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Convergence of direct-transesterification and anaerobic digestion for improved bioenergy potentials of microalgae

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논문

Convergence of direct-transesterification and anaerobic digestion for improved bioenergy potentials of microalgae

학술지

Journal of cleaner production

저자명

Lee, Jae-Cheol; Kim, Hyun-Woo

초록

<P><B>Abstract</B></P> <P>Direct-transesterification is an effective and economical method to extract fatty acid methyl ester (FAME) from microalgal biomass by omitting lipid separation step, but it still generates glycerol residue requiring further treatment. To minimize the waste, this study investigates the synergistic coupling of direct-transesterification and anaerobic digestion (AD). Four types of catalysts (HCl, H<SUB>2</SUB>SO<SUB>4</SUB>, NaOH, and K<SUB>2</SUB>CO<SUB>3</SUB>) were tested for better direct-transesterification followed by the AD of lyophilized <I>Botryococcus braunii</I>. Results indicate that base catalysts can extract more FAME than acid ones. The ranges of FAME yield were recorded as 6.0&ndash;9.2% of the inoculum biomass, equivalent to >50% of FAME contained in inoculum biomass. Fourier transform infrared spectroscopy (FT-IR) spectra reveals that the FAME production from microalgae can be inhibited by existing proteinaceous soluble microbial products (SMP) or extracellular polymeric substances (EPS). The AD demonstrates a good methane potential of residual by-product, glycerol. The biochemical methane potential (BMP) test show that 90% of organic matter was converted to methane, and prove that the direct-transesterification contributes to following anaerobic digestion without inhibition. This result indicates that additional >22% of total energy recovery is possible by the AD. Overall results imply that this convergence of direct-transesterification and AD offers an economic and efficient way to control the bioenergy recovery from microalgal biomass.</P> <P><B>Highlights</B></P> <P> <UL> <LI> Direct-transesterification and anaerobic digestion were converged for enhancement. </LI> <LI> FAME recovery from microalgae grown by LWW reaches 50% of inoculum biomass. </LI> <LI> Transesterification inhibition by EPS- and SMP-proteins were newly detected. </LI> <LI> Coupling anaerobic digestion synergistically convert glycerol waste into bioenergy. </LI> </UL> </P> <P><B>Graphical abstract</B></P> <P>[DISPLAY OMISSION]</P>

발행연도

2018

발행기관

Elsevier

ISSN

0959-6526

ISSN

1879-1786

178

페이지

pp.749-756

주제어

Microalgae; FAME; Direct transesterification; Anaerobic digestion; Bioenergy

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1 2023-12-11

논문; 2018-03-01

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