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Glucose oxidase induction and the modelling of gluconic acid production using Aspergillus niger

The aim of this project is to establish and understand the production of glucose oxidase and gluconic acid using the Aspergillus niger bioprocess and predict its response to operating conditions. Glucose oxidase and gluconic acid are produced by a wide range of microbes and have a variety of applica...

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Main Author: Johnson, Kim Henry Silvanus
Other Authors: Harrison, STL
Format: Thesis
Language:English
Published: Centre for Bioprocess Engineering Research 2016
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access_status_str Open Access
author Johnson, Kim Henry Silvanus
author2 Harrison, STL
author_browse Harrison, STL
Johnson, Kim Henry Silvanus
author_facet Harrison, STL
Johnson, Kim Henry Silvanus
author_sort Johnson, Kim Henry Silvanus
collection Thesis
description The aim of this project is to establish and understand the production of glucose oxidase and gluconic acid using the Aspergillus niger bioprocess and predict its response to operating conditions. Glucose oxidase and gluconic acid are produced by a wide range of microbes and have a variety of applications. In this study Aspergillus niger was chosen as the microorganism as it has the "generally accepted as safe" (gras) status in the U.S.A. It is also the major industrial producer. Glucose oxidase catalyses the conversion of glucose, oxygen and water to hydrogen peroxide and gluconic acid. This enzyme is used as a glucose and oxygen scavenger in the food industry and as a diagnostic tool in medicine for glucose determination. Gluconic acid is an organic acid used as a sequestering agent with a broad spectrum of applications. The world market for gluconic acid and its various salts was 45 000 metric tonnes in 1985 (Bigelis cited by Markwell et al. 1989). Gluconic acid and its derivatives can be produced using three technologies: electrolysis, mild chemical oxidation and bioprocess. The first two technologies have not been proven to be comnercially viable. The bioprocess offers diversity of feed and produces other products such as glucose oxidase. Literature has shown that the production of gluconic acid involves two kinetic areas. Firstly, the glucose oxidase enzyme must be induced. Secondly, glucose is converted to gluconic acid by the enzyme glucose oxidase. The factors affecting the kinetics associated with the induction of glucose oxidase have only been described qualitatively. Glucose, oxygen and pH have been shown to affect the induction of glucose oxidase. The effect of pH has been studied by Roukas and Harvey (1989) who found that induction, is maximal at a pH of between 5 and 6. The effect of glucose and oxygen have not been quantified. The kinetics of glucose oxidase conversion of glucose to gluconic acid have been well described by Atkinson and Lester (1974).
format Thesis
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institution University of Cape Town (South Africa)
language eng
last_indexed 2026-06-10T12:34:32.198Z
license_str Not specified — see source repository
provenance_str_mv Harvested via OAI-PMH from UCTD — University of Cape Town Open Access Repository
publishDate 2016
publishDateRange 2016
publishDateSort 2016
publisher Centre for Bioprocess Engineering Research
publisherStr Centre for Bioprocess Engineering Research
record_format dspace
source_str UCTD — University of Cape Town Open Access Repository
spelling oai:open.uct.ac.za:11427/21517 Glucose oxidase induction and the modelling of gluconic acid production using Aspergillus niger Johnson, Kim Henry Silvanus Harrison, STL Bioprocess Engineering The aim of this project is to establish and understand the production of glucose oxidase and gluconic acid using the Aspergillus niger bioprocess and predict its response to operating conditions. Glucose oxidase and gluconic acid are produced by a wide range of microbes and have a variety of applications. In this study Aspergillus niger was chosen as the microorganism as it has the "generally accepted as safe" (gras) status in the U.S.A. It is also the major industrial producer. Glucose oxidase catalyses the conversion of glucose, oxygen and water to hydrogen peroxide and gluconic acid. This enzyme is used as a glucose and oxygen scavenger in the food industry and as a diagnostic tool in medicine for glucose determination. Gluconic acid is an organic acid used as a sequestering agent with a broad spectrum of applications. The world market for gluconic acid and its various salts was 45 000 metric tonnes in 1985 (Bigelis cited by Markwell et al. 1989). Gluconic acid and its derivatives can be produced using three technologies: electrolysis, mild chemical oxidation and bioprocess. The first two technologies have not been proven to be comnercially viable. The bioprocess offers diversity of feed and produces other products such as glucose oxidase. Literature has shown that the production of gluconic acid involves two kinetic areas. Firstly, the glucose oxidase enzyme must be induced. Secondly, glucose is converted to gluconic acid by the enzyme glucose oxidase. The factors affecting the kinetics associated with the induction of glucose oxidase have only been described qualitatively. Glucose, oxygen and pH have been shown to affect the induction of glucose oxidase. The effect of pH has been studied by Roukas and Harvey (1989) who found that induction, is maximal at a pH of between 5 and 6. The effect of glucose and oxygen have not been quantified. The kinetics of glucose oxidase conversion of glucose to gluconic acid have been well described by Atkinson and Lester (1974). 2016-08-24T13:00:20Z 2016-08-24T13:00:20Z 1995 Master Thesis Masters MSc (Eng) http://hdl.handle.net/11427/21517 eng application/pdf Centre for Bioprocess Engineering Research Faculty of Engineering and the Built Environment University of Cape Town
spellingShingle Bioprocess Engineering
Johnson, Kim Henry Silvanus
Glucose oxidase induction and the modelling of gluconic acid production using Aspergillus niger
thesis_degree_str Master's
title Glucose oxidase induction and the modelling of gluconic acid production using Aspergillus niger
title_full Glucose oxidase induction and the modelling of gluconic acid production using Aspergillus niger
title_fullStr Glucose oxidase induction and the modelling of gluconic acid production using Aspergillus niger
title_full_unstemmed Glucose oxidase induction and the modelling of gluconic acid production using Aspergillus niger
title_short Glucose oxidase induction and the modelling of gluconic acid production using Aspergillus niger
title_sort glucose oxidase induction and the modelling of gluconic acid production using aspergillus niger
topic Bioprocess Engineering
url http://hdl.handle.net/11427/21517
work_keys_str_mv AT johnsonkimhenrysilvanus glucoseoxidaseinductionandthemodellingofgluconicacidproductionusingaspergillusniger