Changes in runoff chemistry after five years of N addition to a forested catchment at Gardsjon, Sweden

被引:38
作者
Moldan, F
Wright, RF
机构
[1] Swedish Environm Res Inst, S-40258 Gothenburg, Sweden
[2] Norwegian Inst Water Res, N-0411 Oslo, Norway
关键词
nitrogen; NITREX project; Norway spruce; Sweden; water; catchment; forest ecosystem; element budgets;
D O I
10.1016/S0378-1127(97)00135-7
中图分类号
S7 [林业];
学科分类号
0829 ; 0907 ;
摘要
The deposition of nitrogen from the atmosphere to coniferous forests poses the risk of N saturation and disruption of the N cycle. Beginning in April 1991, we have conducted a whole-ecosystem manipulation of N deposition at a mature coniferous forested-catchment at Gardsjon, SW Sweden. We have added in weekly portions of about 40 kg NH4NO3-N ha(-1) yr(-1) in 5% extra water to the ambient 11 kg NH4NO3-N ha(-1) yr(-1) in throughfall. The Gardsjon experiment is part of the European NITREX project (Nitrogen saturation experiments). Both the annual mean concentrations and peak concentrations of nitrate in runoff increased dramatically in response to the chronic additions of N. The seasonal pattern and the yearly amount of N loss changed during the 5 years of treatment. During the first years of treatment, concentrations of NO3-; were low during the growing season and high during the winter; during the fourth and fifth years, elevated concentrations were present also during the summer. Ammonium concentrations, although generally much lower than NO3-;, followed the same seasonal pattern. The inorganic N lost during the 5 years of treatment was 0.6%, 1.1%, 5.0%, 5.7% and 4.5% respectively, of the annual inorganic N input. In the fifth year, drought and generally very low runoff led to moderate N loss despite the high NO3-; and NH4+ concentrations. Sulphate, inorganic Aln+, H+ and Na+ concentrations were significantly lower during the treatment period relative to the untreated control catchment while NO3-, NH4+, K+ and Ca2+ concentrations increased. The N concentrations in the runoff indicate incipient N saturation at the manipulated catchment. But the experimental dramatic increase in N deposition occurred so rapidly that the forest ecosystem has not yet had the opportunity to adjust and respond. Although symptoms of N saturation were induced over a relatively short time by increasing atmospheric deposition of N, the nitrogen status of the ecosystem is clearly in a state of transition. The rate of response suggests that at ambient N, deposition of 11 kg inorganic N ha(-1) yr(-1), the ecosystem is near the threshold at which additional N inputs cause significant NO; leaching. (C) 1998 Elsevier Science B.V.
引用
收藏
页码:187 / 197
页数:11
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