Development and characterization of microfiltration hollow-fiber modules for sterilization of fermentation media

Sterilization of fermentation medium involving heat may result in undesirable chemical reactions that alter nutrient concentration and yield products, which interfere in the fermentation performance. Sterilization of heat-sensitive compounds usually involves separate sterilizations of carbon source...

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Main Authors: L.F.F. Faria, M. Di Luccio, R. Nobrega, C.P. Borges
Format: Article
Language:English
Published: Brazilian Society of Chemical Engineering 2002-04-01
Series:Brazilian Journal of Chemical Engineering
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-66322002000200009
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spelling doaj-7a6b38b1cecf481aa4dad978c2f7ef2f2020-11-24T22:38:24ZengBrazilian Society of Chemical EngineeringBrazilian Journal of Chemical Engineering0104-66321678-43832002-04-0119214115010.1590/S0104-66322002000200009Development and characterization of microfiltration hollow-fiber modules for sterilization of fermentation mediaL.F.F. FariaM. Di LuccioR. NobregaC.P. BorgesSterilization of fermentation medium involving heat may result in undesirable chemical reactions that alter nutrient concentration and yield products, which interfere in the fermentation performance. Sterilization of heat-sensitive compounds usually involves separate sterilizations of carbon source and nutrient solution. Membrane separation processes are an alternative to thermal processes, as they have many advantages such as the possibility of continuous and modular operation and the use of moderate temperatures. In this context, the objective of this work was the preparation of hollow-fiber membranes and the design of modules suitable for continuous sterilization of fermentation medium. The membrane with the best performance had a maximum pore diameter of 0.2 mu m and a permeability of 42.9 L/m².bar.h for a glucose/peptone/yeast extract medium. A module with 0.26 m² of permeation area was built with these membranes. This module was able to provide a permeate flow rate of 2.2 L/h using a pressure difference of 0.2 bar. The collected permeate was completely sterile, thus confirming the efficiency of this process.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-66322002000200009sterilizationmembrane processesmicrofiltrationfermentation
collection DOAJ
language English
format Article
sources DOAJ
author L.F.F. Faria
M. Di Luccio
R. Nobrega
C.P. Borges
spellingShingle L.F.F. Faria
M. Di Luccio
R. Nobrega
C.P. Borges
Development and characterization of microfiltration hollow-fiber modules for sterilization of fermentation media
Brazilian Journal of Chemical Engineering
sterilization
membrane processes
microfiltration
fermentation
author_facet L.F.F. Faria
M. Di Luccio
R. Nobrega
C.P. Borges
author_sort L.F.F. Faria
title Development and characterization of microfiltration hollow-fiber modules for sterilization of fermentation media
title_short Development and characterization of microfiltration hollow-fiber modules for sterilization of fermentation media
title_full Development and characterization of microfiltration hollow-fiber modules for sterilization of fermentation media
title_fullStr Development and characterization of microfiltration hollow-fiber modules for sterilization of fermentation media
title_full_unstemmed Development and characterization of microfiltration hollow-fiber modules for sterilization of fermentation media
title_sort development and characterization of microfiltration hollow-fiber modules for sterilization of fermentation media
publisher Brazilian Society of Chemical Engineering
series Brazilian Journal of Chemical Engineering
issn 0104-6632
1678-4383
publishDate 2002-04-01
description Sterilization of fermentation medium involving heat may result in undesirable chemical reactions that alter nutrient concentration and yield products, which interfere in the fermentation performance. Sterilization of heat-sensitive compounds usually involves separate sterilizations of carbon source and nutrient solution. Membrane separation processes are an alternative to thermal processes, as they have many advantages such as the possibility of continuous and modular operation and the use of moderate temperatures. In this context, the objective of this work was the preparation of hollow-fiber membranes and the design of modules suitable for continuous sterilization of fermentation medium. The membrane with the best performance had a maximum pore diameter of 0.2 mu m and a permeability of 42.9 L/m².bar.h for a glucose/peptone/yeast extract medium. A module with 0.26 m² of permeation area was built with these membranes. This module was able to provide a permeate flow rate of 2.2 L/h using a pressure difference of 0.2 bar. The collected permeate was completely sterile, thus confirming the efficiency of this process.
topic sterilization
membrane processes
microfiltration
fermentation
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-66322002000200009
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AT rnobrega developmentandcharacterizationofmicrofiltrationhollowfibermodulesforsterilizationoffermentationmedia
AT cpborges developmentandcharacterizationofmicrofiltrationhollowfibermodulesforsterilizationoffermentationmedia
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