Heterotrophic production of Chlorella sp TISTR 8990biomass growth and composition under various production conditions

被引:19
作者
Bouyam, Somruethai [1 ]
Choorit, Wanna [1 ,2 ]
Sirisansaneeyakul, Sarote [3 ]
Chisti, Yusuf [4 ]
机构
[1] Walailak Univ, Sch Agr Technol, Biotechnol Program, Nakhon Si Thammarat 80161, Thailand
[2] Walailak Univ, Biomass & Oil Palm Ctr Excellence, Nakhon Si Thammarat 80161, Thailand
[3] Kasetsart Univ, Fac Agroind, Dept Biotechnol, Bangkok 10900, Thailand
[4] Massey Univ, Sch Engn, Palmerston North, New Zealand
关键词
biomass composition; Chlorella sp; heterotrophic culture; repeated fed-batch culture; BIODIESEL PRODUCTION; NANNOCHLOROPSIS-OCULATA; LIPID-ACCUMULATION; MIXOTROPHIC GROWTH; BIOFUEL PRODUCTION; NITROGEN-SOURCES; AMINO-ACIDS; MICROALGA; PROTOTHECOIDES; VULGARIS;
D O I
10.1002/btpr.2518
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 ; 0836 ; 090102 ; 100705 ;
摘要
The green microalga Chlorella sp. TISTR 8990 was grown heterotrophically in the dark using various concentrations of a basal glucose medium with a carbon-to-nitrogen mass ratio of 29:1. The final biomass concentration and the rate of growth were highest in the fivefold concentrated basal glucose medium (25 g L-1 glucose, 2.5 g L-1 KNO3) in batch operations. Improving oxygen transfer in the culture by increasing the agitation rate and decreasing the culture volume in 500-mL shake flasks improved growth and glucose utilization. A maximum biomass concentration of nearly 12 g L-1 was obtained within 4 days at 300 rpm, 30 degrees C, with a glucose utilization of nearly 76% in batch culture. The total fatty acid (TFA) content of the biomass and the TFA productivity were 102 mg g(-1) and 305 mg L-1 day(-1), respectively. A repeated fed-batch culture with four cycles of feeding with the fivefold concentrated medium in a 3-L bioreactor was evaluated for biomass production. The total culture period was 11 days. A maximum biomass concentration of nearly 26 g L-1 was obtained with a TFA productivity of 223 mg L-1 day(-1). The final biomass contained (w/w) 13.5% lipids, 20.8% protein and 17.2% starch. Of the fatty acids produced, 52% (w/w) were saturated, 41% were monounsaturated and 7% were polyunsaturated (PUFA). A low content of PUFA in TFA feedstock is required for producing high quality biodiesel. (c) 2017 American Institute of Chemical Engineers Biotechnol. Prog., 33:1589-1600, 2017
引用
收藏
页码:1589 / 1600
页数:12
相关论文
共 47 条
  • [1] NITROGEN-METABOLISM OF MARINE PLANKTONIC DIATOMS - EXCRETION, ASSIMILATION AND CELLULAR POOLS OF FREE AMINO-ACIDS IN 7 SPECIES WITH DIFFERENT CELL-SIZE
    ADMIRAAL, W
    PELETIER, H
    LAANE, RWPM
    [J]. JOURNAL OF EXPERIMENTAL MARINE BIOLOGY AND ECOLOGY, 1986, 98 (03) : 241 - 263
  • [2] BLIGH EG, 1959, CAN J BIOCHEM PHYS, V37, P911
  • [3] Microalgae-Novel Highly Efficient Starch Producers
    Branyikova, Irena
    Marsalkova, Barbora
    Doucha, Jiri
    Branyik, Tomas
    Bisova, Katerina
    Zachleder, Vilem
    Vitova, Milada
    [J]. BIOTECHNOLOGY AND BIOENGINEERING, 2011, 108 (04) : 766 - 776
  • [4] Nutritional properties of microalgae for mariculture
    Brown, MR
    Jeffrey, SW
    Volkman, JK
    Dunstan, GA
    [J]. AQUACULTURE, 1997, 151 (1-4) : 315 - 331
  • [5] Best practices in heterotrophic high-cell-density microalgal processes: achievements, potential and possible limitations
    Bumbak, Fabian
    Cook, Stella
    Zachleder, Vilem
    Hauser, Silas
    Kovar, Karin
    [J]. APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2011, 91 (01) : 31 - 46
  • [6] Bux F, 2016, GREEN ENERGY TECHNOL, P1, DOI 10.1007/978-3-319-12334-9
  • [7] Differential regulation of fatty acid biosynthesis in two Chlorella species in response to nitrate treatments and the potential of binary blending microalgae oils for biodiesel application
    Cha, Thye San
    Chen, Jian Woon
    Goh, Eng Giap
    Aziz, Ahmad
    Loh, Saw Hong
    [J]. BIORESOURCE TECHNOLOGY, 2011, 102 (22) : 10633 - 10640
  • [8] High cell density culture of microalgae in heterotrophic growth
    Chen, F
    [J]. TRENDS IN BIOTECHNOLOGY, 1996, 14 (11) : 421 - 426
  • [9] Chisti Y., 2013, UPSTREAM IND BIOTECH, V2, P1261
  • [10] Chisti Y., 2009, Encyclopedia of industrial biotechnology: bioprocess, bioseparation, and cell technology, P1, DOI 10.1002/9780470054581.eib543