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Projections of changes in grassland soil organic carbon under climate change are relatively insensitive to methods of model initialization

机译:气候变化下草地土壤有机碳变化的预测对模型初始化方法相对不敏感

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Model initialization in soil organic carbon (SOC) turnover models has often been described as a crucial step in making future projections. Model initialization by the spin-up of pools of SOC (model equilibrium run) has been questioned, because equilibrium has to be assumed. Measured SOC pools are independent of model assumptions and are thought to reflect better real site conditions. It has been suggested that model initialization with measured SOC fractions could provide an advantage over model spin-up of SOC pools. In this study we tested this suggestion in relatively undisturbed native grasslands in Australia. We tested the Rothamsted SOC turnover model (RothC) under climate change at 12 sites with three different initialization methods, viz. model initialization with (i) spin-up of model pools with inert organic matter (IOM) pool size calculated from a regression equation, (ii) spin-up of model pools with measured IOM and (iii) all pools estimated from measured fractions. Averaged over the sites and initialization methods, maximum absolute variations (absolute differences in projected SOC stocks expressed as a percentage of initial 2008 SOC stocks) as well as averaged absolute variations throughout the projection period were very small (2.2 and 1.6%, respectively). Averaged across the sites, there were no significant differences in projected grassland SOC stocks under climate change after 93 years of simulation with model initialization by different methods and averaged absolute variation was only 1.6% across initialization methods. These findings suggest that in a relatively undisturbed land-use system such as native grassland, projections of SOC under climate change are relatively insensitive to the model initialization method.
机译:土壤有机碳(SOC)周转模型中的模型初始化通常被描述为做出未来预测的关键步骤。由于必须假设平衡,因此对通过SOC池旋转(模型平衡运行)进行的模型初始化提出了质疑。测得的SOC池独立于模型假设,并被认为反映了更好的实际工况。有人提出,用测得的SOC分数进行模型初始化可以提供优于SOC池模型旋转的优势。在这项研究中,我们在澳大利亚相对不受干扰的原生草地上测试了这一建议。我们使用三种不同的初始化方法在12个站点上测试了气候变化下的Rothamsted SOC营业额模型(RothC)。通过以下方式进行模型初始化:(i)通过回归方程计算出具有惰性有机物(IOM)库大小的模型库的旋转,(ii)具有测量的IOM的模型库的旋转,以及(iii)根据测量分数估算的所有库。根据站点和初始化方法的平均值,最大绝对变化(预计的SOC存量的绝对差异表示为2008年初始SOC存量的百分比)以及整个预测期内的平均绝对变化都非常小(分别为2.2%和1.6%)。在用不同方法进行模型初始化的93年模拟之后,气候变化下的草地SOC预估存量在不同地点进行平均后,并没有显着差异,并且初始化方法之间的平均绝对变化仅为1.6%。这些发现表明,在相对不受干扰的土地利用系统(例如原生草地)中,气候变化下SOC的预测对模型初始化方法相对不敏感。

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