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논문검색

Enzymatic Saccharification of Salix viminalis cv. Q683 Biomass for Bioethanol Production

초록

영어

The possibility of employing biomass of Salix viminalis cv. Q683 as a resource of bio-energy was evaluated. The chemical analysis of S. viminalis cv. Q683 leaf biomass showed components such as, extractives (2.57%), lignin (39.06%), hemicellulose (21.61%), and cellulose (37.83%), whereas, its stem was composed of extractives (1.67%), lignin (23.54%), hemicellulose (33.64%), and cellulose (42.03%). The biomass of S. viminalis cv. Q683 was saccharified using two enzymes celluclast and viscozyme. The saccharification of S. viminalis cv. Q683 biomass was influenced by enzymes and their strengths.
The optimal enzyme combination was found to be celluclast (59 FPU/g substrate) and viscozyme (24 FBG/g substrate). On saccharification the glucose from leaf and stem biomass was 7.5g/L and 11.7g/L, respectively after 72 hr of enzyme treatment.
The biomass and enzyme-treated biomass served as the feedstock for ethanol production by fermentation. The ethanol production from stem and leaf biomass was 5.8 g/L and 2.2 g/L respectively, while the fermentation of the enzymatic hydrolysates yielded 5 g/L to 8 g/L bioethanol in 72 hours.

목차

ABSTRACT
 INTRODUCTION
 MATERIALS AND METHOD
  Raw material
  Chemical analysis
  Pretreatment of the plant material
  Fermentation of saccharified hydrolysate by yeast
  Determination of sugars from saccharified biomass
  Statistical analysis
 RESULTS
  Chemical composition of raw material
  Enzyme hydrolysis in pretreated biomass
  Ethanol production from stem and leaf hydrolysates
 DISCUSSION
 REFERANCES

저자정보

  • Hak-Gon Kim Division of Environmental Forest Science, Gyeongsang National University & Institute of Agriculture of Life Science, Jinju, 660-701, Korea
  • Hyun-Jin Song Division of Environmental Forest Science, Gyeongsang National University & Institute of Agriculture of Life Science, Jinju, 660-701, Korea
  • Mi-Jin Jeong Division of Environmental Forest Science, Gyeongsang National University & Institute of Agriculture of Life Science, Jinju, 660-701, Korea
  • Seon-Jeong Sim Division of Environmental Forest Science, Gyeongsang National University & Institute of Agriculture of Life Science, Jinju, 660-701, Korea
  • Dong-Jin Park Division of Environmental Forest Science, Gyeongsang National University & Institute of Agriculture of Life Science, Jinju, 660-701, Korea
  • Jae-Kyung Yang Division of Environmental Forest Science, Gyeongsang National University & Institute of Agriculture of Life Science, Jinju, 660-701, Korea
  • Seok-Bong Yoo Korea Forest Research Institute, Jeollanamdo, 23-7, Korea
  • Jin-Ki Yeo Departments of Forest Resources Development, Korea Forest Research Institute, Suwon 441-847, Korea
  • Chandrakant S. Karigar Department of Biochemistry, Bangalore University, Bangalore, 560001, India
  • Myung-Suk Choi Myung-Suk Choi1. Division of Environmental Forest Science, Gyeongsang National University & Institute of Agriculture of Life Science, Jinju, 660-701, Korea

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