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In-situ yeast fermentation to enhance bioconversion of coconut endosperm waste into larval biomass of hermetia illucens: statistical augmentation of larval lipid content

Wong, C. Y. and Haris, M. N. M. and Daud, H. and Lam, M. K. and Yong, C. S. and Hasan, H. A. and Chong, S. and Show, P. L. and Hajoeningtijas, O. D. and Ho, Y. C. and Goh, P. S. and Kausarian, H. and Pan, G. T. and Lim, J. W. (2020) In-situ yeast fermentation to enhance bioconversion of coconut endosperm waste into larval biomass of hermetia illucens: statistical augmentation of larval lipid content. Sustainability (Switzerland), 12 (4). pp. 1-10. ISSN 2071-1050

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Official URL: http://www.dx.doi.org/10.3390/su12041558

Abstract

The aim of this study was to spur the lipid accumulation by larvae of Hermetia illucens or black soldier fly (BSFL) via feeding with yeast fermented medium. The Saccharomyces cerevisiae, a single cell yeast, was introduced at different concentrations (0.02, 0.1, 0.5, 1.0, 2.5 wt %) to execute an in-situ fermentation on coconut endosperm waste. The rearing of BSFL was started simultaneously and the rearing was stopped once the BSFL reached the fifth instar. With the increasing of yeast concentration, the rearing duration of BSFL was shortened from 15.5 to 13.5 days. Moreover, it was found that at 0.5 to 1.0 wt % yeast concentration, the lipid yield and lipid productivity of BSFL were statistically enhanced to their highest peaks, namely, at 49.4% and 0.53 g/day, respectively. With regard to biodiesel composition, BSFL-derived biodiesel contained mainly C12:0, C14:0, C16:0 and C18:1. The higher amount of saturated fatty acids could strengthen the oxidative stability biodiesel produced as compared with non-edible oils or microalgal lipid. At last, the addition of yeast was also found to improve the waste reduction index of coconut endosperm waste (CEW) from 0.31 to 0.40 g/day, heralding the capability of BSFL to valorize organic waste via bioconversion into its biomass to serve as a feedstock for biodiesel production.

Item Type:Article
Uncontrolled Keywords:lipid, organic waste, yeast
Subjects:T Technology > TP Chemical technology
Divisions:Chemical and Energy Engineering
ID Code:87766
Deposited By: Narimah Nawil
Deposited On:30 Nov 2020 13:15
Last Modified:30 Nov 2020 13:15

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