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Effects of initial population density (IPD) on growth and lipid composition of Nannochloropsis sp.
Chen, Yu; Wang, Junfeng; Liu, Tianzhong; Gao, Lili
2012-12-01
发表期刊JOURNAL OF APPLIED PHYCOLOGY
卷号24期号:6页码:1623-1627
摘要

The microalga Nannochloropsis sp. was cultured under different initial population densities (IPDs) ranging from 0.11 to 9.09 g L−1. The IPD affected the biomass and lipid accumulation significantly. The algal cultured with higher IPD resulted higher biomass concentration (up to 13.07 g L−1) in 10 days growth. The biomass productivity with 0.98 g L−1 IPD was 0.75 g L−1 d−1 which was higher than that of other IPDs. For IPDs ranging from 0.11 to 0.98 g L−1, with the increase of IPD, the biomass productivity increased, while for IPD over 0.98 g L−1, the biomass productivity decreased. Lipid content of the algal culture started with 0.11 g L−1 IPD reached to 42 % of dry weight. But with the increase of IPD, the lipid content decreased. Lipid composition was analyzed using thin layer chromatography coupled with flame ionization detection (TLC/FID). Seven lipid classes were identified and quantified. The main reserve lipid, triacylglyceride (TAG), accumulated under all different IPD conditions. However, with the increasing IPD values, TAG content decreased from 59.1 to 23.5 % of the total lipids. Based on these results, to obtain the maximal biomass productivity and lipid productivity of Nannochloropsis sp. in mass cultivation systems, it is necessary to select an appropriate IPD.

; The microalga Nannochloropsis sp. was cultured under different initial population densities (IPDs) ranging from 0.11 to 9.09 g L-1. The IPD affected the biomass and lipid accumulation significantly. The algal cultured with higher IPD resulted higher biomass concentration (up to 13.07 g L-1) in 10 days growth. The biomass productivity with 0.98 g L-1 IPD was 0.75 g L-1 d(-1) which was higher than that of other IPDs. For IPDs ranging from 0.11 to 0.98 g L-1, with the increase of IPD, the biomass productivity increased, while for IPD over 0.98 g L-1, the biomass productivity decreased. Lipid content of the algal culture started with 0.11 g L-1 IPD reached to 42 % of dry weight. But with the increase of IPD, the lipid content decreased. Lipid composition was analyzed using thin layer chromatography coupled with flame ionization detection (TLC/FID). Seven lipid classes were identified and quantified. The main reserve lipid, triacylglyceride (TAG), accumulated under all different IPD conditions. However, with the increasing IPD values, TAG content decreased from 59.1 to 23.5 % of the total lipids. Based on these results, to obtain the maximal biomass productivity and lipid productivity of Nannochloropsis sp. in mass cultivation systems, it is necessary to select an appropriate IPD.
文章类型Article
关键词Nannochloropsis Sp. Initial Population Density (Ipd) Growth Lipid Composition Triacylglyceride (Tag)
学科领域能源藻类资源
WOS标题词Science & Technology ; Life Sciences & Biomedicine
DOI10.1007/s10811-012-9825-1
关键词[WOS]OUTDOOR MASS CULTIVATION ; EICOSAPENTAENOIC ACID ; CELL-GROWTH ; PHOTOBIOREACTOR ; EUSTIGMATOPHYCEAE ; IRRADIANCE ; MICROALGAE ; BIODIESEL ; CULTURES ; OCULATA
收录类别SCI
语种英语
WOS研究方向Biotechnology & Applied Microbiology ; Marine & Freshwater Biology
WOS类目Biotechnology & Applied Microbiology ; Marine & Freshwater Biology
WOS记录号WOS:000310232900029
引用统计
文献类型期刊论文
条目标识符http://ir.qibebt.ac.cn/handle/337004/1145
专题微藻生物技术研究组
作者单位Chinese Acad Sci, Qingdao Inst Bioenergy & Bioproc Technol, Key Lab Biofuels, Qingdao 266101, Peoples R China
推荐引用方式
GB/T 7714
Chen, Yu,Wang, Junfeng,Liu, Tianzhong,et al. Effects of initial population density (IPD) on growth and lipid composition of Nannochloropsis sp.[J]. JOURNAL OF APPLIED PHYCOLOGY,2012,24(6):1623-1627.
APA Chen, Yu,Wang, Junfeng,Liu, Tianzhong,&Gao, Lili.(2012).Effects of initial population density (IPD) on growth and lipid composition of Nannochloropsis sp..JOURNAL OF APPLIED PHYCOLOGY,24(6),1623-1627.
MLA Chen, Yu,et al."Effects of initial population density (IPD) on growth and lipid composition of Nannochloropsis sp.".JOURNAL OF APPLIED PHYCOLOGY 24.6(2012):1623-1627.
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