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Long-term intensive management increased carbon occluded in phytolith (PhytOC) in bamboo forest soils

机译:长期的集约经营增加了竹林土壤中植硅体(PhytOC)的碳吸附

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Carbon (C) occluded in phytolith (PhytOC) is highly stable at millennium scale and its accumulation in soils can help increase long-term C sequestration. Here, we report that soil PhytOC storage significantly increased with increasing duration under intensive management (mulching and fertilization) in Lei bamboo ( Phyllostachys praecox ) plantations. The PhytOC storage in 0–40?cm soil layer in bamboo plantations increased by 217?Mg C ha?1, 20 years after being converted from paddy fields. The PhytOC accumulated at 79?kg C ha?1 yr?1, a rate far exceeding the global mean long-term soil C accumulation rate of 24?kg C ha?1 yr?1 reported in the literature. Approximately 86% of the increased PhytOC came from the large amount of mulch applied. Our data clearly demonstrate the decadal scale management effect on PhytOC accumulation, suggesting that heavy mulching is a potential method for increasing long-term organic C storage in soils for mitigating global climate change.
机译:植硅体(PhytOC)中所含的碳(C)在千年规模上非常稳定,其在土壤中的积累可帮助增加长期的碳固存。在这里,我们报告说,雷竹(Phyllostachys praecox)人工林在集约经营(覆盖和施肥)下,随着时间的延长,土壤PhytOC的储存量显着增加。从水田转化后的20年,竹林中0–40?cm土壤层的PhytOC贮藏量增加了217?Mg C ha ?1 。 PhytOC的累积量为79?kg C ha ?1 yr ?1 ,远远超过了全球长期平均土壤C累积量24?kg C ha <文献中报道了sup>?1 yr ?1 。增加的PhytOC约有86%来自大量的覆盖物。我们的数据清楚地表明了十年尺度的管理对PhytOC积累的影响,表明重覆盖是增加土壤中长期有机碳储存以缓解全球气候变化的一种潜在方法。

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