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Chinese Journal of Applied Ecology ›› 2017, Vol. 28 ›› Issue (1): 1-11.doi: 10.13287/j.1001-9332.201701.028

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Effects of nitrogen deposition on the concentration and spectral characteristics of dissolved organic matter in soil solution in a young Cunninghamia lanceolata plantation.

YUAN Xiao-chun1,2, CHEN Yue-min1,2, YUAN Shuo1,2, ZHENG Wei1,2, SI You-tao1,2, YUAN Zhi-peng3, LIN Wei-sheng1,2*, YANG Yu-sheng1,2   

  1. 1School of Geographical Science, Fujian Normal University, Fuzhou 350007, China
    2Cultivation Base, State Key Laboratory of Humid Subtropical Mountain Ecology, Fuzhou 350007, China
    3School of Urban and Tourism, Hengyang Normal University, Hengyang 421000, Hunan, China
  • Received:2016-07-06 Revised:2016-11-01 Published:2017-01-18
  • Contact: *E-mail:weilsnlin@fjnu.edu.cn
  • Supported by:
    This work was supported by the National Natural Science Foundation of China (31130013)

Abstract: To study the effects of nitrogen deposition on the concentration and spectral characteristics of dissolved organic matter (DOM) in the forest soil solution from the subtropical Cunninghamia lanceolata plantation, using negative pressure sampling method, the dynamics of DOM in soil solutions from 0-15 and 15-30 cm soil layer was monitored for two years and the spectroscopic features of DOM were analyzed. The results showed that nitrogen deposition significantly reduced the concentration of dissolved organic carbon (DOC), and increased the aromatic index (AI) and the humic index (HIX), but had no significant effect on dissolved organic nitrogen (DON) concentration in both soil layers. There was obvious seasonal variation in DOM concentration of the soil solution, which was prominently higher in summer and autumn than in spring and winter.Fourier-transform infrared (FTIR) absorption spectrometry indicated that the DOM in forest soil solution had absorption peaks in the similar position of six regions, being the highest in wave number of 1145-1149 cm-1. Three-dimensional fluorescence spectra indicated that DOM was mainly consisted of protein-like substances (Ex/Em=230 nm/300 nm) and microbial degradation products (Ex/Em=275 nm/300 nm). The availability of protein-like substances from 0-15 cm soil layer was reduced in the nitrogen treatments. Nitrogen deposition significantly reduced the concentration of DOC in soil solution, maybe largely by reducing soil pH, inhibiting soil carbon mineralization and stimulating plant growth. In particular, the decline of DOC concentration in the surface layer was due to the production inhibition of the protein-like substances and carboxylic acids. Short-term nitrogen deposition might be beneficial to the maintenance of soil fertility, while the long-term accumulation of nitrogen deposition might lead to the hard utilization of soil nutrients.