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Substantial labile carbon stocks and microbial activity in deeply weathered soils below a tropical wet forest

机译:热带湿润林下深风化土壤中大量不稳定的碳储量和微生物活性

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Contrary to large areas in Amazonia of tropical moist forests with a pronounced dry season, tropical wet forests in Costa Rica do not depend on deep roots to maintain an evergreen forest canopy through the year. At our Costa Rican tropical wet forest sites, we found a large carbon stock in the subsoil of deeply weathered Oxisols, even though only 0.04-0.2% of the measured root biomass (>2 mm diameter) to 3 m depth was below 2 m. In addition, we demonstrate that 20% or more of this deep soil carbon (depending on soil type) can be mobilized after forest clearing for pasture establishment. Microbial activity between 0.3 and 3 m depth contributed about 50% to the microbial activity in these soils, confirming the importance of the subsoil in C cycling. Depending on soil type, forest clearing for pasture establishment led from no change to a slight addition of carbon in the topsoil (0-0.3 m depth). However, this effect was countered by a substantial loss of C stocks in the subsoil (1-3 m depth). Our results show that large stocks of relatively labile carbon are not limited to areas with a prolonged dry season, but can also be found in deeply weathered soils below tropical wet forests. Forest clearing in such areas may produce unexpectedly high C losses from the subsoil. [References: 36]
机译:与亚马逊地区大面积的热带湿润森林和明显的干旱季节相反,哥斯达黎加的热带湿润森林不依赖深根来维持常年森林冠层。在哥斯达黎加的热带湿润森林中,即使在3 m深度的被测根生物量(直径大于2 mm)中只有0.04-0.2%在2 m以下,我们仍在深风化的Oxisols的土壤中发现了大量的碳储量。此外,我们证明在森林开垦后可以动员20%或更多的这种深层土壤碳(取决于土壤类型)来建立牧场。深度在0.3至3 m之间的微生物活动占这些土壤中微生物活动的50%,这证实了地下土壤在碳循环中的重要性。根据土壤类型的不同,用于牧场建设的森林砍伐活动没有改变,只是表层土壤(深度为0-0.3 m)中的碳含量略有增加。但是,这种影响被地下土壤(深度1-3 m)中大量的C储量所抵消。我们的结果表明,相对不稳定的碳的大量存量不仅限于干旱季节延长的地区,而且还可以在热带湿林以下的深风化土壤中发现。在这些地区进行森林砍伐可能会从地下土壤中产生出乎意料的高碳损失。 [参考:36]

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