Area of research
Biomedical Engineering · Environmental Engineering
Research interest
Research interests include Environmental science, Greenhouse gas, Bioenergy, Land use, Biomass (ecology), and Agriculture.
Three foci at the science-policy interface for systemic Sustainable Development Goal acceleration
Land use for bioenergy: Synergies and trade-offs between sustainable development goals
The status of corporate greenhouse gas emissions reporting in the food sector: An evaluation of food and beverage manufacturers
The implications of geopolitical, socioeconomic, and regulatory constraints on European bioenergy imports and associated greenhouse gas emissions to 2050
Quantifying sustainable intensification of agriculture: The contribution of metrics and modelling
Integrated assessment of the role of bioenergy within the EU energy transition targets to 2050
Integral analysis of environmental and economic performance of combined agricultural intensification & bioenergy production in the Orinoquia region
EU bioenergy development to 2050
The distribution of food security impacts of biofuels, a Ghana case study
Spatial Variation in Environmental Impacts of Sugarcane Expansion in Brazil
Bioenergy Potential and Greenhouse Gas Emissions from Intensifying European Temporary Grasslands
Projecting socio-economic impacts of bioenergy: Current status and limitations of ex-ante quantification methods
Sustainable intensification of crop residue exploitation for bioenergy: Opportunities and challenges
Integrated assessment of biomass supply and demand in climate change mitigation scenarios
Interregional assessment of socio-economic effects of sugarcane ethanol production in Brazil
Intensification pathways for beef and dairy cattle production systems: Impacts on GHG emissions, land occupation and land use change
Greenhouse gas emission curves for advanced biofuel supply chains
Identifying key factors for mobilising under-utilised low carbon land resources: A case study on Kalimantan
Current and future technical, economic and environmental feasibility of maize and wheat residues supply for biomass energy application: Illustrated for South Africa
<scp>GHG</scp> emissions and other environmental impacts of indirect land use change mitigation
Mitigation of unwanted direct and indirect land‐use change – an integrated approach illustrated for palm oil, pulpwood, rubber and rice production in North and East Kalimantan, Indonesia
Projections of the availability and cost of residues from agriculture and forestry
Assessment of driving factors for yield and productivity developments in crop and cattle production as key to increasing sustainable biomass potentials
Competing uses of biomass: Assessment and comparison of the performance of bio-based heat, power, fuels and materials
Significance of Telecoupling for Exploration of Land-Use Change
Model collaboration for the improved assessment of biomass supply, demand, and impacts
Competing uses of biomass for energy and chemicals: implications for long‐term global <scp>CO</scp><sub>2</sub> mitigation potential
Critical aspects in the life cycle assessment (LCA) of bio-based materials – Reviewing methodologies and deriving recommendations
Energy demand and emissions of the non-energy sector