Czech Hydrometeorological Institute, Prague, Czech Republic; Charles University in Prague, Faculty of Science, Institute for Environmental Studies, Czech Republic.
Czech Hydrometeorological Institute, Prague, Czech Republic.
Sci Total Environ. 2017 Jan 1;575:791-798. doi: 10.1016/j.scitotenv.2016.09.140. Epub 2016 Sep 30.
Time trends and spatial patterns for wet nitrogen deposition in view of its reduced and oxidized forms for Czech forests are presented. Time trends in NH, NO, and N-NH/N-NO ratio at 15 sites in 1990-2014 were analysed using the Mann-Kendal test. Changes in spatial patterns derived from results of 43 sites in 2005-2014 were also assessed. Our results indicated a slow but convincing change in favour of NH. The N-NH/N-NO ratio, both in precipitation and wet deposition, has been increasing steadily, reflecting the changes in reduced and oxidized forms of nitrogen emissions. A similar change has been observed in some other regions and might have negative impacts on ecosystems.
N-NH/N-NO ratio in precipitation and deposition changes in favour of NH. This reflects changes in emissions and might have implications for ecosystems.
本文呈现了捷克森林中湿态氮沉积的还原态和氧化态的时间趋势和空间模式。利用曼肯德尔检验分析了 1990-2014 年 15 个地点 NH、NO 和 N-NH/N-NO 比值的时间趋势。还评估了 2005-2014 年 43 个地点的空间模式变化。我们的结果表明,NH 呈缓慢但令人信服的变化趋势。降水和湿沉降中 N-NH/N-NO 比值一直在稳步增加,反映了氮排放的还原态和氧化态的变化。在其他一些地区也观察到了类似的变化,这可能对生态系统产生负面影响。
降水和沉积中 N-NH/N-NO 比值有利于 NH。这反映了排放的变化,可能对生态系统有影响。