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[Effects of different regeneration patterns on soil dissolved organic matter degradation in Castanopsis carlesii forests of subtropical China].

Ying SunYing GaoHui ChenYoutao SiYong BaoHongzhe Jiao

2020PubMedEnvironmental Science被引 1

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摘要

) of soil DOM would affect the turnover time of labile DOC. The spectral structure of DOM changed dynamically during the degradation process, indicating that microorganism would turn to degrade aromatic and hydrophobic fractions for carbon source after the depletion of labile DOM. Overall, the transformation from NF of C. carlesii into SF and AR could increase the proportion of the easily degradable DOC, and enhance the biodegradability of soil DOM, which were not conducive to the accumulation of SOC.

引用本文(GB/T 7714)

Ying Sun, Ying Gao, Hui Chen, 等. [Effects of different regeneration patterns on soil dissolved organic matter degradation in Castanopsis carlesii forests of subtropical China].[J]. PubMed, 2020.

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DOI:https://doi.org/10.13287/j.1001-9332.202004.033

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