Publication | Closed Access
Novel Innovation Systems for a Cellular Approach to Continuous Process Chemistry from Discovery to Market
132
Citations
15
References
2004
Year
Microreaction TechnologyEngineeringProcess DevelopmentSynthetic CircuitBiological ComputingChemistryCellular ApproachMolecular ComputingMolecular DesignChemical EngineeringSustainable SynthesisNovel Innovation SystemsContinuous Process ChemistryFlow SynthesisMolecular EngineeringChemical IntermediateBiomolecular EngineeringProcess IntensificationContinuous ProcessingSynthetic BiologyProcess ChemistryContinuous Multistep Process
Continuous processing of liquid/liquid synthesis and microreaction technology are shown to reduce the cost of process development and manufacturing of active pharmaceutical ingredients and other functional molecules on a commercial scale. Combinatorial synthesis systems for continuous chemistry are introduced, and their applications are described. Reactions within these systems scale seamlessly in standardized commercial continuous synthesis equipment allowing rapid access to kilogram quantities of advanced intermediates. Chemical and process development within such systems are illustrated by a case study of a continuous multistep process. Additionally, another case study shows the benefit of microreaction technology in the manufacture of high value added functional chemicals.
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