Biomass residues as twenty-first century bioenergy feedstock—a comparison of eight integrated assessment models
Steef V. Hanssen, Vassilis Daioglou, Zoran J. N. Steinmann, Stefan Frank, Alexander Popp, Thierry Brunelle, Pekka Lauri, Tomoko Hasegawa, Mark A. J. Huijbregts, Detlef P. Van Vuuren

TL;DR
This paper compares eight models to assess how much biomass residues can contribute to future bioenergy needs, highlighting their potential and uncertainties.
Contribution
The study provides a harmonized comparison of biomass residue supply across eight integrated assessment models for the first time.
Findings
Biomass residues could meet 7–50% of bioenergy demand by 2050 and 2–30% by 2100.
Inter-model differences arise from model structure and assumptions about agriculture and forestry.
Residue supply is cost-competitive but depends on bioenergy demand and sustainability factors.
Abstract
In the twenty-first century, modern bioenergy could become one of the largest sources of energy, partially replacing fossil fuels and contributing to climate change mitigation. Agricultural and forestry biomass residues form an inexpensive bioenergy feedstock with low greenhouse gas (GHG) emissions, if harvested sustainably. We analysed quantities of biomass residues supplied for energy and their sensitivities in harmonised bioenergy demand scenarios across eight integrated assessment models (IAMs) and compared them with literature-estimated residue availability. IAM results vary substantially, at both global and regional scales, but suggest that residues could meet 7–50% of bioenergy demand towards 2050, and 2–30% towards 2100, in a scenario with 300 EJ/year of exogenous bioenergy demand towards 2100. When considering mean literature-estimated availability, residues could provide…
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Taxonomy
TopicsBiofuel production and bioconversion · Environmental Impact and Sustainability · Bioenergy crop production and management
