H2020Doctoral network2021–2024

ConCO2rde · Training network on the conversion of CO2 by smart autotrophic biorefineries

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2021-01-01 → 2024-12-31
EU contribution
€2,880,146
Participants
6
Scheme
MSCA-ITN

Lines connect the coordinator with its partners.

Results in brief

Training network on the conversion of CO2 by smart autotrophic biorefineries

With a growing world population, depleting fossil resources and ongoing climate change, innovative new approaches are needed to reintegrate the greenhouse gas carbon dioxide into a circular economy and provide sustainable sources of energy and materials for future generations. An important step towards a carbon-neutral bioeconomy is the valorization of carbon dioxide as a feedstock. Most commodity chemicals are still derived exclusively from fossil resources such as oil, natural gas and coal. Biomanufacturing through fermentation enables the sustainable, targeted production of desired chemicals using "above-ground" carbon sources. Recently, several routes for the direct utilization of carbon dioxide have been proposed, including autotrophic microorganisms with the natural ability to grow on C1 compounds, synthetic carbon dioxide fixation pathways, and the design of synthetic autotrophs. While the various engineered synthetic pathways for carbon dioxide utilization seem promising in terms of efficiency and modularity, these approaches mostly suffer from reduced energy supply, compartmentalization, host selection, and net carbon dioxide assimilation. ConCO2rde's goal was to harness the power of autotrophic microorganisms to use renewable energy (e.g. green hydrogen) for the accumulation of biomass directly from carbon dioxide to synthesize valuable chemicals with much lower environmental impact. To achieve this goal, ConCO2rde has leveraged complementary expertise in synthetic biology, metabolic engineering, biocatalysis and process engineering, with strong participation from industrial partners. ConCO2rde trained 11 Early Stage Researchers (ESRs) in cutting-edge research projects on (i) the combination of synthetic biology with metabolic and process engineering to create an efficient pathway from carbon dioxide fixation to chemical production, (ii) the application of hydrogen-driven biotransformations using redox enzymes for the synthesis of high-value chemicals, and (iii) the development of novel reactor concepts for gas fermentations using hydrogen, carbon dioxide and oxygen towards commercially relevant processes. The close interaction between academia and industry was crucial in qualifying these young scientists to take up decision-making positions within the European biotech sector and make a difference for sustainability and the circular carbon bioeconomy. Overall, ConCO2rde's interdisciplinary consortium of 17 leading academic and private organizations provided the ideal environment to foster complementary expertise in synthetic biology, metabolic engineering, biocatalysis and process engineering, while providing 11 young researchers with in-depth training in an interdisciplinary working environment, strengthened by transferable skills training with strong industrial participation.

Data: CORDIS, © European Union

Project objective

The development of processes for the utilization of renewable resources is one of the main challenges of our society. The CONCO2RDE EJD will train 11 ESRs in cutting edge research projects on (i) the combination of synthetic biology approaches with metabolic and process engineering for an adaptive laboratory evolution to create an efficient route from CO2 fixation to the production of chemicals, (ii) H2/CO2/O2-based fermentation and process intensification in order to optimize commercially relevant processes together with industry, (iii) defining a road-map for the industrial implementation of autotrophic biotransformations. The double degree program allows in-depth training in two complementary disciplines, further strengthened by a transferable skills training with strong industry participation. The objectives will be attained through a consortium of one translational institute, six universities, eight industrial partners and one cluster, providing the ideal environment to foster complementary expertise in synthetic biology, metabolic engineering, biocatalysis, process engineering and analytics. CONCO2RDE focuses on the development of genetic tools for strain manipulation, the integration of H2-driven biotransformations, new reactor concepts for H2/CO2/O2-based fermentation to reach high cell densities and a better understanding of the cell physiology under autotrophic culture conditions. CONCO2RDE's research agenda will be accompanied by a dedicated training of the ESRs as well as the dissemination of results to the scientific community and the wider public. The inter- and multidisciplinary setting offered through double degrees combined with industrial training in secondments and the training agenda will not only provide the tools and means necessary for the implementation of sustainable processes, but also prepare the next generation of researchers for the implementation of sustainable autotrophic processes in the European Biotech sector.

Original text from CORDIS.

Participants

  • ACIB GMBH · GrazCoordinatorAustria
  • INSTITUT NATIONAL DES SCIENCES APPLIQUEES DE TOULOUSE · ToulouseFrance
  • RHEINISCH-WESTFAELISCHE TECHNISCHE HOCHSCHULE AACHEN · AachenGermany
  • RIJKSUNIVERSITEIT GRONINGEN · GroningenNetherlands
  • TECHNISCHE UNIVERSITAT BERLIN · BerlinGermany
  • UNIVERSIDADE NOVA DE LISBOA · LisboaPortugal

Links

Data: CORDIS, © European Union