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Organic matter properties in soils afforested with Pinus radiata
Authors:César Pérez-Cruzado  Benjamín Sande  Beatriz Omil  Pere Rovira  Manuel Martin-Pastor  Nieves Barros  Josefa Salgado  Agustín Merino
Institution:1. Unit of Sustainable Forest Management, University of Santiago de Compostela, 27002, Lugo, Spain
2. Soil Science and Agricultural Chemistry Department, University of Santiago de Compostela, 27002, Lugo, Spain
3. Centre Tecnològic Forestal de Catalunya, 25280, Solsona, Spain
4. Centro de Apoyo Científico y Tecnológico (CACTUS), University of Santiago de Compostela, 15706, Santiago de Compostela, Spain
5. Department of Applied Physics, University of Santiago de Compostela, 27002, Lugo, Spain
Abstract:

Aims

Afforestation causes important alterations in SOM content and composition that affect the soil functions and C balance. The aim of this study was to identify the mechanisms that determine the changes in SOM composition following afforestation of grasslands.

Methods

The study included 4 chronosequences and 5 paired plots comprising pastures and land afforested with Pinus radiata. The SOM was characterized by 13C CP-MAS NMR spectroscopy and differential scanning calorimetry.

Results

During the first 10–20 year after afforestation, the changes in SOM content varied from slight gains to large losses (>40 %). The analyses revealed that even SOM compounds considered resistant to decomposition were degraded during this time. The SOM gains, observed 20 year after stand establishment, were favoured by the higher recalcitrance of pine litter and possibly by soil acidification. The concentrations of most SOM compounds, particularly the stable compounds, were higher at the end of the rotation. The low degree of protection, along with the favourable climatic conditions, may also explain the rapid decomposition of SOM, including resistant compounds, in these soils. DSC analysis complemented the information about SOM composition provided by other techniques.

Conclusions

The accumulation of stable SOM compounds at the end of the rotation suggests a longer soil C turnover in these afforested soils, which may alleviate the gradual loss of SOC in intensively managed forest soils.
Keywords:
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