Enhancing Lipid Production of Chlorella sp. by Mixotrophic Cultivation Optimization

被引:1
作者
Yu, Hao-Cheng [1 ]
Lay, Chyi-How [2 ,3 ]
Abdul, Peer Mohamed [4 ]
Wu, Jane-Yii [1 ,5 ,6 ]
机构
[1] Da Yeh Univ, Dept Med Bot & Foods Hlth Applicat, Changhua 515006, Taiwan
[2] Feng Chia Univ, Gen Educ Ctr, Taichung 407102, Taiwan
[3] Feng Chia Univ, Masters Program Green Energy Sci & Technol, Taichung 407102, Taiwan
[4] Univ Kebangsaan Malaysia, Dept Chem & Proc Engn, Bangi 43600, Malaysia
[5] Da Yeh Univ, Biotechnol Res & Dev Ctr, Changhua 515006, Taiwan
[6] Da Yeh Univ, Innovat Incubat Ctr, Changhua 515006, Taiwan
关键词
microalgae; lipid accumulation; carbon source; nitrogen source; pH; CARBON-SOURCES; CELL-GROWTH; SCENEDESMUS-OBLIQUUS; NITROGEN-SOURCES; MICROALGAE; ACCUMULATION; BIODIESEL; BIOMASS;
D O I
10.3390/pr11071892
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Mixotrophic microalgal cultivation can utilize CO2 and organic carbon sources. This study optimized the cultivation nitrogen source (peptone, urea, yeast extract, NH4Cl, (NH4)(2)SO4, NH4NO3, NaNO3 and KNO3), carbon combination (glucose, glycerol, sucrose), (NH4)(2)SO4 nitrogen source and pH (6-11) in a local microalgae species with three characteristics (high pH-resistant, high growth rate and high lipid content). Chlorella sp. G3H3-1-2 biomass production and lipid accumulation were estimated using the fatty acid methyl esters (FAMEs) concentration. The Chlorella sp. G3H3-1-2 FAME content was strongly influenced by the carbon, nitrogen sources and pH variations. The pH ranged from 6.0 to 8.0, which produced the highest specific growth rate of 1.22 day(-1) for Chlorella sp. G3H3-1-2 while using glucose as the single carbon source. However, the highest total FAMEs content of 59% in the Chlorella sp. G3H3-1-2 biomass of 1.75 g/L was obtained while using the combination of 1 g-glucose/L as the carbon source and 0.2 g-(NH4)(2)SO4/L as the nitrogen source at the high pH value of 10.
引用
收藏
页数:15
相关论文
共 37 条
[1]   Biomass and lipid induction strategies in microalgae for biofuel production and other applications [J].
Alishah Aratboni, Hossein ;
Rafiei, Nahid ;
Garcia-Granados, Raul ;
Alemzadeh, Abbas ;
Ruben Morones-Ramirez, Jose .
MICROBIAL CELL FACTORIES, 2019, 18 (01)
[2]   pH effects on growth and lipid accumulation of the biofuel microalgae Nannochloropsis salina and invading organisms [J].
Bartley, Meridith L. ;
Boeing, Wiebke J. ;
Dungan, Barry N. ;
Holguin, F. Omar ;
Schaub, Tanner .
JOURNAL OF APPLIED PHYCOLOGY, 2014, 26 (03) :1431-1437
[3]   Enhanced CO2 sequestration by a novel microalga: Scenedesmus obliquus SA1 isolated from bio-diversity hotspot region of Assam, India [J].
Basu, Samarpita ;
Roy, Abhijit Sarma ;
Mohanty, Kaustubha ;
Ghoshal, Aloke K. .
BIORESOURCE TECHNOLOGY, 2013, 143 :369-377
[4]   Renewable biomass production by mixotrophic algae in the presence of various carbon sources and wastewaters [J].
Bhatnagar, Ashish ;
Chinnasamy, Senthil ;
Singh, Manjinder ;
Das, K. C. .
APPLIED ENERGY, 2011, 88 (10) :3425-3431
[5]   Mixotrophic culture of bait microalgae for biomass and nutrients accumulation and their synergistic carbon metabolism [J].
Bo, Yahui ;
Chu, Ruirui ;
Sun, Danni ;
Deng, Xiangyuan ;
Zhou, Chengxu ;
Yan, Xiaojun ;
Ruan, Roger ;
Cheng, Pengfei .
BIORESOURCE TECHNOLOGY, 2023, 367
[6]   Enhanced growth and lipid production of microalgae under mixotrophic culture condition: Effect of light intensity, glucose concentration and fed-batch cultivation [J].
Cheirsilp, Benjamas ;
Torpee, Salwa .
BIORESOURCE TECHNOLOGY, 2012, 110 :510-516
[7]   Effective Biological DeNOx of Industrial Flue Gas by the Mixotrophic Cultivation of an Oil-Producing Green Alga Chlorella sp C2 [J].
Chen, Weixian ;
Zhang, Shanshan ;
Rong, Junfeng ;
Li, Xiang ;
Chen, Hui ;
He, Chenliu ;
Wang, Qiang .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2016, 50 (03) :1620-1627
[8]   Influence of Carbon Sources on Biomass and Biomolecule Accumulation in Picochlorum sp. Cultured under the Mixotrophic Condition [J].
Goswami, Rahul Kumar ;
Mehariya, Sanjeet ;
Karthikeyan, Obulisamy Parthiba ;
Verma, Pradeep .
INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH, 2022, 19 (06)
[9]   Achieving high lipid productivity of a thermotolerant microalga Desmodesmus sp F2 by optimizing environmental factors and nutrient conditions [J].
Ho, Shih-Hsin ;
Chang, Jo-Shu ;
Lai, Yen-Ying ;
Chen, Ching-Nen Nathan .
BIORESOURCE TECHNOLOGY, 2014, 156 :108-116
[10]   Cultivation of microalgae for oil production with a cultivation strategy of urea limitation [J].
Hsieh, Chih-Hung ;
Wu, Wen-Teng .
BIORESOURCE TECHNOLOGY, 2009, 100 (17) :3921-3926