Production and optimization of cellulase enzyme using aspergillus niger USM A1 and comparison with trichoderma reesei via solid state fermentation system.
Novel design solid state bioreactor, FERMSOSTAT, had been evaluated in cellulase production studies using local isolate Aspergillus niger USM AI 1 grown on sugarcane bagasse and palm kernel cake at 1 : 1 (w/w) ratio. Under optimised SSF conditions of 0.5 kg substrate; 70% (w/w) moisture content; 30∘...
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my.umk.eprints.76442022-05-23T10:21:27Z http://discol.umk.edu.my/id/eprint/7644/ Production and optimization of cellulase enzyme using aspergillus niger USM A1 and comparison with trichoderma reesei via solid state fermentation system. C.K.Lee Darah Ibrahim Ibrahim Che Omar Novel design solid state bioreactor, FERMSOSTAT, had been evaluated in cellulase production studies using local isolate Aspergillus niger USM AI 1 grown on sugarcane bagasse and palm kernel cake at 1 : 1 (w/w) ratio. Under optimised SSF conditions of 0.5 kg substrate; 70% (w/w) moisture content; 30∘C; aeration at 4 L/h·g fermented substrate for 5 min and mixing at 0.5 rpm for 5 min, about 3.4 U/g of Filter paper activity (FPase) was obtained. At the same time, comparative studies of the enzymes production under the same SSF conditions indicated that FPase produced by A. niger USM AI 1 was about 35.3% higher compared to Trichoderma reesei. This shows that the performance of this newly designed SSF bioreactor is acceptable and potentially used as prototype for larger-scale bioreactor design 2011 Non-Indexed Article NonPeerReviewed C.K.Lee and Darah Ibrahim and Ibrahim Che Omar (2011) Production and optimization of cellulase enzyme using aspergillus niger USM A1 and comparison with trichoderma reesei via solid state fermentation system. Biotechnology Research International, 2011. pp. 1-6. ISSN 2090-3146 http://www.hindawi.com/journals/btri/2011/658493/ 10.4061/2011/658493 10.4061/2011/658493 10.4061/2011/658493 |
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Novel design solid state bioreactor, FERMSOSTAT, had been evaluated in cellulase production studies using local isolate Aspergillus niger USM AI 1 grown on sugarcane bagasse and palm kernel cake at 1 : 1 (w/w) ratio. Under optimised SSF conditions of 0.5 kg substrate; 70% (w/w) moisture content; 30∘C; aeration at 4 L/h·g fermented substrate for 5 min and mixing at 0.5 rpm for 5 min, about 3.4 U/g of Filter paper activity (FPase) was obtained. At the same time, comparative studies of the enzymes production under the same SSF conditions indicated that FPase produced by A. niger USM AI 1 was about 35.3% higher compared to Trichoderma reesei. This shows that the performance of this newly designed SSF bioreactor is acceptable and potentially used as prototype for larger-scale bioreactor design |
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Non-Indexed Article |
author |
C.K.Lee Darah Ibrahim Ibrahim Che Omar |
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C.K.Lee Darah Ibrahim Ibrahim Che Omar Production and optimization of cellulase enzyme using aspergillus niger USM A1 and comparison with trichoderma reesei via solid state fermentation system. |
author_facet |
C.K.Lee Darah Ibrahim Ibrahim Che Omar |
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C.K.Lee |
title |
Production and optimization of cellulase enzyme using aspergillus niger USM A1 and comparison with trichoderma reesei via solid state fermentation system. |
title_short |
Production and optimization of cellulase enzyme using aspergillus niger USM A1 and comparison with trichoderma reesei via solid state fermentation system. |
title_full |
Production and optimization of cellulase enzyme using aspergillus niger USM A1 and comparison with trichoderma reesei via solid state fermentation system. |
title_fullStr |
Production and optimization of cellulase enzyme using aspergillus niger USM A1 and comparison with trichoderma reesei via solid state fermentation system. |
title_full_unstemmed |
Production and optimization of cellulase enzyme using aspergillus niger USM A1 and comparison with trichoderma reesei via solid state fermentation system. |
title_sort |
production and optimization of cellulase enzyme using aspergillus niger usm a1 and comparison with trichoderma reesei via solid state fermentation system. |
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2011 |
url |
http://discol.umk.edu.my/id/eprint/7644/ http://www.hindawi.com/journals/btri/2011/658493/ |
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1763303870704910336 |
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13.211869 |