤3。平均土壤氮密度为2.37kg n m?3。平均土壤碳和氮肥为36.3千克C m 2和1.7 kg n m?2。这些新数据位于其他北极泥炭地遇到的那些范围内。这个新的数据集是格陵兰岛很少的数据集可以有助于进一步发展陆地模型中温室气体排放和土壤碳和氮的联合建模。数据集是开放式访问,可在https://doi.org/10.1594/pangaea.909899(莫雷尔et?al。,?2019b)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号