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Tree Biomass Estimation in Agroforestry for Carbon Farming: A Comparative Analysis of Timing, Costs, and Methods

  • Niccolò Conti
  • , Gianni Della Rocca*
  • , Federico Franciamore
  • , Elena Marra
  • , Francesco Nigro
  • , Emanuele Nigrone
  • , Ramadhan Ramadhan
  • , Pierluigi Paris
  • , Gema Tárraga-Martínez
  • , José Belenguer-Ballester
  • , Lorenzo Scatena
  • , Eleonora Lombardi
  • , Cesare Garosi
  • *Corresponding author for this work

Publication: Contribution to journalReview articlepeer-review

Abstract

Agroforestry systems (AFSs) enhance long-term carbon sequestration through tree biomass accumulation. As the European Union’s Carbon Farming Certification (CRCF) Regulation now recognizes AFSs in carbon farming (CF) schemes, accurate tree biomass estimation becomes essential for certification. This review examines field-destructive and remote sensing methods for estimating tree aboveground biomass (AGB) in AFSs, with a specific focus on their advantages, limitations, timing, and associated costs. Destructive methods, although accurate and necessary for developing and validating allometric equations, are time-consuming, costly, and labour-intensive. Conversely, satellite- and drone-based remote sensing offer scalable and non-invasive alternatives, increasingly supported by advances in machine learning and high-resolution imagery. Using data from the INNO4CFIs project, which conducted parallel destructive and remote measurements in an AFS in Tuscany (Italy), this study provides a novel quantitative comparison of the resources each method requires. The findings highlight that while destructive measurements remain indispensable for model calibration and new species assessment, their feasibility is limited by practical constraints. Meanwhile, remote sensing approaches, despite some accuracy challenges in heterogeneous AFSs, offer a promising path forward for cost-effective, repeatable biomass monitoring but in turn require reliable field data. The integration of both approaches might represent a valid strategy to optimize precision and resource efficiency in carbon farming applications.

Original languageEnglish
Article number1287
JournalForests
Volume16
Issue number8
DOIs
Publication statusPublished - Aug 2025
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2025 by the authors.

Keywords

  • aboveground biomass
  • costs
  • destructive measurements
  • remote sensing
  • satellite
  • timing
  • UAVs

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