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Mathematical Modeling and Control of Bioprocesses

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mathematical model; continuous bioreactor; biodegradation; phenol and p-cresol mixture; SKIP model; equilibrium points; stability analysis; global stabilizability; numerical simulation; MEC; hydrogen production; online optimization; golden section search; super-twisting controller; FPGA; bioplastic; copolymerization; polyhydroxyalkanoate; kinetic modeling; PID (PI) control; gain-scheduling; biotechnological cultivation process; dissolved oxygen concentration; flux variability analysis; flux balance analysis; sampling; metabolic network; elementary flux modes; set membership estimation; dynamic flux balance model; multiparametric programming; observability; variable structure system; process analytical technologies (PAT); off-gas analytic; real-time monitoring; viable cell biomass; perfusion process; continuous process; single-use bioreactor (SUB); oxygen uptake rate (OUR); soft sensor; metabolic flux analysis; VERO cells; biotechnology; B. thuringiensis kurstaki; biopesticides; kinetic parameters; dynamic model; composting; optimization; mathematical modeling; anaerobic digestion; biogas; chemostat; maintenance; operating diagram; productivity; stability; optimal control; modelling; microalgae; nonlinear control; Pontryagin’s principle; singular control; Droop model; photobioreactor; biomass; biorefinery design; process integration; scheduling; simulation; n/a

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Suiza