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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Reforestation and soil recovery in a Mediterranean mountain environment: Insights into historical geomorphic and vegetation dynamics in the Sila Massif, Calabria, southern Italy
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Reforestation and soil recovery in a Mediterranean mountain environment: Insights into historical geomorphic and vegetation dynamics in the Sila Massif, Calabria, southern Italy

机译:地中海环境中的重新造林和土壤恢复:塞拉姆,卡拉布里亚,南部萨拉米特史史观和植被动态的见解

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We investigated the genesis and local response of soils in mountain sites of the Sila Massif (Calabria, southern Italy), reforested ca. 60 years ago, and their relationships with geomorphic dynamics and forest stand structure. A multidisciplinary approach is proposed, focused on an often neglected soil profile scale and horizon-wise sampling strategy, and including pedological field observations, physical, chemical, mineralogical analyses, isotope geochemistry including fallout radionuclides (Cs-137 and Pb-210(ex)), geomorphology, historical documentation of anthropogenic land cover changes, forestry and dendrometric measurements. Reforestation was carried out following extreme land degradation, which took place after forest clearance and field cultivation. Different tree species and soil preparation techniques were used according to site conditions. We focused on the main properties of selected soil profiles and the distribution of some radionuclides, in order to understand the effects of forest stands on hampering soil erosion and promoting novel soil formation, and to evaluate the potential hazard of natural gamma radiation. A comparison with soil profiles developed under naturally regenerated forest and field crops was achieved. The soil profiles in reforested sites showed a poor degree of development and a complex history of reworking processes alternated with soil-formation processes, in line with modern to historical radiocarbon dates increasing downprofile, the presence of buried horizons and Cs-137 in the topsoils. Inventory changes obtained for Pb-210(ex) and Cs-137 highlight a process of soil stabilization occurred after reforestation, with more efficient effects under Calabrian pine than oak forest, whereas major geomorphic dynamics (erosion and accumulation) were triggered by forest coppicing, thinning and agricultural practices. Our data remark a positive response of the soil ecosystem to reforestation against erosion, trapping mobile material, stabilizing buried soils, promoting humus accumulation leading to new shallow topsoils, and the protective role of forests against anthropogenic and climatic-induced threats. Average values of the annual outdoor effective dose equivalents of gamma-emitting radionuclides calculated for all the soil horizons showed lower values than the population-weighted world's average, with the exception of the soil profiles under forest stands developed on granite, exceeding this threshold. A deeper comprehension of soil genesis, geomorphic processes, land use and vegetation dynamics in vulnerable ecosystems such as mountain environments represents a fundamental basis for sustainable land management policies.
机译:我们调查了Sila Massif(Calabria,Italy)的山区土壤的成因和局部反应,Reforested Ca. 60年前,他们与地貌动态和森林立场结构的关系。提出了一种多学科方法,专注于经常被忽视的土壤剖面规模和地平线 - 明智的采样策略,包括小学田间观察,物理,化学,矿物学分析,同位素地球化学,包括辐射放射性核素(CS-137和PB-210(前) ),地貌,人为陆地覆盖变化,林业和树枝状积的历史记录。在森林清关和野外培养之后发生了重新造林。根据现场条件使用不同的树种和土壤制备技术。我们专注于所选土壤谱的主要性质和一些放射性核素的分布,以了解森林的影响妨碍土壤侵蚀和促进新型土壤形成,并评估天然伽玛辐射的潜在危害。实现了与天然再生森林和田间作物下发生的土壤剖面的比较。 Reforested网站中的土壤谱表现出较差的发展程度差,并与土壤形成过程交替的重新加工工艺的复杂历史,符合现代化的历史无线电碳日期,日期下降,埋地的视野和CS-137在表土中的存在。为PB-210(EX)和CS-137获得的库存变化突出了重新造林后发生的土壤稳定过程,在Calabrian Pine下的效果比橡树林更有效,而主要的地貌动态(侵蚀和积累)被森林凋脱落引发,变薄和农业实践。我们的数据备注土壤生态系统对侵蚀侵蚀,捕获移动材料,稳定埋藏土壤的积极反应,促进腐殖群体积累,导致新浅层表土,以及森林对人为和气候引起的威胁的保护作用。对于所有土壤视野计算的γ发射放射性核素的年户外有效剂量等同物的平均值显示出比人口加权世界平均值更低的值,除了花岗岩中的林部型材下的土壤曲线,超过此阈值。诸如山地环境等脆弱的生态系统中的土壤创世纪,地貌过程,土地利用和植被动力学的深入理解是可持续土地管理政策的基础基础。

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