Issue 18, 2016

A sustainable lignocellulosic biodiesel production integrating solar- and bio-power generation

Abstract

A solar-bio-powered refining concept has been developed to establish sustainable lignocellulosic biodiesel production. The refining concept applies a combined hydrolysis process without detoxification to release sugars from corn stover, uses aerobic oleaginous fungal fermentation to accumulate lipids on the hydrolysate for biodiesel production, and implements solar-bio-power generation to satisfy the energy demand. The results demonstrate that system integration of solar-bio-power generation and fungal lipid accumulation is an effective approach to create a sustainable lignocellulosic biodiesel production. Compared to concentrated solar power (CSP) units, photovoltaics (PV) are a more suitable solar technology to satisfy the energy needs of the lignocellulosic biodiesel production. The PV-bio-powered lignocellulosic biodiesel production has a net energy output of 28.70 MJ kg−1 biodiesel produced, and a net energy ratio (NER) of 1.08.

Graphical abstract: A sustainable lignocellulosic biodiesel production integrating solar- and bio-power generation

Associated articles

Supplementary files

Article information

Article type
Paper
Submitted
09 Apr 2016
Accepted
04 Jun 2016
First published
07 Jun 2016

Green Chem., 2016,18, 5059-5068

A sustainable lignocellulosic biodiesel production integrating solar- and bio-power generation

M. Zanotti, Z. Ruan, M. Bustamente, Y. Liu and W. Liao, Green Chem., 2016, 18, 5059 DOI: 10.1039/C6GC00998K

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