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Soil Organic Carbon and Its Fractions Across Vegetation Types: Effects of Soil Mineral Surface Area and Microaggregates

机译:不同植被类型的土壤有机碳及其组分:土壤矿物表面积和微团聚体的影响

摘要

Soil organic carbon (SOC) can act as a sink or source of atmospheric carbon dioxide; therefore, it is important to understand the amount and composition of SOC in terrestrial ecosystems, the spatial variation in SOC, and the underlying mechanisms that stabilize SOC. In this study, density fractionation and acid hydrolysis were used to assess the spatial variation in SOC, the heavy fraction of organic carbon (HFOC), and the resistant organic carbon (ROC) in soils of the southern Hulun Buir region, northeastern China, and to identify the major factors that contribute to this variation. The results showed that as the contents of clay and silt particles (0-50 mu m) increased, both methylene blue (MB) adsorption by soil minerals and microaggregate contents increased in the 0-20 and 20-40 cm soil layers (P 0.05). Although varying with vegetation types, SOC, HFOC, and ROC contents increased significantly with the content of clay and silt particles, MB adsorption by soil minerals, and microaggregate content (P 0.05), suggesting that soil texture, the MB adsorption by soil minerals, and microaggregate abundance might be important factors influencing the spatial heterogeneity of carbon contents in soils of the southern Hulun Buir region.
机译:土壤有机碳(SOC)可以作为大气二氧化碳的汇或源。因此,重要的是要了解陆地生态系统中SOC的数量和组成,SOC的空间变化以及稳定SOC的潜在机制。在这项研究中,使用密度分级法和酸水解法评估了中国东北呼伦贝尔市南部土壤的SOC,有机碳的重含量(HFOC)和抗性有机碳(ROC)的空间变化。确定导致这种差异的主要因素。结果表明,随着黏土和淤泥颗粒(0-50微米)含量的增加,0-20和20-40 cm土层中土壤矿物对亚甲基蓝(MB)的吸附和微骨料的含量均增加(P < 0.05)。尽管SOC,HFOC和ROC含量随植被类型而变化,但随着粘土和淤泥颗粒含量,土壤矿物质对MB的吸附以及微骨料含量的增加而显着增加(P <0.05),表明土壤质地,土壤矿物质对MB的吸附和微量骨料丰度可能是影响呼伦贝尔南部地区土壤碳含量空间异质性的重要因素。

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