The effect of forest type on throughfall deposition and seepage flux: a review
- 13 July 2007
- journal article
- review article
- Published by Springer Nature in Oecologia
- Vol. 153 (3) , 663-674
- https://doi.org/10.1007/s00442-007-0776-1
Abstract
Converting deciduous forests to coniferous plantations and vice versa causes environmental changes, but till now insight into the overall effect is lacking. This review, based on 38 case studies, aims to find out how coniferous and deciduous forests differ in terms of throughfall (+stemflow) deposition and seepage flux to groundwater. From the comparison of coniferous and deciduous stands at comparable sites, it can be inferred that deciduous forests receive less N and S via throughfall (+stemflow) deposition on the forest floor. In regions with relatively low open field deposition of atmospheric N (−1 year−1), lower NH 4 + mean throughfall (+stemflow) deposition was, however, reported under conifers compared to deciduous forest, while in regions with high atmospheric N pollution (>10 kg N ha−1 year−1), the opposite could be concluded. The higher the open field deposition of NH 4 + , the bigger the difference between the coniferous and deciduous throughfall (+stemflow) deposition. Furthermore, it can be concluded that canopy exchange of K+, Ca2+ and Mg2+ is on average higher in deciduous stands. The significantly higher stand deposition flux of N and S in coniferous forests is reflected in a higher soil seepage flux of NO 3 − , SO 4 2− , K+, Ca2+, Mg2+ and Al(III). Considering a subset of papers for which all necessary data were available, a close relationship between throughfall (+stemflow) deposition and seepage was found for N, irrespective of the forest type, while this was not the case for S. This review shows that the higher input flux of N and S in coniferous forests clearly involves a higher seepage of NO 3 − and SO 4 2− and accompanying cations K+, Ca2+, Mg2+ and Al(III) into the groundwater, making this forest type more vulnerable to acidification and eutrophication compared to the deciduous forest type.Keywords
This publication has 57 references indexed in Scilit:
- Nitrate leaching in agriculture to upper groundwater in the sandy regions of the Netherlands during the 1992–1995 periodEnvironmental Monitoring and Assessment, 2005
- Is Pinus radiata invading the native vegetation in central Chile? Demographic responses in a fragmented forestBiological Invasions, 2005
- Ammonium, nitrate and dissolved organic nitrogen in seepage water as affected by compost amendment to European beech, Norway spruce, and Scots pine forestsPlant and Soil, 2004
- Field intercomparison of throughfall measurements performed within the framework of the Pan European intensive monitoring program of EU/ICP ForestEnvironmental Pollution, 2003
- Impact of several common tree species of European temperate forests on soil fertilityAnnals of Forest Science, 2002
- Direct canopy nitrogen uptake from 15N-labeled wet deposition by mature red spruceCanadian Journal of Forest Research, 1996
- Nitrogen Saturation in Northern Forest EcosystemsBioScience, 1989
- Foliar uptake of 15N from simulated cloud water by red spruce (Picearubens) seedlingsCanadian Journal of Forest Research, 1989
- Nitrogen saturation of terrestrial ecosystemsEnvironmental Pollution, 1988
- Nutrient Content of Throughfall and Stem-Flow in Woodland Recently Established on HeathlandJournal of Ecology, 1985