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Effects of environmental and biotic factors on carbon isotopic fractionation during decomposition of soil organic matter

机译:环境和生物因子对土壤有机质分解过程中碳同位素分馏的影响

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摘要

Decomposition of soil organic matter (SOM) plays an important role in the global carbon cycle because the CO2 emitted from soil respiration is an important source of atmospheric CO2. Carbon isotopic fractionation occurs during SOM decomposition, which leads to 12C to enrich in the released CO2 while 13C to enrich in the residual SOM. Understanding the isotope fractionation has been demonstrated to be helpful for studying the global carbon cycle. Soil and litter samples were collected from soil profiles at 27 different sites located along a vertical transect from 1200 to 4500 m above sea level (a.s.l.) in the south-eastern side of the Tibetan Plateau. Their carbon isotope ratios, C and N concentrations were measured. In addition, fiber and lignin in litter samples were also analyzed. Carbon isotope fractionation factor (α) during SOM decomposition was estimated indirectly as the slope of the relationship between carbon isotope ratios of SOM and soil C concentrations. This study shows that litter quality and soil water play a significant role in isotope fractionation during SOM decomposition, and the carbon isotope fractionation factor, α, increases with litter quality and soil water content. However, we found that temperature had no significant impact on the α variance.
机译:土壤有机物的分解在全球碳循环中起着重要作用,因为土壤呼吸释放出的二氧化碳是大气中二氧化碳的重要来源。碳同位素分馏发生在SOM分解过程中,导致 12 C富集释放的CO2,而 13 C富集残余的SOM。事实证明,了解同位素分馏有助于研究全球碳循环。从青藏高原东南侧海拔1200-4500 m的垂直断面的27个不同地点的土壤剖面中收集土壤和凋落物样本。测量了它们的碳同位素比,C和N浓度。此外,还对垃圾样品中的纤维和木质素进行了分析。 SOM分解过程中的碳同位素分馏因子(α)间接估算为SOM的碳同位素比与土壤C浓度之间的关系斜率。这项研究表明,凋落物质量和土壤水分在SOM分解过程中的同位素分馏中起着重要作用,碳同位素分馏因子α随着凋落物质量和土壤含水量的增加而增加。但是,我们发现温度对α方差没有显着影响。

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