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Tree biomass and soil carbon stocks in indigenous forests in comparison to plantations of exotic species in the Taita Hills of Kenya.

机译:与肯尼亚泰塔山(Taita Hills)的外来物种种植相比,土著森林的树木生物量和土壤碳储量。

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Carbon (C) densities of the tree biomass and soil (0–50 cm) in indigenous forest and plantations of eucalyptus, cypress and pine in the Taita Hills, Kenya were determined and compared. The cypress and pine plantations were about 30-years-old and eucalyptus plantations about 50-years-old. Biomass C densities were estimated from breast height diameter and wood density using allometric functions developed for tropical species and an assumed C content of 50%. Belowground biomass C densities were estimated using root:shoot biomass ratios. Soil organic C (SOC) densities were calculated from measured organic carbon contents (0–20 and 20–50 cm layers) and modelled bulk density values. Mean total biomass C and SOC densities for indigenous forest were greater than those of the plantations, and the difference was significant (p?
机译:确定并比较了肯尼亚泰塔山的土著森林和桉树,柏树和松树人工林中树木生物量和土壤(0-50厘米)的碳(C)密度。柏树和松树人工林约有30年的历史,桉树人工林约有50年的历史。使用为热带物种开发的异度函数,并假设C含量为50%,根据胸高直径和木材密度估算生物量C密度。地下生物量碳的密度使用根:茎生物量比率估算。土壤有机碳(SOC)的密度是根据测得的有机碳含量(0–20和20–50 cm层)和模拟的堆积密度值计算得出的。柏树,松树生物量和松树SOC的平均总生物量碳和SOC密度大于人工林,差异显着(p <0.05)。在土著森林中,生物量碳与SOC密度之间的相关性几乎是显着的,但呈负相关。生物量碳的密度与年平均降水量,年平均温度或潜在的蒸散量没有显着相关,但是松树的生物量碳的密度与实际的蒸散量显着相关。 SOC密度与平均年降水量比生物质C密度更紧密相关,但在松树中只有如此。生物量碳和SOC密度均与土壤中植物的可用水分容量无关。土著森林的SOC密度与土壤黏土含量显着相关,但呈负相关。与30到50年的外来人工林相比,土著森林的生物量和土壤中的C含量更高,但是目前尚不清楚这是否是本地森林和外来人工林之间的内在差异,还是因为种植园中SOC的水平不足以清除原始土著森林后恢复。

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