Continuous Extraction

Continuous extraction is a separation technique that transfers a target compound from one phase into another while feed materials and extracted products move through the system continuously. In bioengineering, a solvent or other selective phase contacts a biological feed, and differences in solubility, partitioning, or binding drive mass transfer across an interface; controlled flow rates, mixing, and phase separation sustain the process. This approach can recover metabolites, proteins, lipids, and other valuable bioproducts during or after cultivation. By reducing batch interruptions and integrating with bioreactors or downstream purification, continuous extraction can improve productivity, process consistency, and scalability in biomanufacturing.

Continuous Extraction - Related Videos

Research

JoVE Journal - Medicine

Dynamic Continuous Blood Extraction from Rat Heart via Noninvasive Microdialysis Technique

0 Views •

Cited by 1 •

2022

The present protocol describes a simple and efficient method for the real-time and dynamic collection of rat heart blood using the microdialysis technique.

Education

JoVE Lab Manual - Chemistry

Extraction - Concepts

0 Views •

2020

Extraction Extraction is a common technique used in organic chemistry to isolate a target compound. In the extraction process, a solute is transferred from one phase to another to separate it from unreacted starting materials or impurities. Extraction is also used to facilitate the isolation of a solute from a reaction solvent that is difficult to remove by evaporation, such as a solvent with a high boiling point. Generally, there are three types of extractions. First, in solid-liquid...

Extraction - Student Protocol

0 Views •

2020

Source: Lara Al Hariri and Ahmed Basabrain at the University of Massachusetts Amherst, MA, USA Cellulose RecoveryExpand Extraction and filtration can separate compounds based on their solubility properties. In this lab, you'll separate a mixture of cellulose, caffeine, and benzoic acid based on their solubilities in dichloromethane, or DCM, and water. Caffeine and benzoic acid are both soluble in DCM, but cellulose is not. Thus, in this part, you'll first dissolve as much of the mixture as...

Batch and Continuous Bioreactors

0 Views •

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.

Extraction of Biomarkers from Sediments - Accelerated Solvent Extraction

0 Views •

2023

Source: Laboratory of Jeff Salacup - University of Massachusetts Amherst The distribution of a group of organic biomarkers called glycerol-dialkyl glycerol-tetraethers (GDGTs), produced by a suite of archaea and bacteria, were found in modern sediments to change in a predictable manner in response to air or water temperature1,2. Therefore, the distribution of these biomarkers in a sequence of sediments of known age can be used to reconstruct the evolution of air and/or water temperature on...

View All Results

FAQs

Related Topics