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Biodiesel production was based on the exploitation of either direct transesterification (without extraction of lipids from microbial biomass) or indirect transesterifaction of extracted microbial oil.
Barriers include preventing contamination from algae-eating bacteria, finding the ideal strain of algae to grow fast enough and maximizing the extraction of lipids from the biomass.
The Response surface methodology was used to optimize the parameters for maximum extraction of lipids.
Lipid extraction using hexane:diethyl ether (1 2 ratio) resulted in maximum extraction of lipids.
Another major hurdle for most companies planning to produce biofuel is the extraction of lipids from the algae cells.
MIS labstation can be considered as a new and general alternative for the extraction of lipids by using microwave energy.
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Supercritical carbon dioxide (SC-CO2) extraction of lipid from Scenedesmus sp. for biodiesel production was investigated and compared to conventional extraction methods.
In situ transesterification allowed minimizing the requirement of solvents by merging the two steps (i.e. extraction of lipid and conversion to biodiesel) to a single step.
The extraction of lipid peroxides was carried out using 500 mg of fresh shoot tissue, 0.3 mL of 10% trichloroacetic acid, and 1 mL of 0.5% TBA.
1.5 ml hexane and 0.5 ml of 2 mg/ml internal standard (methyl benzoate) dissolved in hexane were added as solvent for the extraction of lipid.
Use of non-ionic detergents for the extraction of lipid rafts from cells in a variety of cells has been controversial [ 51, 52].
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