Continuously Stirred Tank Reactor

A Continuously Stirred Tank Reactor (CSTR) is a vessel in which reactants enter continuously, products leave continuously, and mechanical agitation maintains a nearly uniform composition throughout the tank. In bioengineering, controlled mixing, temperature, pH, and nutrient delivery support microbial or cell growth, while the dilution rate, defined by the feed flow relative to reactor volume, influences residence time and determines whether a culture reaches steady state or is washed out. CSTRs provide a practical model for continuous fermentation, wastewater treatment, and bioprocess development, enabling researchers to study reaction kinetics, mass transfer, productivity, and process stability under defined operating conditions.

Continuously Stirred Tank Reactor - Related Videos

Research

JoVE Journal - Bioengineering

Continuously-stirred Anaerobic Digester to Convert Organic Wastes into Biogas: System Setup and Basic Operation

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Cited by 34 •

2012

Laboratory-scale anaerobic digesters allow scientists to research new ways of optimizing existing applications of anaerobic biotechnology and to evaluate the methane producing potential of various organic wastes. This article introduces a generalized model for the construction, inoculation, operation, and monitoring of a laboratory-scale continuously stirred anaerobic digester.

Education

JoVE Science Education - Engineering

Batch and Continuous Bioreactors

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2023

Bioreactors are used to grow organisms in large volumes, thereby enabling the production of mass quantities of the target product. These reactors can be batch reactors, which contain all of the components needed for cell growth, or continuous reactors, which have inlet and outlet ports allowing for the addition of fresh growth media and the removal of cell waste. This video presents batch and continuous reactors and demonstrates the use of bioreactors to grow bacteria in the laboratory.

Liquid Phase Reactor: Sucrose Inversion

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2023

Source: Kerry M. Dooley and Michael G. Benton, Department of Chemical Engineering, Louisiana State University, Baton Rouge, LA Both batch and continuous flow reactors are used in catalytic reactions. Packed beds, which use solid catalysts and a continuous flow, are the most common configuration. In the absence of an extensive recycle stream, such packed bed reactors are typically modeled as "plug flow". The other most common continuous reactor is a stirred tank, which is assumed to be perfectly...

Study of Siphon Breaker Experiment and Simulation for a Research Reactor

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Cited by 2 •

2017

The siphon breaking phenomenon was investigated experimentally and a theoretical model was proposed. A simulation program based on the theoretical model was developed and the results of the simulation program were compared with experimental results. It was concluded that the results of the simulation program matched the experimental results well.

Catalytic Reactor: Hydrogenation of Ethylene

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2023

Source: Kerry M. Dooley and Michael G. Benton, Department of Chemical Engineering, Louisiana State University, Baton Rouge, LA The hydrogenation of ethylene (C2H4) to ethane (C2H6) has often been studied as a model reduction reaction in characterizing new metal catalysts.1-2 While supported nickel is not the most active metal catalyst for this reaction, it is active enough that reaction can take place at < 200°C. The reaction typically involves adsorbed, dissociated hydrogen (H2) reacting...

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