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Prospective Sustainability-Oriented Design of Innovative Integrated Biomethane and Microbial Protein Systems
Linked Sessions:
Main Presenter: Alberto Bezama
Co-Authors:
Integrating energy and protein production offers new opportunities to reduce the environmental footprint of food and energy systems. Microbial protein production, in particular, can reduce reliance on land- and resource-intensive feed crops while improving nutrient efficiency. The BioGas2protein project investigates an innovative integrated concept in which biogas is upgraded via microbial consortia, enabling the simultaneous production of biomethane and microbial protein from waste gas streams.
The methodological core of the project is a parallel, iterative optimization framework that couples process modeling with environmental assessment. Laboratory-scale data are upscaled and technically optimized using SuperPro Designer, generating mass and energy balances and alternative process configurations. In parallel, environmental life cycle assessment is conducted in openLCA, with environmental indicators explicitly incorporated as optimization parameters rather than applied as a post hoc evaluation. The resulting feedback loop allows environmental performance to directly inform and steer technical process development.
In a subsequent step, the framework will be extended to a prospective holistic sustainability assessment using the UFZ-developed HILCSA model. Sustainability indicators will be systematically mapped to relevant Sustainable Development Goals (SDGs), enabling a transparent and methodologically consistent alignment of environmental, economic, and social results with SDG targets. This approach supports sustainability-driven innovation at low technology readiness levels, when design flexibility is highest, and provides a robust decision-support framework for the development of integrated bio-based energy and protein production systems.