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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Profile storage and vertical distribution (0-150 cm) of soil inorganic carbon in croplands in northeast China
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Profile storage and vertical distribution (0-150 cm) of soil inorganic carbon in croplands in northeast China

机译:东北地区农田土壤无机碳的配置文件储存与垂直分布(0-150厘米)

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摘要

In addition to soil organic carbon (SOC), soil inorganic carbon (SIC) is also an important reservoir of carbon (C) in arid and semiarid areas, and often contributes a large amount to total soil C. Despite carbonate soils distributed in some regions of northeast China, few data are available on SIC stock, especially in deep soils, resulting underestimation of total soil C. Based on 25 soil profiles (> 150 cm) sampled from cropping lands of Lindian County, a typical region of carbonate soils in northeast China, we calculated SIC stock and its distribution in soil profiles and explored their relationship with soil physical and chemical properties. Results showed that SIC density (SICD) within 0-150 cm depth ranged from 109.0 to 331.7 Mg ha(-1), with an average of 259.0 Mg ha(-1), accounting for 68% of total soil C stock. The ratio of SIC to SOC ranged from 0.1 to 8.0 across soil profiles and was less than 1.0 on average in the upper 40 cm. The SICD in soil profiles were 55.6, 114.4, and 88.9 Mg ha(-1) in the 0-40, 40-100, and 100-150 cm, respectively. The stocks of SIC and SOC in the 100-150 cm depth accounted for 23% and 6%, respectively, of the total soil C stock across soil profile. The SIC/SOC ratio was negatively correlated with total nitrogen, available phosphorus and potassium. A structural equation model analysis showed that soil depth combined with soil physical and chemical properties significantly affected the SIC/SOC ratio. Our study highlights the importance of SIC in total C stocks, and indicates SIC stock below 40 cm dominates the total C in soil profile, and SIC stock in deep layers (100-150 cm) can contribute one third to the total stock in the profile (0-150 cm). The distribution of soil C components throughout soil profiles as influenced by soil properties depends on soil layers.
机译:除了土壤有机碳(SOC)外,土壤无机碳(SIC)也是干旱和半干旱区域中的碳(C)的重要储层,并且通常为总土壤C导致大量贡献。尽管碳酸盐土壤分布在某些地区中国东北地区,少数数据可在SIC股票上提供,特别是在深处土壤中,导致整个土壤C的低估。基于林田县的种植地区的25种土壤曲线(> 150厘米),是东北典型的碳酸盐土地的典型地区中国,我们计算了土壤概况的SIC股票及其分布,并探讨了土壤物理化学性质的关系。结果表明,0-150厘米深度范围内的SiC密度(SICD)的范围为109.0至331.7mg HA(-1),平均为259.0 mg HA(-1),占土壤总碳总量的68%。 SiC到SoC的比例在土壤剖面上的0.1至8.0范围为0.1至8.0,平均小于40厘米的平均值小于1.0。土壤分布中的SICD分别为55.6,114.4和88.9mg HA(-1)分别在0-40,40-100和100-150厘米。 SIC和SOC的股票在100-150厘米的深度中分别占土壤剖面的总土壤C库存的23%和6%。 SiC / SOC比与总氮,可用磷和钾负相关。结构方程模型分析表明,土壤深度与土壤物理和化学性质相结合显着影响了SiC / SoC比率。我们的研究突出了SIC在C总股中的重要性,并且表明SIC股票低于40厘米,占据土壤剖面的总C,深层(100-150厘米)的SIC库存可以为概况中的总库存提供三分之一(0-150厘米)。土壤剖面的土壤C组分的分布取决于土壤层。

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