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Soil carbon and nitrogen changes under a long period of sugarcane monoculture in the semi-arid East African Rift Valley, Ethiopia

机译:埃塞俄比亚半干旱东非大裂谷的长期甘蔗单一栽培下土壤碳和氮变化

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Sugarcane cultivation has been practiced over decades in a semi-arid area of the Ethiopian Rift Valley. This study evaluated the effect of sugarcane cultivation on soil C and N storages. We measured the differences in soil C and N along chronosequence fields. We estimated soil C and N losses associated with land conversion and the rate of changes over time. Results indicated that the soil C accumulation was lower under sugarcane field but slowly approached to never tilled (NT) condition. Land conversion resulted in soil C initial losses predicted to 37 Mg C ha(-1) or 58%, which recovered with a net change of 0.35 Mg C ha(-1) yr(-1) or 0.29% yr(-1). Under the current management practices, the loss in soil C is projected to require a century to reach the sugarcane pre-establishment levels. Land conversion induced soil total nitrogen (TN) initial losses estimated to be 113 kg N ha(-1). However, the predicted net change in soil TN as a function of time appeared to be insignificant. Sugarcane as a direct replacement of native vegetation triggered losses in soil C levels. Yet, sugarcane cultivation as land use option established on marginal lands can have a great potential for soil carbon sequestration. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在埃塞俄比亚裂谷的半干旱地区,甘蔗种植已进行了数十年。这项研究评估了甘蔗栽培对土壤碳氮储藏的影响。我们测量了土壤C和N在时间序列上的差异。我们估算了与土地转化相关的土壤碳和氮损失以及随时间变化的速率。结果表明,甘蔗田土壤碳素积累量较低,但逐渐趋向于免耕(NT)状态。土地转化导致土壤C的初始损失预计为37 Mg C ha(-1)或58%,此损失的净变化为0.35 Mg C ha(-1)yr(-1)或0.29%yr(-1) 。根据目前的管理实践,土壤碳的流失预计需要一个世纪才能达到甘蔗种植前的水平。土地转化引起的土壤总氮(TN)初始损失估计为113 kg N ha(-1)。但是,预计土壤TN随时间的净变化似乎并不重要。甘蔗作为天然植被的直接替代物引发了土壤碳水平的损失。然而,将甘蔗种植作为在边际土地上建立的土地利用选择,对土壤碳固存具有巨大潜力。 (C)2016 Elsevier Ltd.保留所有权利。

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