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High yield production of sugars from deproteinated palm kernel cake under microwave irradiation via dilute sulfuric acid hydrolysis
Fan, Suet-Pin; Jiang, Li-Qun; Chia, Chin-Hua; Fang, Zhen; et al
2014
Source PublicationBIORESOURCE TECHNOLOGY
Volume153Issue:xPages:69-78
AbstractRecent years, great interest has been devoted to the conversion of biomass-derived carbohydrate into sugars, such as glucose, mannose and fructose. These are important versatile intermediate products that are easily processed into high value-added biofuels. In this work, microwave-assisted dilute sulfuric acid hydrolysis of deproteinated palm kernel cake (DPKC) was systematically studied using Response Surface Methodology. The highest mannose yield (92.11%) was achieved at the optimized condition of 148 degrees C, 0.75 N H2SO4, 10 min 31 s and substrate to solvent (SS) ratio (w/v) of 1:49.69. Besides that, total fermentable sugars yield (77.11%), was obtained at 170 degrees C, 0.181 N H2SO4, 6 min 6 s and SS ratio (w/v) of 1:40. Ridge analysis was employed to further verify the optimum conditions. Thus, this work provides fundamental data of the practical use of DPKC as low cost, high yield and environmental-friendly material for the production of mannose and other sugars.
KeywordMannose Microwave-assisted Hydrolysis Palm Kernel Cake Ridge Analysis Rsm Optimization
Document Type期刊论文
Identifierhttps://ir.xtbg.ac.cn/handle/353005/4866
Collection生物能源研究组
Recommended Citation
GB/T 7714
Fan, Suet-Pin,Jiang, Li-Qun,Chia, Chin-Hua,et al. High yield production of sugars from deproteinated palm kernel cake under microwave irradiation via dilute sulfuric acid hydrolysis[J]. BIORESOURCE TECHNOLOGY,2014,153(x):69-78.
APA Fan, Suet-Pin,Jiang, Li-Qun,Chia, Chin-Hua,Fang, Zhen,&et al.(2014).High yield production of sugars from deproteinated palm kernel cake under microwave irradiation via dilute sulfuric acid hydrolysis.BIORESOURCE TECHNOLOGY,153(x),69-78.
MLA Fan, Suet-Pin,et al."High yield production of sugars from deproteinated palm kernel cake under microwave irradiation via dilute sulfuric acid hydrolysis".BIORESOURCE TECHNOLOGY 153.x(2014):69-78.
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