Cultivation of Chlorella vulgaris in mediums with varying nitrogen sources and concentrations to induce the lipid yield

IF 0.9 Q4 ENGINEERING, CHEMICAL Indian Chemical Engineer Pub Date : 2023-02-03 DOI:10.1080/00194506.2022.2164525
E. Restiawaty, Erly Marwani, S. Steven, Gabriela Mega Rahayu, Fadhilah Hanif, T. Prakoso
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引用次数: 2

Abstract

ABSTRACT The development of biofuel production is of high concern since energy and fuels have so far been fulfilled by fossil resources. Microalgae, as green biomass, has the potential to produce biofuel. Nevertheless, many studies still face low lipid yield due to insufficient nutrients in the medium, improper culture techniques, or inaccurate solvent composition used in the lipid extraction process. Therefore, this study aimed to enhance lipid production from the cultivation of Chlorella vulgaris. The cultivation was performed in mediums supplemented with low concentrations of low-cost exogenous N-sources, which are still rare to examine. The concentrations were varied at 10, 20 and 30 mg L−1 of urea and 35, 70 and 105 mg L−1 of KNO3. For both urea and KNO3, a faster growth rate (0.215 vs. 0.211 d−1) was found under the highest N-concentration in the medium. In contrast, lipid yield increased in the medium with the lowest N-concentration, with values of up to 50.27–51.63%. The produced lipids also contain palmitic, oleic and linoleic acids, and their spectra comply with the fatty acids composition in the biodiesel standard. Moreover, this study achieves a high lipid yield and offers an inexpensive lipid induction technique for C. vulgaris. GRAPHICAL ABSTRACT
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小球藻在不同氮源和浓度的培养基中培养以诱导脂质产量
由于迄今为止能源和燃料都是由化石资源提供的,生物燃料生产的发展受到高度关注。微藻作为绿色生物质,具有生产生物燃料的潜力。然而,由于培养基中营养物质不足、培养技术不当或脂质提取过程中使用的溶剂成分不准确,许多研究仍然面临着脂质产量低的问题。因此,本研究旨在通过培养普通小球藻来提高脂质产量。在培养基中添加低浓度的低成本外源氮源进行培养,这种外源氮源的研究仍然很少。尿素浓度为10、20和30 mg L−1,KNO3浓度为35、70和105 mg L−1。氮浓度最高时,尿素和KNO3的生长速率均较快,分别为0.215和0.211 d−1。而在最低氮浓度的培养基中,脂质产量增加,最高可达50.27 ~ 51.63%。所制备的脂质还含有棕榈酸、油酸和亚油酸,其光谱符合生物柴油标准中的脂肪酸组成。此外,本研究还获得了较高的脂质产率,并为寻常草提供了一种廉价的脂质诱导技术。图形抽象
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来源期刊
Indian Chemical Engineer
Indian Chemical Engineer ENGINEERING, CHEMICAL-
CiteScore
3.00
自引率
6.70%
发文量
33
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