Bioresource Technology 2015-10-01

The role of co-solvents in improving the direct transesterification of wet microalgal biomass under supercritical condition.

Hamed Abedini Najafabadi, Manouchehr Vossoughi, Gholamreza Pazuki

Index: Bioresour. Technol. 193 , 90-6, (2015)

Full Text: HTML

Abstract

In this research, direct conversion of wet algal biomass into biodiesel using supercritical methanol was studied. In this process, microalgal lipids simultaneously was extracted and converted to biodiesel under high pressure and temperature conditions without using any catalyst. Several experiments have been performed to optimize the methanol amount and it has been revealed that the best performance was achieved by using methanol/wet biomass ratio of 8:1. The effect of using various co-solvents in increasing the efficiency of the supercritical process was investigated. It has been shown that hexane was the most effective co-solvent and its optimal ratio respect to wet biomass was 6:1. The results indicated that compare to conventional extraction plus transesterification reaction, fatty acid methyl esters (FAMEs) yield was slightly higher in the direct conversion process. Moreover, increasing the moisture content up to 80% has no significant effect on reducing the performance of this process. Copyright © 2015 Elsevier Ltd. All rights reserved.

Related Compounds

Structure Name/CAS No. Articles
Chloroform Structure Chloroform
CAS:67-66-3
N-hexane Structure N-hexane
CAS:110-54-3
Methanol Structure Methanol
CAS:67-56-1
Diethyl ether Structure Diethyl ether
CAS:60-29-7
acetic acid Structure acetic acid
CAS:1173022-32-6
acetic acid Structure acetic acid
CAS:64-19-7
Stanolone Structure Stanolone
CAS:521-18-6
Methyl heptadecanoate Structure Methyl heptadecanoate
CAS:1731-92-6