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首页> 外文期刊>Current Organic Synthesis >Change in Soil Particle Size Distribution and Erodibility with Latitude and Vegetation Restoration Chronosequence on the Loess Plateau, China
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Change in Soil Particle Size Distribution and Erodibility with Latitude and Vegetation Restoration Chronosequence on the Loess Plateau, China

机译:土壤粒度分布与纬度与纬度和植被恢复慢性术的变化在黄土高原,中国

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摘要

Analyzing the dynamics of soil particle size distribution (PSD) and erodibility is important for understanding the changes of soil texture and quality after cropland abandonment. This study aimed to determine how restoration age and latitude affect soil erodibility and the multifractal dimensions of PSD during natural recovery. We collected soil samples from grassland, shrubland, and forests with different restoration ages in the steppe zone (SZ), forest-steppe zone (FSZ), and forest zone (FZ). Various analyses were conducted on the samples, including multifractal analysis and erodibility analysis. Our results showed that restoration age had no significant effect on the multifractal dimensions of PSD (capacity dimension (D0), information dimension (D1), information dimension/capacity dimension ratio (D1/D0), correlation dimension (D2)), and soil erodibility. Multifractal dimensions tended to increase, while soil erodibility tended to decrease, with restoration age. Latitude was negatively correlated with fractal dimensions (D0, D2) and positively correlated with K and D1/D0. During vegetation restoration, restoration age, precipitation, and temperature affect the development of vegetation, resulting in differences in soil organic carbon, total nitrogen, soil texture, and soil enzyme activity, and by affecting soil structure to change the soil stability. This study revealed the impact of restoration age and latitude on soil erosion in the Loess Plateau.
机译:分析土壤粒度分布(PSD)和蚀刻性的动态对于了解农田遗弃后土壤质地和质量的变化非常重要。本研究旨在确定恢复时代和纬度如何影响自然恢复过程中PSD的土壤易蚀和多术尺寸。我们在草原区(SZ),森林 - 草原区(FSZ)和森林区(FZ)中采用不同恢复年龄的草地,灌木丛和森林的土壤样本。在样品上进行各种分析,包括多重分析和易用分析。我们的研究结果表明,恢复时期对PSD的多分术尺寸没有显着影响(容量尺寸(D0),信息尺寸(D1),信息尺寸/容量尺寸(D1 / D0),相关尺寸(D2))和土壤蚀刻。多重术尺寸趋于增加,而土壤易用趋于降低,恢复时期。纬度与分形尺寸(D0,D2)呈负相关,并与K和D1 / D0呈正相关。在植被恢复期间,恢复时期,降水和温度影响植被的发展,导致土壤有机碳,总氮,土壤质地和土壤酶活性的差异,并通过影响土壤结构改变土壤稳定性。本研究揭示了恢复时代和纬度对黄土高原土壤侵蚀的影响。

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