Please use this identifier to cite or link to this item: http://localhost:80/xmlui/handle/123456789/14028
Title: PROCESS OPTIMIZATION OF CITRIC ACID PRODUCTION FROM ASPERGILLUS NIGER USING FUZZY LOGIC DESIGN
Authors: ALI, SIKANDER
HAQ, IKRAM UL
Keywords: Aspergillus niger
Fuzzy-logic
Kinetics
Citric acid
Microbial fermentation
Aspergillus niger
Issue Date: 16-Nov-2014
Publisher: Karachi: Pakistan Journal of Botany, Botanical Garden, University of Karachi
Citation: Sikander, A. (2014). Process optimization of citric acid production from Aspergillus niger using fuzzy logic design. Pakistan Journal of Botany, 46(5), 1899-1903.
Abstract: The inherent non-linearity of citric acid fermentation from Aspergillus niger renders its control difficult, so there is a need to fine-tune the bioreactor performance for maximum production of citric acid in batch culture. For this, fuzzy logic is becoming a popular tool to handle non-linearity of a batch process. The present manuscript deals with fuzzy logic control of citric acid accretion by A. niger in a stirred tank reactor using blackstrap sugarcane molasses as a basal fermentation medium. The customary batches were termed as ‘control’ while those under fuzzy logic were ‘experimental’. The performance of fuzzy logic control of stirred tank reactor was found to be very encouraging for enhanced production of citric acid. The comparison of kinetic parameters showed improved citrate synthase ability of experimental culture (Yp/x = 7.042 g/g). When the culture grown on 150 g/l carbohydrates was monitored for Qp, Qs and Yp/s, there was significant enhancement in these variables over the control. Specific productivity of culture (qp = 0.070 g/g cells/h) was several fold increased. The enthalpy (ΔHD = 70.5 kJ/mol) and entropy of activation (ΔS = -144 J/mol/K) of enzyme for citric acid biosynthesis, free energies for transition state formation and substrate binding for sucrose hydrolysis of experimental were substantially improved.
URI: http://142.54.178.187:9060/xmlui/handle/123456789/14028
ISSN: 2070-3368
Appears in Collections:Issue 05

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