Distribution of δ13C-labeled Wood Residue Carbon in Soil Aggregates
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Supported by the National Natural Science Foundation of China (No. 30972346), National Key Technology R&D Program of China (No. 2014BAD15B01), Natural Science Foundation of Fujian Province (No. 2011J01087)

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    Abstract:

    The pulse labeling technique was used to label 13C-enriched wood residue of Cunninghamia lanceolata sapling, which was then mixed, separately, with soil samples collected from the topsoil layers of a citrus orchard (Citrus aurantium ), a fir plantation (Cunninghamia lanceolata), a secondary forest of Castanopsis carlesii, and a natural forest of Altingia gracilipes). To trace dynamics of fresh carbon in soil aggregates, the mistures were incubated at 20 ℃ for 90 d and then analyzed for distribution of 13C-labeled wood residue carbon in the three fractions of soil aggregates, i.e. >250 μm, 53~250 μm and <53 μm. Results show that in the soil samples amended with 13C-labeled wood residue, δ13C value increased in all the fractions of soil aggregates, especially in the soil samples of the orchard. In all the soil samples, regardless of land use, δ13C value was the lowest in the <53 μm fraction of soil aggregates, and the highest in the 53~250 μm fraction. Once extraneous carbon was amended into the soil samples, the content of fresh carbon therein increased instantly. And the content of fresh carbon and δ13C value was higher in the root than in the leaf, as the ratio of C/N is higher in the former. In terms of content of fresh carbon, the three fractions of soil aggregates displayed an order of <53 μm > 53~250 μm > >250 μm, which indicates that a short term of incubation facilitates accumulation of fresh carbon in micro soil aggregates.

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LI Hanshi, MAO Yanling, ZOU Shuangquan. Distribution of δ13C-labeled Wood Residue Carbon in Soil Aggregates[J]. Acta Pedologica Sinica,2017,54(4):1038-1046.

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History
  • Received:November 26,2015
  • Revised:April 09,2017
  • Adopted:April 14,2017
  • Online: April 28,2017
  • Published: