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Soil Organic Carbon Increases in Semi-Arid Regions while it Decreases in Humid Regions Due to Woody-Plant Encroachment of Grasslands in South Africa

机译:由于南非草原上木本植物的侵占半干旱地区的土壤有机碳增加而潮湿地区的土壤有机碳减少

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摘要

Grasslands and savannas are experiencing intensive land-cover change due to woody plant encroachment. This change in land cover is thought to alter soil carbon (C) and nitrogen (N) storage in these ecosystems. Some studies have reported a negative correlation between soil C and N and mean annual precipitation while others have indicated that there is no relationship with mean annual precipitation. We quantified the changes in C and N pools and δ13C and δ15N values to a depth of 1 m in pairs of encroached and adjacent open grassland sites along a precipitation gradient from 300 mm to 1500 mm per annum in South Africa. Our study showed a negative correlation between changes in soil organic C stocks in the 0–100 cm soil layer and mean annual precipitation (MAP). The most humid site (1500 mm MAP) had less C in shrub-encroached sites while the drier sites (300–350 mm MAP) had more C than their paired open grasslands. This study generally showed soil organic C gains in low precipitation areas, with a threshold value between 750 mm and 900 mm. Our threshold value was higher than that found in North America, suggesting that one cannot extrapolate across continents.
机译:由于木本植物的侵占,草原和热带稀树草原正经历着密集的土地覆盖变化。人们认为,土地覆被的这种变化改变了这些生态系统中土壤碳(C)和氮(N)的储存量。一些研究报告了土壤碳和氮与年平均降水量之间的负相关,而另一些研究则表明与年平均降水量没有关系。我们在沿降水的侵蚀和邻近开放草地对对中,量化了C和N池以及δ 13 C和δ 15 N值的变化,深度为1μm南非的年梯度范围从300 mm到1500 mm。我们的研究表明,0-100cm土层中土壤有机碳储量的变化与年平均降水量(MAP)之间呈负相关。在灌木丛侵蚀的地区,最湿润的土壤(1500 mm MAP)的碳含量要低,而在干燥的地区(300-350 mm MAP)中的碳含量要高于配对的开阔草地。这项研究通常显示出低降水区土壤有机碳的增加,其阈值在750 mm至900 mm之间。我们的阈值高于北美的阈值,这表明无法在各大洲进行推断。

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