| Literature DB >> 28366691 |
Kalimuthu Jawaharraj1, Rathinasamy Karpagam1, Balasubramaniem Ashokkumar2, Shanmugam Kathiresan3, Innasi Muthu Ganesh Moorthy4, Muthu Arumugam5, Perumal Varalakshmi6.
Abstract
In this study, the improved biomass (1.6 folds) and lipid (1.3 folds) productivities in Synechocystis sp. NN using agro-industrial wastes supplementation through hybrid response surface methodology-genetic algorithm (RSM-GA) for cost-effective methodologies for biodiesel production was achieved. Besides, efficient harvesting in Synechocystis sp. NN was achieved by electroflocculation (flocculation efficiency 97.8±1.2%) in 10min when compared to other methods. Furthermore, different pretreatment methods were employed for lipid extraction and maximum lipid content of 19.3±0.2% by Synechocystis sp. NN was attained by ultrasonication than microwave and liquid nitrogen assisted pretreatment methods. The highest FAME (fatty acid methyl ester) conversion of 36.5±8.3mg FAME/g biomass was obtained using titanium oxide as heterogeneous nano-catalyst coupled whole-cell transesterification based method. Conclusively, Synechocystis sp. NN may be used as a biodiesel feedstock and its fuel production can be enriched by hybrid RSM-GA and nano-catalyst technologies.Entities:
Keywords: Biodiesel; Electroflocculation; Hybrid RSM-GA; Nano-catalysts; Synechocystis sp.; Whole cell transesterification
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Year: 2017 PMID: 28366691 DOI: 10.1016/j.biortech.2017.03.067
Source DB: PubMed Journal: Bioresour Technol ISSN: 0960-8524 Impact factor: 9.642