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An integrated salinity-driven workflow for rapid lipid enhancement in green microalgae for biodiesel application

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논문

An integrated salinity-driven workflow for rapid lipid enhancement in green microalgae for biodiesel application

학술지

RSC advances

저자명

Satpati, Gour Gopal; Chandra Gorain, Prakash; Paul, Ishita; Pal, Ruma

초록

<P>A laboratory based integrated approach was undertaken for improvement of lipid accumulation in green microalgae under sodium chloride (NaCl) stress. The maximum biomass yields (1.22 ± 0.04 g L<SUP>&#x2212;1</SUP>in<I>Chlorella</I>and 1.31 ± 0.04 g L<SUP>&#x2212;1</SUP>in<I>Chlorococcum</I>) were obtained in the media with initial NaCl concentrations at 2 g L<SUP>&#x2212;1</SUP>(for<I>Chlorella</I>) and 0.05 g L<SUP>&#x2212;1</SUP>(for<I>Chlorococcum</I>) after 14 days of culture. Interestingly, maximum lipid accumulation obtained was 45.8 ± 0.4% w/v for<I>Chlorella</I>(on day eight) and 36.33 ± 0.56% w/v for<I>Chlorococcum</I>(on day ten) at an exposure of 5 g L<SUP>&#x2212;1</SUP>and 1.5 g L<SUP>&#x2212;1</SUP>NaCl concentrations, respectively. Fatty acid profiles of methyl esters for neutral and polar lipid fractions showed the presence of myristic (C14:0), palmitic (C16:0), palmitoleic (C16:1), oleic (C18:1) and linoleic (C18:2) acids as major fatty acids. Fluorescence intensities (% positive Nile red stained cells) of neutral and polar lipid fractions were also higher in NaCl stress conditions. A significant correlation between polar lipid and neutral lipid was found in both<I>Chlorella</I>(<I>r</I><SUP>2</SUP>= 0.979) and<I>Chlorococcum</I>(<I>r</I><SUP>2</SUP>= 0.972). Flow cytometric study demonstrated a positive fluorescence signal for neutral and polar lipid bodies related to Nile red fluorescence. Associated biochemical changes, like those in total chlorophyll, carotenoid, carbohydrate and protein contents, were determined under variable NaCl concentrations. The elemental compositions (CHNS) and CO2fixation rate were assessed using high lipid yielding cells under optimum NaCl concentrations. Biodiesel fuel properties were obtained from high lipid yielding cells of the test microalgae and compared with Indian and international diesel standards. Finally large-scale cultivation of<I>Chlorella ellipsoidea</I>was performed in a hybrid photobioreactor (800 L capacity) and the highest biomass and lipid content obtained was 1.66 ± 0.09 g L<SUP>&#x2212;1</SUP>(at 8 days) and 54.73 ± 1.78% w/v (at 10 days) at 5 g L<SUP>&#x2212;1</SUP>NaCl respectively. This optimized NaCl concentration makes it an economical substitute for biodiesel production on a large scale.</P>

발행연도

2016

발행기관

The Royal Society of Chemistry

ISSN

2046-2069

6

113

페이지

pp.112340-112355

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논문; 2016-01-01

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