Province-level estimation of sustainable agricultural biomass energy potential in Spain: A three-tier framework with cultivated-area stability and seasonal availability analysis

This study presents a province-level assessment of sustainable agricultural biomass energy potential in Spain, covering eighteen crop systems across the country's fifty-two provinces from 2013 to 2023. Building on established frameworks, the methodology applies a three-tier framework that distinguishes theoretical, technically recoverable, and sustainable biomass potential, incorporates province-specific sustainability parameters derived from livestock and land-use data, uses an area-based approach to estimate pruning residues from permanent crops to reduce bias associated with low-yield years, and employs a monthly availability model based on national harvest calendars. Results establish the national sustainable bioenergy potential at 158.8 PJ yr −1 (95% confidence interval: 124.7-193.0 PJ yr −1 ), representing 32.8% of the theoretical potential. Biomass is also highly concentrated geographically, with Jaén, Sevilla, and Córdoba sustainably and collectively contributing more than 28 PJ yr −1 . Olive residues constitute the largest provincial resource but are subject to considerable uncertainty due to variability in pruning yields. A yield-volatility analysis shows that rain-fed crops, including almond, rapeseed, olive, rye, and oats, exhibit greater variability in Mediterranean regions than in humid Atlantic provinces. A seasonal analysis indicates strong temporal concentration, with June contributing 21.0% of the annual potential. The current study demonstrates that feedstock timing and regional diversification are critical factors in planning and optimizing future bioenergy facilities.

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Journal
Biomass and Bioenergy
Published
2026-10-03
DOI
https://doi.org/10.1016/j.biombioe.2026.110117
Primary Topic
Agriculture Sustainability and Environmental Impact
Type
article
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article

Province-level estimation of sustainable agricultural biomass energy potential in Spain: A three-tier framework with cultivated-area stability and seasonal availability analysis

Carlos Ferrer-Gisbert, B. Velázquez-Martí, Masud Kabir, Isabel López-Cortés
Biomass and Bioenergy
Agriculture Sustainability and Environmental Impact
article

Province-level estimation of sustainable agricultural biomass energy potential in Spain: A three-tier framework with cultivated-area stability and seasonal availability analysis

Carlos Ferrer-Gisbert, B. Velázquez-Martí, Masud Kabir, Isabel López-Cortés
article en

Abstract

This study presents a province-level assessment of sustainable agricultural biomass energy potential in Spain, covering eighteen crop systems across the country's fifty-two provinces from 2013 to 2023. Building on established frameworks, the methodology applies a three-tier framework that distinguishes theoretical, technically recoverable, and sustainable biomass potential, incorporates province-specific sustainability parameters derived from livestock and land-use data, uses an area-based approach to estimate pruning residues from permanent crops to reduce bias associated with low-yield years, and employs a monthly availability model based on national harvest calendars. Results establish the national sustainable bioenergy potential at 158.8 PJ yr −1 (95% confidence interval: 124.7-193.0 PJ yr −1 ), representing 32.8% of the theoretical potential. Biomass is also highly concentrated geographically, with Jaén, Sevilla, and Córdoba sustainably and collectively contributing more than 28 PJ yr −1 . Olive residues constitute the largest provincial resource but are subject to considerable uncertainty due to variability in pruning yields. A yield-volatility analysis shows that rain-fed crops, including almond, rapeseed, olive, rye, and oats, exhibit greater variability in Mediterranean regions than in humid Atlantic provinces. A seasonal analysis indicates strong temporal concentration, with June contributing 21.0% of the annual potential. The current study demonstrates that feedstock timing and regional diversification are critical factors in planning and optimizing future bioenergy facilities.

Biomass and BioenergyVol. 217
Universitat Politècnica de València (ES)
Openalex Percentile: Top 11%
Agriculture Sustainability and Environmental Impact
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Province-level estimation of sustainable agricultural biomass energy potential in Spain: A three-tier framework with cultivated-area stability and seasonal availability analysis — Carlos Ferrer-Gisbert, B. Velázquez-Martí, et al. · Biomass and Bioenergy (2026) | TGRS Research Map | TGRS