Pretreatment for Simultaneous Production of Total Lipids and Fermentable Sugars from Marine Alga, Chlorella sp.

被引:0
作者
Choon-Geun Lee
Do-Hyung Kang
Dong-Bog Lee
Hyeon-Yong Lee
机构
[1] Kangwon National University,Department of Medical Biomaterials Engineering
[2] Korea Institute of Ocean Science and Technology (KIOST),Department of Food Science and Engineering
[3] Seowon University,undefined
来源
Applied Biochemistry and Biotechnology | 2013年 / 171卷
关键词
High-pressure homogenization; Microwave; Ultrasonication; Simultaneous production; Biodiesel; Bioethanol; sp.;
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学科分类号
摘要
The goal of this study was to determine the optimal pretreatment process for the extraction of lipids and reducing sugars to facilitate the simultaneous production of biodiesel and bioethanol from the marine microalga Chorella sp. With a single pretreatment process, the optimal ultrasonication pretreatment process was 10 min at 47 KHz, and extraction yields of 6.5 and 7.1 (percentage, w/w) of the lipids and reducing sugars, respectively, were obtained. The optimal microwave pretreatment process was 10 min at 2,450 MHz, and extraction yields of 6.6 and 7.0 (percentage, w/w) of the lipids and reducing sugars, respectively, were obtained. Lastly, the optimal high-pressure homogenization pretreatment process was two cycles at a pressure of 20,000 psi, and extraction yields of 12.5 and 12.8 (percentage, w/w) of the lipids and reducing sugars, respectively, were obtained. However, because the single pretreatment processes did not markedly improve the extraction yields compared to the results of previous studies, a combination of two pretreatment processes was applied. The yields of lipids and reducing sugars from the combined application of the high-pressure homogenization process and the microwave process were 24.4 and 24.9 % (w/w), respectively, which was up to three times greater than the yields obtained using the single pretreatment processes. Furthermore, the oleic acid content, which is a fatty acid suitable for biodiesel production, was 23.39 % of the fatty acids (w/w). The contents of glucose and xylose, which are among the fermentable sugars useful for bioethanol production, were 77.5 and 13.3 % (w/w) of the fermentable sugars, respectively, suggesting the possibility of simultaneously producing biodiesel and bioethanol. Based on the results of this study, the combined application of the high-pressure homogenization and microwave pretreatment processes is the optimal method to increase the extraction yields of lipids and reducing sugars that are essential for the simultaneous production of biodiesel and bioethanol.
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页码:1143 / 1158
页数:15
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  • [1] Vasudevan PT(2008)Biodiesel production—current state of the art and challenges Journal of Industrial Microbiology & Biotechnology 35 421-430
  • [2] Briggs M(1995)Cell wall polysaccharide interaction in maize bran Carbohydrate Polymers 26 279-287
  • [3] Saulnier L(2008)Biodiesel from microalgae beats bioethanol Trends in Biotechnology 26 126-131
  • [4] Marot C(1995)Oil production from algal cells of Fuel 74 1735-1738
  • [5] Chanliaud E(2010) by direct thermochemical liquefaction Bioresourse Technology 101 75-77
  • [6] Thibault JF(1956)Comparison of several methods for effective lipid extraction from microalgae The Journal of Biological Chemistry 226 497-509
  • [7] Chisti Y(1959)A simple method for the isolation and purification of total lipids from animal tissues Canadian Journal of Biochemistry and Physiology 37 911-917
  • [8] Minowa T(2010)A rapid method of total lipid extraction and purification Bioresource Technology 101 5330-5336
  • [9] Yokoyama SY(1982)Enzymatic pretreatment of Archives of Microbiology 132 10-13
  • [10] Kishimoto M(2000) biomass for ethanol production Phytochemistry 54 369-380