Biodiesel production from Vietnam heterotrophic marine microalga Schizochytrium mangrovei PQ6

被引:34
作者
Dang Diem Hong [1 ]
Dinh Thi Ngoc Mai [1 ]
Le Thi Thom [1 ]
Nguyen Cam Ha [1 ]
Bui Dinh Lam [1 ]
Luu Thi Tam [1 ]
Hoang Thi Lan Anh [1 ]
Ngo Thi Hoai Thu [1 ]
机构
[1] Viet Nam Acad Sci & Technol VAST, Inst Biotechnol, Dept Algal Biotechnol, Hanoi, Vietnam
关键词
Biodiesel; Fatty acid methyl esters; Heterotrophic marine microalga; Schizochytrium mangrovei PQ6; Spirulina platensis; DOCOSAHEXAENOIC ACID; GLYCEROL; OIL; TRANSESTERIFICATION; GROWTH;
D O I
10.1016/j.jbiosc.2013.02.002
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 [微生物学]; 090105 [作物生产系统与生态工程];
摘要
This work is to explore the potential of producing biodiesel and valuable co-products from the biomass of Schizochytrium mangrovei PQ6 which was isolated from Phu Quoc Island, Kien Giang province, Vietnam. This microalga contains high lipid content (up to 70% of dry cell weight) and high level of total fatty adds, which is ideal for making biodiesel. The production of fatty acid methyl esters (FAME) from this marine microalga resulted in a yield of 88% based on algal oil and 44% based on algal biomass. The process of separating the obtained FAME into a first fraction enriched with saturated FAME (SFAME) and a second fraction enriched with unsaturated FAME (UFAME) was then investigated to exploit the valuable co-products. The obtained results shown that the mass fraction of SFAME and UFAME were 70% and 30%, respectively. The UFAME fraction contains a high content of DHA (accounting for 69.000% of TFAs). The test results of the SFAME fraction indicated that specific gravity at 15 degrees C, flash point, water and sediment, kinematic viscosity at 40 degrees C, sulfated ash, sulfur, copper strip corrosion at 50 degrees C, cetane number, carbon residue, iodine number, workmanship meet Vietnam Biodiesel B100 Standard. Moreover, the utilization of waste glycerol from biodiesel process as carbon source for the cultivation of the microalgae S. mangrovei PQ6 and Spirulina platensis was also investigated. (c) 2013, The Society for Biotechnology, Japan. All rights reserved.
引用
收藏
页码:180 / 185
页数:6
相关论文
共 35 条
[1]
Experimental evaluation of the transesterification of waste palm oil into biodiesel [J].
Al-Widyan, MI ;
Al-Shyoukh, AO .
BIORESOURCE TECHNOLOGY, 2002, 85 (03) :253-256
[2]
Optimisation of biodiesel production by sunflower oil transesterification [J].
Antolín, G ;
Tinaut, FV ;
Briceño, Y ;
Castaño, V ;
Pérez, C ;
Ramírez, AI .
BIORESOURCE TECHNOLOGY, 2002, 83 (02) :111-114
[3]
BLIGH EG, 1959, CAN J BIOCHEM PHYS, V37, P911
[4]
A laboratory study of producing docosahexaenoic acid from biodiesel-waste glycerol by microalgal fermentation [J].
Chi, Zhanyou ;
Pyle, Denver ;
Wen, Zhiyou ;
Frear, Craig ;
Chen, Shulin .
PROCESS BIOCHEMISTRY, 2007, 42 (11) :1537-1545
[5]
Biodiesel from microalgae [J].
Chisti, Yusuf .
BIOTECHNOLOGY ADVANCES, 2007, 25 (03) :294-306
[6]
Are deficits of arachidonic and docosahexaenoic acids responsible for the neural and vascular complications of preterm babies? [J].
Crawford, MA ;
Costeloe, K ;
Ghebremeskel, K ;
Phylactos, A ;
Skirvin, L ;
Stacey, F .
AMERICAN JOURNAL OF CLINICAL NUTRITION, 1997, 66 :1032-1041
[7]
STUDY ON BIOLOGICAL CHARACTERISTICS OF HETEROTROPHIC MARINE MICROALGA-SCHIZOCHYTRIUM MANGROVEI PQ6 ISOLATED FROM PHU QUOC ISLAND, KIEN GIANG PROVINCE, VIETNAM [J].
Dang Diem Hong ;
Hoang Thi Lan Anh ;
Ngo Thi Hoai Thu .
JOURNAL OF PHYCOLOGY, 2011, 47 (04) :944-954
[8]
Variables affecting the in situ transesterification of microalgae lipids [J].
Ehimen, E. A. ;
Sun, Z. F. ;
Carrington, C. G. .
FUEL, 2010, 89 (03) :677-684
[9]
Microalgae as a raw material for biofuels production [J].
Gouveia, Luisa ;
Oliveira, Ana Cristina .
JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGY, 2009, 36 (02) :269-274
[10]
Production of Biodiesel Fuel from the Microalga Schizochytrium limacinum by Direct Transesterification of Algal Biomass [J].
Johnson, Michael B. ;
Wen, Zhiyou .
ENERGY & FUELS, 2009, 23 (10) :5179-5183