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Evaluating the lipid extraction efficiency of different cell disruption methods in unicellular microalgae

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Title Evaluating the lipid extraction efficiency of different cell disruption methods in unicellular microalgae
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Creator Rakesh, S., Dhar D.W., Prasanna, R., Saxena, A.K., Saha, S., Shukla, M., Sharma, K
 
Subject Biofuels / Cell disruption / Lipid extraction / Microalgae / Microwave treatment
 
Description Not Available
Identification of cost-effective cell disruption methods to facilitate lipid extraction from microalgae represents a crucial step in identifying promising biofuel-producing species. Various cell disruption methods including autoclaving, microwave, osmotic shock and pasteurization were tested in the microalgae Chlorococcum sp. MCC30, Botryococcus sp. MCC31, Botryococcus sp. MCC32 and Chlorella sorokiniana MIC-G5. Lipid content (on dry weight basis) from the four cultures on day 7 ranged from 11.15% to 48.33%, and on day 14 from 11.42% to 44.26%. Among the methods tested, enhanced lipid extraction was achieved through osmotic shock (15% NaCl) for Botryococcus sp. MCC32, microwave (6 min) for Botryococcus sp. MCC31, osmotic shock (5% NaCl) for Chlorella sorokiniana MIC-G5 and microwave (2 min) for Chlorococcum sp. MCC30. The highest palmitate (16:0) contents of (25.64% and 34.20%) were recorded with osmotic shock (15% NaCl) treatment for Botryococcus sp. MCC32 and microwave (6 min) for Botryococcus sp. MCC31, respectively. Two strains, along with their respective cell disruption methods, were identified as promising oil blends or nutraceuticals due to their high unsaturated fatty acids (UFA) content: Botryococcus sp. MCC31 (37.6% oleic acid content; 39.37% UFA) after autoclaving and Botryococcus sp. MCC32 after osmotic shock of 15% NaCl treatment (19.95% oleic acid content; 38.17% UFA).This article is protected by copyright. All rights reserved
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Date 2021-10-01T06:55:42Z
2021-10-01T06:55:42Z
2015-01-01
 
Type Research Paper
 
Identifier Not Available
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http://krishi.icar.gov.in/jspui/handle/123456789/64850
 
Language English
 
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