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首页> 外文期刊>Soil Science and Plant Nutrition >Structural stability and natural 13C abundance of humic acids in buried volcanic ash soils.
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Structural stability and natural 13C abundance of humic acids in buried volcanic ash soils.

机译:火山灰埋入土壤中的腐殖酸的结构稳定性和天然13C丰度。

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To examine the relationships between soil age and the structural stability and natural 13C abundance ( delta 13C) of humic acids, buried humic layers in volcanic ash soil profiles near Mt Fuji, Japan, namely Yubunebara (present to 10,000 years before present (yBP); n=5) and Ashitaka-Onoue (&1,000-30,000 yBP; n=6), were analyzed. The contents and delta 13C values of the fulvic acids (humic substances) and non-humic substances in the fulvic acid fractions were also determined. The degree of humification of the humic acids differed remarkably between the surface and buried layers, and the A600/C value (absorbance at 600 nm mg-1 C mL-1 of humic acids in 0.1 mol L-1 NaOH) increased toward the older buried layers. The proportion of aromatic C in total C of the humic acids, estimated using cross polarization/magic angle spinning 13C nuclear magnetic resonance spectroscopy, also increased, whereas the proportions of alkyl and O-alkyl C decreased from the surface toward the older layers. These observations suggested higher stability in the aromatic than aliphatic components and the contribution of aromatic C to the increase in the A600/C value. The composition of the C functional groups did not vary appreciably among layers older than 10,000 yBP. The delta 13C value of bulk soil organic matter (SOM) fluctuated in both profiles, suggesting that the proportions of C3 and C4 plants grown when each layer was the surface layer differed among the layers. Although, in general, variation in the delta 13C value of each humus fraction corresponded to that of bulk SOM, there were significant differences in the delta 13C value between the humus fractions and bulk SOM, and the differences were more conspicuous in the younger layers and less conspicuous in the older layers. A negative correlation (with an exception) was also observed between the difference in the delta 13C values of humic acids from that of bulk SOM and the relative content of aromatic C in the humic acids. Possible causes of the differences and changes in the delta 13C values are discussed..
机译:为了研究土壤年龄与腐殖酸的结构稳定性和天然13C丰度(δ13C)之间的关系,在日本富士山附近的火山灰土壤剖面中埋藏的腐殖质层,即Yubunebara(目前存在10,000年)(yBP); n = 5)和Ashitaka-Onoue(<1,000-30,000yBP; n = 6)进行了分析。还测定了黄腐酸级分中黄腐酸(腐殖质)和非腐殖质的含量和δ13C值。腐殖酸的腐殖化程度在表层和掩埋层之间显着不同,并且A600 / C值(腐殖酸在0.1 mol L-1 NaOH中的600 nm mg-1 C mL-1腐殖酸的吸光度)随着年龄的增长而增加埋层。使用交叉极化/魔角旋转13C核磁共振波谱估计,芳族C在腐殖酸总C中的比例也有所增加,而烷基C和O-烷基C的比例从表面向较旧的层降低。这些观察结果表明,芳族化合物的稳定性高于脂族组分,并且芳族化合物C对A600 / C值增加的贡献。在10,000 yBP以上的层之间,C官能团的组成没有明显变化。在两个剖面中,散装土壤有机质(SOM)的δ13C值均波动,表明当每一层为表层时,生长的C3和C4植物的比例在各层之间有所不同。尽管一般来说,每个腐殖质组分的δ13C值变化都与体SOM的变化相对应,但腐殖质组分与体SOM之间的δ13C值却存在显着差异,并且在较年轻的层中,差异更明显。在较旧的层中不那么显眼。还观察到腐殖酸与本体SOM的δ13C值差异与腐殖酸中芳族C的相对含量之间存在负相关关系(例外)。讨论了差异和13C值变化的可能原因。

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