Batch process modelling and economic evaluation of glucuronidase enzyme production
β-glucuronidases enzyme is a valued product in the pharmaceutical industry. This work features the modeling and optimization of β-glucuronidases enzyme production from recombinant E. coli using SuperPro Designer v5, a commercial batch process simulator. The study focuses on designing an economical...
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my.iium.irep.258052012-11-06T02:21:02Z http://irep.iium.edu.my/25805/ Batch process modelling and economic evaluation of glucuronidase enzyme production Kamuri, M Firdaus Foo, Dominic Chwan Yee Mel, Maizirwan TP155 Chemical engineering TP248.13 Biotechnology β-glucuronidases enzyme is a valued product in the pharmaceutical industry. This work features the modeling and optimization of β-glucuronidases enzyme production from recombinant E. coli using SuperPro Designer v5, a commercial batch process simulator. The study focuses on designing an economically viable β- glucuronidases enzyme production process. In the base case process, an annual production of 956 batches (corresponding to 8,523 kg) of β- glucuronidases enzyme was made. Seven alternatives production schemes were further developed for increased production using batch debottlenecking strategy. The best alternative scheme was reported to achieve a product yield of 100% increment, with an annual production of 1912 batches of β- glucuronidases enzyme. Economic analysis determined that the proposed alternative scheme has an annual revenue of USD 44M, with a 15.24% gross margin and a 29.44% of return on investment. The payback period of this scheme was estimated to be less than four years. OMICS Group 2012 Article REM application/pdf en http://irep.iium.edu.my/25805/1/J_Bioprocess_and_Biotechniques.pdf Kamuri, M Firdaus and Foo, Dominic Chwan Yee and Mel, Maizirwan (2012) Batch process modelling and economic evaluation of glucuronidase enzyme production. Bioprocessing and Biotechniques (S4). pp. 1-7. ISSN 2155-9821 http://dx.doi.org/10.4172/2155-9821.S4-001 |
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TP155 Chemical engineering TP248.13 Biotechnology Kamuri, M Firdaus Foo, Dominic Chwan Yee Mel, Maizirwan Batch process modelling and economic evaluation of glucuronidase enzyme production |
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β-glucuronidases enzyme is a valued product in the pharmaceutical industry. This work features the modeling
and optimization of β-glucuronidases enzyme production from recombinant E. coli using SuperPro Designer v5, a
commercial batch process simulator. The study focuses on designing an economically viable β- glucuronidases enzyme
production process. In the base case process, an annual production of 956 batches (corresponding to 8,523 kg) of
β- glucuronidases enzyme was made. Seven alternatives production schemes were further developed for increased
production using batch debottlenecking strategy. The best alternative scheme was reported to achieve a product yield
of 100% increment, with an annual production of 1912 batches of β- glucuronidases enzyme. Economic analysis
determined that the proposed alternative scheme has an annual revenue of USD 44M, with a 15.24% gross margin
and a 29.44% of return on investment. The payback period of this scheme was estimated to be less than four years. |
format |
Article |
author |
Kamuri, M Firdaus Foo, Dominic Chwan Yee Mel, Maizirwan |
author_facet |
Kamuri, M Firdaus Foo, Dominic Chwan Yee Mel, Maizirwan |
author_sort |
Kamuri, M Firdaus |
title |
Batch process modelling and economic evaluation of glucuronidase enzyme production |
title_short |
Batch process modelling and economic evaluation of glucuronidase enzyme production |
title_full |
Batch process modelling and economic evaluation of glucuronidase enzyme production |
title_fullStr |
Batch process modelling and economic evaluation of glucuronidase enzyme production |
title_full_unstemmed |
Batch process modelling and economic evaluation of glucuronidase enzyme production |
title_sort |
batch process modelling and economic evaluation of glucuronidase enzyme production |
publisher |
OMICS Group |
publishDate |
2012 |
url |
http://irep.iium.edu.my/25805/1/J_Bioprocess_and_Biotechniques.pdf http://irep.iium.edu.my/25805/ http://dx.doi.org/10.4172/2155-9821.S4-001 |
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1643609007566356480 |