Decomposition and nutrient dynamics of litter in long‐term optimum nutrition experiments
- 1 January 1991
- journal article
- research article
- Published by Taylor & Francis in Scandinavian Journal of Forest Research
- Vol. 6 (1-4) , 305-321
- https://doi.org/10.1080/02827589109382670
Abstract
The chemical composition of the falling litter was investigated over the different fertilization regimes. The nitrogen concentration in the needle litter increased with dosage of nitrogen fertilizer. Nitrogen concentration in needle litter was positively correlated to those of lignin, sulfur and calcium, but negatively to those of zinc, aluminum, and manganese. Phosphorus concentrations were negatively correlated to those of lignin, manganese, zinc, calcium and magnesium. Concentrations of sulfur were negatively correlated to concentrations of zinc, calcium, aluminum, magnesium and boron. The decomposition patterns of Norway spruce needle litter were followed in an optimum nutrition field experiment. Control plots and plots given high dosages of nitrogen and phosphorus fertilizer were used. As decomposition proceeded soluble substances disappeared quickly and the concentration of soluble substances consequently decreased fast. Lignin, being a recalcitrant compound, increased in concentration and the concentrations increased linearly to accumulated mass loss. There was a clear difference in pattern as regards increase in lignin concentrations among needle litters depending on whether they were incubated in a control plot or a highly fertilized one. The concentration of lignin at a given mass‐loss value was thus significantly higher for litter incubated in a fertilized plot than in the control plot. In late decomposition stages, mass‐loss rates decreased linearly as compared to lignin concentrations among needle litters highly fertilized one. The concentration of lignin at a given mass‐loss value was thus significantly higher for litter incubated in a fertilized plot than in the control plot. In late decomposition stages, mass‐loss rates decreased linearly as compared to lignin concentrations, up to a certain concentration of lignin, after which some other factor was more rate regulating. No difference was seen between the control plot and the fertilized plot as regards the influence of lignin concentration on mass‐loss rate.Keywords
This publication has 19 references indexed in Scilit:
- Fixation of ammonia (15N) toPinus silvestrisneedle litter in different stages of decompositionScandinavian Journal of Forest Research, 1988
- Decomposition and nutrient release in needle litter from nitrogen‐fertilized scots pine (pinus sylvestris)standsScandinavian Journal of Forest Research, 1987
- Temporal variation of litter decomposition in relation to simulated soil climate. Long-term decomposition in a Scots pine forest. VCanadian Journal of Botany, 1985
- Lignin and holocellulose relations during long-term decomposition of some forest litters. Long-term decomposition in a Scots pine forest. IVCanadian Journal of Botany, 1984
- Changes in organic chemical components of needle litter during decomposition. Long-term decomposition in a Scots pine forest. ICanadian Journal of Botany, 1982
- Leaf-Litter Decomposition in an Oak-Conifer Forest in Himalaya: The Effects of Climate and Chemical CompositionForestry: An International Journal of Forest Research, 1982
- Effects of Nitrogen and Phosphorus Additions on Deciduous Litter DecompositionSoil Science Society of America Journal, 1978
- Effect of habitat and substrate quality on Douglas fir litter decomposition in western OregonCanadian Journal of Botany, 1977
- Analysis of Needle Fall as a Means of Assessing Nitrogen Status in PineForestry: An International Journal of Forest Research, 1976
- Biological Decomposition of Some Types of Litter From North American ForestsEcology, 1930