Dynamics of soil inorganic nitrogen and their responses to nitrogen additions in three subtropical forests, south China.

马尾松 浸出(土壤学) 热带和亚热带湿润阔叶林 亚热带 土壤水分 常绿 环境科学 氮气 土壤pH值 土壤酸化 农学 化学 生态学 土壤科学 植物 生物 有机化学
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Yunting Fang,Weixing Zhu,Jiangming Mo,Guoyi Zhou,Per Gundersen
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期刊:PubMed 卷期号:18 (4): 752-9 被引量:5
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Three forests with different historical land-use, forest age, and species assemblages in subtropical China were selected to evaluate current soil N status and investigate the responses of soil inorganic N dynamics to monthly ammonium nitrate additions. Results showed that the mature monsoon evergreen broadleaved forest that has been protected for more than 400 years exhibited an advanced soil N status than the pine (Pinus massoniana) and pine-broadleaf mixed forests, both originated from the 1930's clear-cut and pine plantation. Mature forests had greater extractable inorganic N pool, lower N retention capacity, higher inorganic N leaching, and higher soil C/N ratios. Mineral soil extractable NH4(+)-N and NO3(-)-N concentrations were significantly increased by experimental N additions on several sampling dates, but repeated ANOVA showed that the effect was not significant over the whole year except NH4(+)-N in the mature forest. In contrast, inorganic N (both NH4(+)-N and NO3(-)-N) in soil 20-cm below the surface was significantly elevated by the N additions. From 42% to 74% of N added was retained by the upper 20 cm soils in the pine and mixed forests, while 0%-70% was retained in the mature forest. Our results suggest that land-use history, forest age and species composition were likely to be some of the important factors that determine differing forest N retention responses to elevated N deposition in the study region.

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