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Estimating soil organic and aboveground woody carbon stock in a protected dry Miombo ecosystem, Zimbabwe: Landsat 8 OLI data applications

机译:Zimbabwe中估算土壤有机和地上的木质碳碳储量,津巴布韦:Landsat 8 OLI数据应用

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Accurate and reliable soil organic carbon stock estimation is critical in understanding forest role to regional carbon cycles. So far, the total carbon pool in dry Miombo ecosystems is often under-estimated. In that regard this study sought to model the relationship between the aboveground woody carbon pool and the soil carbon pool, using both ground-based and remote sensing methods. To achieve this objective, the Ratio Vegetation Index (RVI), Normalized Difference Vegetation Index (NDVI), and the Soil Adjusted Vegetation Index (SAVI) computed from the newly launched Landsat 8 OLI satellite data were used. Correlation and regression analysis were used to relate Soil Organic Carbon (S.O.C), aboveground woody carbon and remotely sensed vegetation indices. Results showed a soil organic carbon in the upper soil layer (0-15 cm) was positively correlated with aboveground woody carbon and this relationship was significant (r = 0.678; P 0.05) aboveground carbon. However, there were no significant correlations (r = -0.11, P 0.05) between SOC in the deeper soil layer (15-30 cm) and aboveground woody carbon. These findings imply that (relationship between aboveground woody carbon and S.O.C) aboveground woody carbon stocks can be used as a proxy to estimate S.O.C in the top soil layer (0-15 cm) in dry Miombo ecosystems. Overall, these findings underscore the potential and significance of remote sensing data in understanding savanna ecosystems contribution to the global carbon cycle.
机译:准确可靠的土壤有机碳储备估计对于了解森林角色对区域碳循环至关重要。到目前为止,经常估计干燥的Mioombo生态系统中的总碳池。在这方面,这项研究试图使用地面和遥感方法模拟地上木质碳池和土壤碳池之间的关系。为实现这一目标,使用与新推出的Landsat 8 Oli卫星数据计算的比率植被指数(RVI),归一化差异植被指数(NDVI)和土壤调整后的植被指数(SAVI)。相关性和回归分析用于涉及土壤有机碳(S.O.C),地上的木质碳和远程感测的植被指数。结果表明上层土壤层(0-15cm)中的土壤有机碳与地上的木质碳呈正相关,这种关系显着(r = 0.678; p <0.05)。然而,在深层土壤层(15-30厘米)和地上木质碳中,SoC之间没有显着的相关性(R = -0.11,p& 0.05)。这些发现意味着(地上木质碳和S.O.C之间的关系)地上木质碳股票可以用作估计干燥MioMbo生态系统的顶部土壤层(0-15厘米)中的S.O.C。总体而言,这些发现强调了遥感数据在了解大草原生态系统对全球碳循环的贡献中的潜在和意义。

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