Optimizing Biomass Supply Chains from Energy Crops

This paper discusses innovative approaches to optimize biomass supply chains from energy crops, forestry and agricultural residues, focusing on logistics improvements like densification, efficient harvesting, and decentralized processing. It assesses the sustainability and viability of these technologies through European case studies, reporting cost reductions exceeding 30% and greenhouse gas emission cuts of 10–20%.

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Detail description

Cost-efficient, environmentally friendly biomass supply chains are essential for meeting EU 2020 and 2030 bioeconomy targets. This study draws on three European Commission–funded projects that developed and tested innovative technologies for crop management, harvesting, pre-treatment, storage, and transport of lignocellulosic feedstocks from energy crops, forest residues, and horticultural wastes. Full logistics chains were evaluated in real-world case studies across Europe, identifying storage capacity and feedstock availability as primary bottlenecks. Promising solutions—including legume–lignocellulosic crop mixtures, decentralized briquetting for densification, improved harvesting systems, and extended harvesting windows—demonstrated over 30% reduction in logistics costs and 10–20% lower greenhouse gas emissions in a Burgundy pilot.

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Contribution detail info

Project

Innovations agronomiques

Innovations agronomiques

Location
France
Authors
Benoît GABRIELLE, Aurélie PERRIN, Julie WOHLFAHRT, Truls FLATBERG, Thor Harald BJØRKVOLL, Guillermo I. ECHEVARRÍA, Daniel SANCHEZ, Raimo VAN DER LINDEN, Chantal LOYCE, Élise PELZER, Giorgio RAGAGLINI, Ian SHIELD et Nick YATES
Purpose
Adopt innovative practices

File type
document
Created on
Nov 01, 2016
Origin language
French
Official project website
Innovations agronomiques
License
CC BY