首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Soil organic matter as affected by the conversion of natural tropical rainforest to monoculture rubber plantations under acric ferralsols
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Soil organic matter as affected by the conversion of natural tropical rainforest to monoculture rubber plantations under acric ferralsols

机译:受Acric Ferralsols下天然热带雨林转换为单殖民橡胶种植园的土壤有机物

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摘要

Land-use change (LUC) in the tropics, such as the exponential rate of conversion of natural habitats into intense monocultures focusing on cash-crop cultivation, is a major causal factor of global environmental change. To understand the effects of LUC on soil organic matter (SOM) stability and the dynamics of C and N within SOM fractions, we measured the C and N content and delta C-13 and delta N-15 in fractions of different aggregate- and density-size of acric ferralsols in tropical rainforests and rubber plantations. The proportion of macroaggregates, heavy and light fractions significantly decreased after LUC. The results showed that, in general, conversion of tropical rainforest to rubber plantation significantly decreased the C and N content in bulk soil and the aggregate- and density-size to 20 cm soil depth. The decrease in C and N content in bulk soil was mainly driven by decreasing C and N associated with macroaggregates and light fractions, which accounted for > 50%. We found significant correlations among mean weight diameter, aggregate-, and density-size fractions C, N, and C/N ratios. The conversion of tropical rainforest to rubber plantation significantly enriched soil delta C-13 while depleting delta N-15. Enrichment of delta C-13 in rubber plantations could be explained by the mixing of old and fresh C. We conclude that, C and N dynamics within SOM fractions were greatly affected by LUC and the delta C-13 and delta N-15 signature confirms the changes in SOM stability after forest conversion. We suggest that planting intercrops within rubber monocultures may improve SOM accumulation, soil aggregation, and C and N sequestration.
机译:土地利用变化(LUC)在热带地区,例如自然栖息地转化为重点采用现金作物培养的强烈单一文献的指数率,是全球环境变革的主要因果因素。为了了解LUC对散热级分中C和N的稳定性(SOM)稳定性的影响,我们测量了不同聚集和密度的馏分中的C和N含量和Delta C-13和Delta N-15 - 在热带雨林和橡胶种植园中的Acric Ferralsols。在LUC后,大草原,重和光级分的比例显着降低。结果表明,一般而言,热带雨林转化为橡胶园的橡胶种植园显着降低了散装土壤中的C和N含量,并将其含量和密度尺寸为20厘米的土壤深度。散装土壤中的C和N含量的降低主要是通过与大甲筋和光级分相关的C和N的降低,其占> 50%。我们发现平均重量直径,骨料和密度尺寸分数C,N和C / N比之间的显着相关性。热带雨林转换为橡胶种植园显着富集土壤δC-13,同时耗尽三角洲N-15。橡胶种植园中的富集富集的富集C-13可以通过旧的和新鲜C的混合来解释。我们得出结论,SOM级分中的C和N动态受到LUC和DELTA C-13和DELTA N-15签名证实的影响森林转换后SOM稳定性的变化。我们建议种植橡胶单栽培中的跨越间隔可以改善SOM积聚,土壤聚集和C和N螯合。

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