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Process intensification in continuous flow biocatalysis by up and downstream processing strategies.

Lars-Erik Meyer1, Markus Hobisch1, Selin Kara2

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This review explores continuous enzymatic production, highlighting process intensification through upstream enzyme immobilization and downstream processing in flow biocatalysis. It covers liquid-liquid extraction, adsorption, and crystallization for enhanced bioprocesses.

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Area of Science:

  • Biocatalysis
  • Chemical Engineering
  • Process Intensification

Background:

  • Continuous enzymatic production offers advantages over batch processes.
  • Process intensification is key to improving efficiency in biocatalysis.
  • Flow biocatalysis enables integrated upstream and downstream operations.

Purpose of the Study:

  • To review holistic continuous enzymatic production.
  • To emphasize process intensification in flow biocatalysis.
  • To provide an overview of upstream and downstream processing strategies.

Main Methods:

  • Enzyme immobilization techniques for upstream processing.
  • Continuous downstream processing unit operations: liquid-liquid extraction, adsorption, crystallization, and precipitation.

Main Results:

  • Enzyme immobilization is crucial for upstream flow biocatalysis.
  • Continuous downstream processing methods enhance overall efficiency.
  • Integrated upstream and downstream approaches are vital for holistic production.

Conclusions:

  • Continuous flow biocatalysis with intensified upstream and downstream processing is a promising area.
  • Further research into future trends will drive innovation in enzymatic production.