Accoe Frederik, Boeckx Pascal, Cleemput Oswald Van, Hofman Georges, Zhang Ying, Li Rong hua, Guanxiong Chen
Department of Applied Analytical and Physical Chemistry, Faculty of Agricultural and Applied Biological Sciences, Ghent University, Belgium.
Rapid Commun Mass Spectrom. 2002;16(23):2184-9. doi: 10.1002/rcm.767.
Evolution of the total carbon (C) content and the (13)C enrichment (delta(13)C signature) of soil organic matter (SOM) with increasing depth in a soil profile under permanent grassland (C(3) vegetation) were investigated. The relationship between the total C content and the delta(13)C signature at different depths in the upper 30 cm of the soil profile could be well fitted by the Rayleigh equation (y = -29.8 - 2.3x, R(2) = 0.95, p < 0.001), describing the enrichment in (13)C as resulting from isotopic fractionation associated with C mineralization (isotope enrichment factor epsilon = -2.3 per thousand). Potential C dynamics of SOM in four depth intervals of the profile (0-10, 10-20, 20-30 and 30-40 cm depth) were investigated through an incubation study. The C decomposition rate constants decreased with increasing sampling depth from 0.0479 yr(-1) (0-10 cm sampling depth) to 0.0256 yr(-1) (30-40 cm sampling depth) and were highly correlated (y = 0.02 + 0.13x, R(2) = 0.93, p < 0.05) with the corresponding deltadelta(13)C values (average change of the delta(13)C signature per depth increment). These results suggest that changes of the delta(13)C signature of SOM in undisturbed soil profiles under continuous C(3) vegetation may serve as an indicator of the variation of SOM quality with increasing depth.
研究了永久草地(C3植被)土壤剖面中土壤有机质(SOM)的总碳(C)含量和(13)C富集度(δ(13)C特征)随深度增加的变化情况。土壤剖面上部30厘米不同深度处的总碳含量与δ(13)C特征之间的关系可以用瑞利方程很好地拟合(y = -29.8 - 2.3x,R2 = 0.95,p < 0.001),该方程描述了与碳矿化相关的同位素分馏导致的(13)C富集(同位素富集因子ε = -2.3‰)。通过一项培养研究,调查了剖面四个深度区间(0 - 10、10 - 20、20 - 30和30 - 40厘米深度)土壤有机质的潜在碳动态。碳分解速率常数随着采样深度的增加从0.0479 yr-1(0 - 10厘米采样深度)降至0.0256 yr-1(30 - 40厘米采样深度),并且与相应的δδ(13)C值(每深度增量的δ(13)C特征平均变化)高度相关(y = 0.02 + 0.13x,R2 = 0.93,p < 0.05)。这些结果表明,在连续C3植被下未扰动土壤剖面中土壤有机质的δ(13)C特征变化可能作为土壤有机质质量随深度增加而变化的指标。