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面向森林土壤碳储量和平衡的完整和协调评估:Yasso07 模型在欧洲广泛气候和森林条件梯度下的能力。

Towards complete and harmonized assessment of soil carbon stocks and balance in forests: The ability of the Yasso07 model across a wide gradient of climatic and forest conditions in Europe.

机构信息

INIA-CIFOR, Silviculture and Forest Management Department, Madrid, Spain.

Austrian Forest Research Center (BFW), Seckendorff GudentWeg 8, 1131 Vienna, Austria.

出版信息

Sci Total Environ. 2017 Dec 1;599-600:1171-1180. doi: 10.1016/j.scitotenv.2017.03.298. Epub 2017 May 13.

Abstract

Accurate carbon-balance accounting in forest soils is necessary for the development of climate change policy. However, changes in soil organic carbon (SOC) occur slowly and these changes may not be captured through repeated soil inventories. Simulation models may be used as alternatives to SOC measurement. The Yasso07 model presents a suitable alternative because most of the data required for the application are readily available in countries with common forest surveys. In this study, we test the suitability of Yasso07 for simulating SOC stocks and stock changes in a variety of European forests affected by different climatic, land use and forest management conditions and we address country-specific cases with differing resources and data availability. The simulated SOC stocks differed only slightly from measured data, providing realistic, reasonable mean SOC estimations per region or forest type. The change in the soil carbon pool over time, which is the target parameter for SOC reporting, was generally found to be plausible although not in the case of Mediterranean forest soils. As expected under stable forest management conditions, both land cover and climate play major roles in determining the SOC stock in forest soils. Greater mean SOC stocks were observed in northern latitudes (or at higher altitude) than in southern latitudes (or plains) and conifer forests were found to store a notably higher amount of SOC than broadleaf forests. Furthermore, as regards change in SOC, an inter-annual sink effect was identified for most of the European forest types studied. Our findings corroborate the suitability of Yasso07 to assess the impact of forest management and land use change on the SOC balance of forests soils, as well as to accurately simulate SOC in dead organic matter (DOM) and mineral soil pools separately. The obstacles encountered when applying the Yasso07 model reflect a lack of available input data. Future research should focus on improving our knowledge of C inputs from compartments such as shrubs, herbs, coarse woody debris and fine roots. This should include turnover rates and quality of the litter in all forest compartments from a wider variety of tree species and sites. Despite the limitations identified, the SOC balance estimations provided by the Yasso07 model are sufficiently complete, accurate and transparent to make it suitable for reporting purposes such as those required under the UNFCCC (United Nations Framework Convention on Climate Change) and KP (Kyoto Protocol) for a wide range of forest conditions in Europe.

摘要

准确的森林土壤碳平衡核算对于气候变化政策的制定是必要的。然而,土壤有机碳(SOC)的变化缓慢,这些变化可能无法通过重复的土壤清查来捕捉。模拟模型可以作为 SOC 测量的替代方法。Yasso07 模型是一个合适的替代方案,因为应用所需的大多数数据在具有常见森林调查的国家都很容易获得。在这项研究中,我们测试了 Yasso07 模拟各种受不同气候、土地利用和森林管理条件影响的欧洲森林的 SOC 储量和储量变化的适宜性,并解决了具有不同资源和数据可用性的特定国家的情况。模拟的 SOC 储量与实测数据仅略有差异,为每个地区或森林类型提供了现实、合理的平均 SOC 估计。随着时间的推移,土壤碳库的变化是 SOC 报告的目标参数,总体上被认为是合理的,尽管在地中海森林土壤中并非如此。在稳定的森林管理条件下,正如预期的那样,土地覆盖和气候在决定森林土壤中的 SOC 储量方面起着主要作用。在纬度较高(或海拔较高)的地区观察到较高的平均 SOC 储量,而在纬度较低(或平原)和针叶林地区观察到的 SOC 储量明显较高。此外,就 SOC 的变化而言,大多数研究的欧洲森林类型都存在年度间的汇效应。我们的发现证实了 Yasso07 适用于评估森林管理和土地利用变化对森林土壤 SOC 平衡的影响,以及准确模拟死有机物质(DOM)和矿物土壤库中 SOC 的单独变化。在应用 Yasso07 模型时遇到的障碍反映了可用输入数据的缺乏。未来的研究应侧重于提高我们对来自灌丛、草本、粗木质残体和细根等隔室的 C 输入的了解。这应包括来自更广泛的树种和地点的所有森林隔室的凋落物周转率和质量。尽管存在限制,Yasso07 模型提供的 SOC 平衡估计足够完整、准确和透明,使其适用于报告目的,例如《联合国气候变化框架公约》(UNFCCC)和《京都议定书》(KP)所要求的报告目的,适用于欧洲广泛的森林条件。

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