Bioremediation and lipid synthesis through mixotrophic algal consortia in municipal wastewater
2014
Mahapatra, Durga Madhab | Chanakya, H.N. | Ramachandra, T.V.
Algae grown in outdoor reactors (volume: 10L and depth: 20cm) were fed directly with filtered and sterilised municipal wastewater. The nutrient removal efficiencies were 86%, 90%, 89%, 70% and 76% for TOC, TN, NH4-N, TP and OP, respectively, and lipid content varied from 18% to 28.5% of dry algal biomass. Biomass productivity of ∼122mg/l/d (surface productivity 24.4g/m2/d) and lipid productivity of ∼32mg/l/d were recorded. Gas chromatography and mass spectrometry (GC–MS) analyses of the fatty acid methyl esters (FAME) showed a higher content of desirable fatty acids (bearing biofuel properties) with major contributions from saturates such as palmitic acid [C16:0; ∼40%] and stearic acid [C18:0; ∼34%], followed by unsaturates such as oleic acid [C18:1(9); ∼10%] and linoleic acid [C18:2(9,12); ∼5%]. The decomposition of algal biomass and reactor residues with an exothermic heat content of 123.4J/g provides the scope for further energy derivation.
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