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在区域尺度上利用土地利用和气候情景进行动态土壤功能评估。

Dynamic soil functions assessment employing land use and climate scenarios at regional scale.

作者信息

Jost Elisabeth, Schönhart Martin, Skalský Rastislav, Balkovič Juraj, Schmid Erwin, Mitter Hermine

机构信息

University of Natural Resources and Life Sciences, Feistmantelstraße 4, 1180, Wien, Austria.

University of Natural Resources and Life Sciences, Feistmantelstraße 4, 1180, Wien, Austria.

出版信息

J Environ Manage. 2021 Jun 1;287:112318. doi: 10.1016/j.jenvman.2021.112318. Epub 2021 Mar 16.

Abstract

Soils as key component of terrestrial ecosystems are under increasing pressures. As an advance to current static assessments, we present a dynamic soil functions assessment (SFA) to evaluate the current and future state of soils regarding their nutrient storage, water regulation, productivity, habitat and carbon sequestration functions for the case-study region in the Lower Austrian Mostviertel. Carbon response functions simulating the development of regional soil organic carbon (SOC) stocks until 2100 are used to couple established indicator-based SFA methodology with two climate and three land use scenarios, i.e. land sparing (LSP), land sharing (LSH), and balanced land use (LBA). Results reveal a dominant impact of land use scenarios on soil functions compared to the impact from climate scenarios and highlight the close link between SOC development and the quality of investigated soil functions, i.e. soil functionality. The soil habitat and soil carbon sequestration functions on investigated agricultural land are positively affected by maintenance of grassland under LSH (20% of the case-study region), where SOC stocks show a steady and continuous increase. By 2100 however, total regional SOC stocks are higher under LSP compared to LSH or LBA, due to extensive afforestation. The presented approach may improve integrative decision-making in land use planning processes. It bridges superordinate goals of sustainable development, such as climate change mitigation, with land use actions taken at local or regional scales. The dynamic SFA broadens the debate on LSH and LSP and can reduce trade-offs between soil functions through land use planning processes.

摘要

土壤作为陆地生态系统的关键组成部分,正面临着越来越大的压力。作为对当前静态评估的一种推进,我们提出了一种动态土壤功能评估(SFA)方法,以评估奥地利下奥地利州莫斯特维特尔案例研究区域土壤在养分储存、水分调节、生产力、栖息地和碳固存功能方面的当前和未来状态。利用模拟到2100年区域土壤有机碳(SOC)储量变化的碳响应函数,将基于指标的既定SFA方法与两种气候情景和三种土地利用情景相结合,即土地节约(LSP)、土地共享(LSH)和平衡土地利用(LBA)。结果表明,与气候情景的影响相比,土地利用情景对土壤功能具有主导影响,并突出了SOC发展与所研究土壤功能质量(即土壤功能度)之间的紧密联系。在土地共享情景(占案例研究区域的20%)下,草地的维持对所研究农田的土壤栖息地和土壤碳固存功能产生了积极影响,其中SOC储量呈现稳定且持续的增加。然而,到2100年,由于大规模造林,与土地共享或平衡土地利用情景相比,土地节约情景下的区域SOC总储量更高。所提出的方法可能会改善土地利用规划过程中的综合决策。它将可持续发展的上级目标,如缓解气候变化,与地方或区域层面采取的土地利用行动联系起来。动态SFA拓宽了关于土地共享和土地节约的讨论范围,并可以通过土地利用规划过程减少土壤功能之间的权衡。

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