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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Soil organic carbon storage as a key function of soils - A review of drivers and indicators at various scales
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Soil organic carbon storage as a key function of soils - A review of drivers and indicators at various scales

机译:土壤有机碳储存作为土壤的关键功能 - 对各种尺度的司机和指标评论

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摘要

The capacity of soils to store organic carbon represents a key function of soils that is not only decisive for climate regulation but also affects other soil functions. Recent efforts to assess the impact of land management on soil functionality proposed that an indicator- or proxy-based approach is a promising alternative to quantify soil functions compared to time- and cost-intensive measurements, particularly when larger regions are targeted. The objective of this review is to identify measurable biotic or abiotic properties that control soil organic carbon (SOC) storage at different spatial scales and could serve as indicators for an efficient quantification of SOC. These indicators should enable both an estimation of actual SOC storage as well as a prediction of the SOC storage potential, which is an important aspect in land use and management planning. There are many environmental conditions that affect SOC storage at different spatial scales. We provide a thorough overview of factors from micro-scales (particles to pedons) to the global scale and discuss their suitability as indicators for SOC storage: clay mineralogy, specific surface area, metal oxides, Ca and Mg cations, microorganisms, soil fauna, aggregation, texture, soil type, natural vegetation, land use and management, topography, parent material and climate. As a result, we propose a set of indicators that allow for time- and cost-efficient estimates of actual and potential SOC storage from the local to the regional and subcontinental scale. As a key element, the fine mineral fraction was identified to determine SOC stabilization in most soils. The quantification of SOC can be further refined by including climatic proxies, particularly elevation, as well as information on land use, soil management and vegetation characteristics. To enhance its indicative power towards land management effects, further "functional soil characteristics", particularly soil structural properties and changes in the soil microbial biomass pool should be included in this indicator system. The proposed system offers the potential to efficiently estimate the SOC storage capacity by means of simplified measures, such as soil fractionation procedures or infrared spectroscopic approaches.
机译:储存有机碳的土壤容量代表了土壤的关键功能,这不仅对气候调节的决定性,而且影响了其他土壤功能。最近努力评估土地管理对土壤功能的影响提议,指标或基于代理的方法是与时间和成本密集的测量相比量化土壤功能的有希望的替代方案,特别是当较大的区域靶向时。本综述的目的是鉴定可测量的生物或非生物学,可控制不同空间尺度的土壤有机碳(SOC)储存,并且可以用作有效量化SOC的指标。这些指标应启用实际SOC存储的估计以及对SOC存储潜力的预测,这是土地利用和管理计划中的一个重要方面。存在许多环境条件,这些条件会影响不同的空间尺度。我们彻底概述了从微鳞(粒子到PEDONS)到全球规模的因素的概述,并讨论了它们作为SOC储存指标的适用性:粘土矿物学,特定表面积,金属氧化物,CA和MG阳离子,微生物,土壤动物,土壤聚集,质地,土壤类型,天然植被,土地利用和管理,地形,母体材料和气候。因此,我们提出了一系列指标,允许从本地到区域和亚洲大学规模的实际和潜在SoC存储的时间和成本高效估算。作为关键元件,鉴定细矿物部分以确定大多数土壤中的SoC稳定。 SoC的量化可以通过包括气候代理,特别是高度,以及有关土地利用,土壤管理和植被特征的信息来进一步改进。为了提高其指示力朝着土地管理效应,进一步的“功能土特征”,特别是土壤结构性能和土壤微生物测量池的变化应包括在该指示系统中。所提出的系统提供了通过简化的措施有效地估计SOC存储能力,例如土壤分馏程序或红外光谱方法。

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