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Influence of high-pressure steam pretreatment on the structure of rice husk and enzymatic saccharification in a two-step system


Citation

Kazeem, Muinat Olanike and Md Shah, Umi Kalsom and Samsu Baharuddin, Azhari and Abdul Rahman, Nor' Aini (2017) Influence of high-pressure steam pretreatment on the structure of rice husk and enzymatic saccharification in a two-step system. BioResources, 12 (3). pp. 6207-6236. ISSN 1930-2126

Abstract

This study aimed at developing an operational high-pressure steam pretreatment (HPSP) to effectively modify rice husk for enzymatic saccharification. The HPSP was performed at 160 to 200 °C under 0.3 to 2.8 MPa for 2 to 10 min. The efficiency of this method was based on the chemical composition, scanning electron microscopy (SEM), Fourier transform infrared (FTIR), and X-ray diffraction (XRD) analyses. Optimum pretreatment conditions (200 °C, 1.85 MPa for 7 min), enzyme concentration at 30 FPU/g and temperature at 60 °C for 48 h of continuous saccharification effectively produced sugar (21.1 g/L = 0.422 g/g dry substrate) at a saccharification degree of 53.87%. Conducting a second-step enzymatic saccharification resulted in additional sugar production (7.9 g/L = 0.158 g/g substrate) and a 20.44% saccharification degree. In contrast, the two-step saccharification process (48 and 24 h) achieved optimal sugar yield of 0.581 g/g substrate and saccharification degree of 73.5%. Additionally, the process improved the yield of monomeric sugars of glucose (0.465 g/g), xylose (0.010 g/g), and cellobiose (0.063 g/g). Therefore, the combination of the high-pressure steam pretreatment with thermostable cellulase from Bacillus licheniformis 2D55 in a two-step enzymatic saccharification process is an economically viable method in rice husk bioprocessing for sugar production.


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Additional Metadata

Item Type: Article
Divisions: Faculty of Biotechnology and Biomolecular Sciences
Publisher: North Carolina State University
Keywords: High-pressure steam pretreatment; Rice husk; Structural characterisation; Bacillus licheniformis 2D55 thermostable cellulose; Two-stage enzymatic saccharification
Depositing User: Nurul Ainie Mokhtar
Date Deposited: 17 Apr 2019 08:37
Last Modified: 17 Apr 2019 08:37
URI: http://psasir.upm.edu.my/id/eprint/62159
Statistic Details: View Download Statistic

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