H2020Individual fellowship2018–2020

CASE-CO2 · Carbon Accumulation over Succession to Enhance mitigation of CO2 emissions

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2018-06-01 → 2020-05-31
EU contribution
€170,122
Participants
1
Scheme
MSCA-IF-EF-CAR

Lines connect the coordinator with its partners.

Results in brief

Carbon Accumulation over Succession to Enhance mitigation of CO2 emissions

During the last decades, the concentration of greenhouse gases (GHGs) in the atmosphere has risen up to unprecedented levels since the beginning of the industrial revolution, reaching 405.5 ppm in 2018. This increase is expected to continue over the XXI century, causing a large number of environmental as well as socio-economic problems. However, trees are able to capture carbon though the photosynthesis, and therefore, increasing the forest cover might be one of the most effective strategies to offset CO2 emissions across the globe. The area covered by trees can be increased by means of the deliberate planting of trees in areas that were once covered (i.e. reforestation) or not covered (i.e. afforestation) by forests. However, it has also occurred as a consequence of the spontaneous revegetation of formerly cultivated areas that have been abandoned as a consequence of its low productivity and/or the difficulties for the mechanization of the agrarian labour, leading to a low economical profitability. This forest expansion in abandoned agricultural lands has been particularly pervasive in the Northern Hemisphere, where it has apparently contributed to the development of a persistent carbon (C) sink. However, whereas the C stocks developed as a consequence of this process have been quantified in some regions such as Eastern Europe and the former Soviet Republics, in others such as Southern Europe they have not. Moreover, there are still a large number of uncertainties concerning C accumulation in different parts of the forest (i.e. above- and below-ground biomass, woody debris, litter, soil), as well as on the role played by mean annual rainfall and temperature, and soil nutrient concentrations, among other factors, in this process, particularly in Mediterranean environments. The overall objective of this project is to improve our knowledge on the process of carbon accumulation over forest expansion in abandoned agricultural lands, in a vast region of Central-North Spain (Castilla y León) that has been severely affected by this process. Specifically, we aim to quantify the C stocks developed as a consequence of forest expansion in abandoned agricultural lands, and shed light on the factors responsible for the process. The project has been developed in the Institute for Sustainable Forestry Management (iuFOR), located in Palencia (Spain), but depending on the University of Valladolid, with a two-month secondment in the School of Geosciences of the University of Edinburgh (United Kingdom).

Data: CORDIS, © European Union

Project objective

Former agricultural lands, also known as old-fields, can have great potential as carbon (C) sinks and could act as naturally occurring, low cost mechanism to mitigate CO2 emissions. However, many studies on C fixation have focused on mature forests, not properly considering abandoned agricultural lands. Through this project, the experienced researcher (ER), Dr. Eduardo Velázquez, aims to; (i) study the process of C accumulation in old-fields over ecological succession, predicting their C sequestration potential over the long-term, (ii) estimate old-field C stocks at regional scale in a region characterized by farmland abandonment. These objectives will be attained (i) through sampling in 50 permanent plots, performing vegetation and soil laboratory analyses, and adaptating the forest model IBERO, and (ii) through the conjoint use of field measurements and radar backscatter data. The ER will work in the IUFOR (Palencia), supervised by Felipe Bravo. He will collaboratewith ECM and perform a secondment in Edinburgh. He will be trained in the calculation of C stocks, the development of allometric equations, the parameterization and calibration of forest growth models, and the analysis of radar backscatter data. This project proposes a multidisciplinary approach among Forest and Systems Ecology, forest modelling and remote sensing, and aligns within several cross-cutting issues and focus areas of H2020 Work Programme. The results of CASE-CO2 could be applied to develop new laws and directives regarding the most suitable management practices in order to enhance mitigation of atmospheric CO2 emissions in old-fields, and to improve the assessment of regional and national carbon budgets. This project will increase the leadership and scientific network of the ER, the quantity and quality of his publications, the impact of his scientific activity, and his possibilities to obtain funds, enhancing his possibilities of reaching a position of professional maturity within the ERA.

Original text from CORDIS.

Participants

  • UNIVERSIDAD DE VALLADOLID · VALLADOLIDCoordinatorSpain

Links

Data: CORDIS, © European Union