Affiliation:
1. Faculty of Technology and Metallurgy, Belgrade
2. Faculty of Technology, Novi Sad
Abstract
In line with the goals of sustainable development and environmental
protection today great attention is directed towards new technologies for
waste and industrial by-products utilization. Waste products represent
potentially good raw material for production other valuable products, such as
bioethanol, biogas, biodiesel, organic acids, enzymes, microbial biomass,
etc. Since the first industrial production to the present, lactic acid has
found wide application in food, cosmetic, pharmaceutical and chemical
industries. In recent years, the demand for lactic acid has been increasing
considerably owing to its potential use as a monomer for the production of
poly-lactic acid (PLA) polymers which are biodegradable and biocompatible
with wide applications. Waste and industrial by-products such are whey,
molasses, stillage, waste starch and lignocellulosic materials are a good
source of fermentable sugars and many other substances of great importance
for the growth of microorganisms, such as proteins, minerals and vitamins.
Utilization of waste products for production of lactic acid could help to
reduce the total cost of lactic acid production and except the economic
viability of the process offers a solution of their disposal. Fermentation
process depends on chemical and physical nature of feedstocks and the lactic
acid producer. This review describes the characteristics, abilities and
limits of microorganisms involved in lactic acid production, as well as the
characteristics and types of waste products for lactic acid production. The
fermentation methods that have been recently reported to improve lactic acid
production are summarized and compared. In order to improve processes and
productivity, fed-batch fermentation, fermentation with immobilized cell
systems and mixed cultures and opportunities of open (non-sterilized)
fermentation have been investigated.
Publisher
National Library of Serbia
Subject
General Chemical Engineering,General Chemistry
Cited by
1 articles.
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