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Distribution of soil organic carbon fractions as related to land use and management in the Loess Plateau, northern China

机译:中国北方黄土高原土地利用与管理有关的土壤有机碳分配

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Organic C in the soil is not a uniform material but rather a complex mixture of plant, animal and microbial residues at different stages of decomposition (Post and Kwon 2000). So the dynamics of soil organic carbon (SOC) is usually described by dividing total SOC into different fractions (Six et al. 2002). Of all the different fractions, density defined fractions (light- and heavy fractions) may relate better to specific functions or processes (O'Hara et al. 2006), and the changes in SOC due to landuse and management may be partly explained by the way C is allocated in these different SOC fractions (Tan et al. 2007). Previous research in the Loess Plateau of northern China indicate that, compared with the grassland restored from cropping, continuous tillage and proper management in cropland increased SOC storage in the lower soil horizons (Li et al. 2008). This study was conducted to investigate the distribution of light- and heavy fractions of SOC under cropland and grassland, aiming to better understand how the density fractions of SOC were affected by the land use conversion.
机译:土壤中的有机C不是均匀的材料,而是植物,动物和微生物残留物在分解的不同阶段(柱和kwon 2000)的复杂混合物。因此,通常通过将总SOC分成不同的分数来描述土壤有机碳(SOC)的动态(SiX等,2002)。在所有不同的级分中,密度定义的级分(光和重级分)可以更好地涉及特定功能或过程(O'Hara等,2006),并且可能部分解释由土地使用和管理引起的SOC的变化方式C在这些不同的SOC分数中分配(Tan等人。2007)。以往中国北方黄土高原的研究表明,与恢复从种植,持续耕作和耕地的适当管理相比,在土壤下面的耕地增加了SOC储存(Li等人。2008)。进行了该研究以调查农田和草原下的SOC的轻质和重物分布,旨在更好地了解SOC的密度分数是如何受土地使用转化的影响。

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