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The carbon count of 2000 years of rice cultivation.

机译:2000年水稻种植的碳计数。

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More than 50% of the world's population feeds on rice. Soils used for rice production are mostly managed under submerged conditions (paddy soils). This management, which favors carbon sequestration, potentially decouples surface from subsurface carbon cycling. The objective of this study was to elucidate the long-term rates of carbon accrual in surface and subsurface soil horizons relative to those of soils under nonpaddy management. We assessed changes in total soil organic as well as of inorganic carbon stocks along a 2000-year chronosequence of soils under paddy and adjacent nonpaddy management in the Yangtze delta, China. The initial organic carbon accumulation phase lasts much longer and is more intensive than previously assumed, e.g., by the Intergovernmental Panel on Climate Change (IPCC). Paddy topsoils accumulated 170-178 kg organic carbon ha-1 a-1 in the first 300 years; subsoils lost 29-84 kg organic carbon ha-1 a-1 during this period of time. Subsoil carbon losses were largest during the first 50 years after land embankment and again large beyond 700 years of cultivation, due to inorganic carbonate weathering and the lack of organic carbon replenishment. Carbon losses in subsoils may therefore offset soil carbon gains or losses in the surface soils. We strongly recommend including subsoils into global carbon accounting schemes, particularly for paddy fields.
机译:世界上有50%以上的人口以大米为食。用于水稻生产的土壤大多在淹没条件下进行管理(水稻土)。这种有利于固碳的管理方法可能使表面与地下碳循环脱钩。这项研究的目的是阐明表层和地下土壤层位相对于非稻田管理土壤的长期碳积累率。我们评估了中国长江三角洲稻田和邻近的非稻田管理下的2000年土壤总有机质和无机碳储量的变化。最初的有机碳积累阶段比例如政府间气候变化专门委员会(IPCC)先前设想的持续时间更长,强度更大。稻田表土在前300年累积了170-178 kg有机碳ha -1 a -1 。在此期间,地下土壤损失了29-84千克有机碳ha -1 a -1 。在无机土碳酸盐风化和缺乏有机碳补给的情况下,土质碳损失在土地堤防后的前50年中最大,并且在700年以上的耕种中再次大。因此,土壤中的碳损失可能会抵消土壤碳的增加或表层土壤的损失。我们强烈建议将底土纳入全球碳核算计划,尤其是针对稻田。

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