This study aimed to assess the impact of different biochar (BCH) applications (0%, 10%, 20%, and 50%, v/v) on soil respiration in a European beech (Fagus sylvatica L.) forest located in the Tuscan-Emilian Apennines. The experiment was conducted over four months during summer 2023. Results revealed that BCH applications did not significantly affect overall soil respiration. On the other hand, soil respiration was positively influenced by soil temperature and soil moisture, the latter only for the 10% and 20% BCH amendments. At higher BCH concentrations (50%), soil respiration was not enhanced by moisture, probably due to soil water saturation and reduced oxygen availability. In conclusion, it appears that BCH does not directly stimulate soil respiration in field conditions, although specific concentrations may improve soil carbon sequestration. These findings highlight the potential for BCH amendments to be employed as a climate-smart forestry strategy in support of carbon sequestration and ecosystem stability in temperate forest ecosystems.

Biochar Applications Did Not Increase Summer Soil Respiration in a European Beech Forest / Vannini, A.; Tarasconi, D.; Grillo, F.; Forte, T. G. W.; Carbognani, M.; Petraglia, A.. - In: FORESTS. - ISSN 1999-4907. - 16:5(2025). [10.3390/f16050837]

Biochar Applications Did Not Increase Summer Soil Respiration in a European Beech Forest

Vannini A.;Tarasconi D.;Grillo F.;Forte T. G. W.
;
Carbognani M.;Petraglia A.
2025-01-01

Abstract

This study aimed to assess the impact of different biochar (BCH) applications (0%, 10%, 20%, and 50%, v/v) on soil respiration in a European beech (Fagus sylvatica L.) forest located in the Tuscan-Emilian Apennines. The experiment was conducted over four months during summer 2023. Results revealed that BCH applications did not significantly affect overall soil respiration. On the other hand, soil respiration was positively influenced by soil temperature and soil moisture, the latter only for the 10% and 20% BCH amendments. At higher BCH concentrations (50%), soil respiration was not enhanced by moisture, probably due to soil water saturation and reduced oxygen availability. In conclusion, it appears that BCH does not directly stimulate soil respiration in field conditions, although specific concentrations may improve soil carbon sequestration. These findings highlight the potential for BCH amendments to be employed as a climate-smart forestry strategy in support of carbon sequestration and ecosystem stability in temperate forest ecosystems.
2025
Biochar Applications Did Not Increase Summer Soil Respiration in a European Beech Forest / Vannini, A.; Tarasconi, D.; Grillo, F.; Forte, T. G. W.; Carbognani, M.; Petraglia, A.. - In: FORESTS. - ISSN 1999-4907. - 16:5(2025). [10.3390/f16050837]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/3028415
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