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Optimal Control Theory and Trajectory Optimization

This article explores the fundamental principles of optimal control theory, focusing on how mathematical frameworks are used to determine optimal trajectories that maximize a specified objective function while adhering to physical constraints.

Operational Considerations for Engineered Bioremediation Consortia

Successful deployment of engineered microbial consortia requires addressing complex operational challenges, including enhancing pollutant bioavailability, ensuring genetic stability and containment, and optimizing the system for diverse environmental parameters.

Optimizing Fed-Batch Strategies for High-Titer Bioproducts

This article reviews advanced operational parameters and control methodologies necessary to optimize fed-batch culture for high-titer bioproducts. It emphasizes the shift from empirical feeding to model-predictive, real-time control strategies to maximize volumetric productivity and minimize… 

Bioprocess Modeling and Control

Bioprocess modeling and control are essential disciplines in industrial biotechnology, providing the framework to design, operate, and optimize large-scale fermentation and biomanufacturing operations by translating complex biological phenomena into predictable mathematical frameworks.

Concentration Polarization in Membrane Perfusion Systems

Concentration polarization (CP) limits the flux in membrane filtration systems by causing solute accumulation at the membrane surface. Pulsed flow is an effective method to mitigate CP by disrupting the stagnant boundary layer, enhancing mass…