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  • BIONEXGEN will develop the next generation of biocatalysts that can be used to develop eco-efficient processes for the chemical industry. Using both renewable resources with reduced greenhouse gas production as compared to their fossil counterparts and biotechnological routes with reduced energy consumption and with lower toxic wastes compared to conventional chemical processes it will address the main objectives of this call.Routes to specialised, high-value chemicals (e.g. chiral chemical compounds) normally require long chemical synthetic routes involving complex reaction steps with toxic side products and waste streams this proposal will replace these by clean biocatalysis routes. To broaden the range of fine and speciality chemicals and intermediates produced by biotechnological routes, research will address: (i) design and optimisation of enzymes to be used in synthetic chemistry, (ii) the selection/development of modified microorganisms which may be resistant to heat, pressure or low pH while producing relevant or new chemical entities and (iii) the integration of biotechnological steps into conventional chemical processes. (en)
  • BIONEXGEN will develop the next generation of biocatalysts that can be used to develop eco-efficient processes for the chemical industry. Using both renewable resources with reduced greenhouse gas production as compared to their fossil counterparts and biotechnological routes with reduced energy consumption and with lower toxic wastes compared to conventional chemical processes it will address the main objectives of this call.Routes to specialised, high-value chemicals (e.g. chiral chemical compounds) normally require long chemical synthetic routes involving complex reaction steps with toxic side products and waste streams this proposal will replace these by clean biocatalysis routes. To broaden the range of fine and speciality chemicals and intermediates produced by biotechnological routes, research will address: (i) design and optimisation of enzymes to be used in synthetic chemistry, (ii) the selection/development of modified microorganisms which may be resistant to heat, pressure or low pH while producing relevant or new chemical entities and (iii) the integration of biotechnological steps into conventional chemical processes. (cs)
Title
  • Developing the Next Generation of Biocatalysts for Industrial Chemical Synthesis (en)
  • Developing the Next Generation of Biocatalysts for Industrial Chemical Synthesis (cs)
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  • Biocatalyst; chiral compound; green chemistry; modified microorganism; oligosaccharide; renewable polymer (en)
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