eprintid: 4284
rev_number: 2
eprint_status: archive
userid: 1
dir: disk0/00/00/42/84
datestamp: 2023-11-09 16:15:57
lastmod: 2023-11-09 16:15:57
status_changed: 2023-11-09 15:58:05
type: book
metadata_visibility: show
creators_name: Mohamed, M.
creators_name: Yusup, S.
creators_name: Wahyudiono, 
creators_name: Machmudah, S.
creators_name: Goto, M.
creators_name: Uemura, Y.
title: Upgrading of oil palm empty fruit bunch to value-added products
ispublished: pub
keywords: Agricultural wastes; Biofuels; Biomass; Carbon dioxide; Dichloromethane; Effluent treatment; Fossil fuels; Fruits; Gas chromatography; Glycerol; Greenhouse gases; Mass spectrometry; Palmitic acid; Particle size; Saturated fatty acids; Stearic acid; Supercritical fluid extraction; Supercritical fluids, Bio oil; Empty fruit bunches; Extraction conditions; Gas chromatography-mass spectrometries (GC-MS); Greenhouse gases emissions; Oil palm empty fruit bunch; Supercritical CO2; Value added products, Palm oil
note: cited By 1
abstract: As the second largest producer of palm oil in the world, Malaysia generates a substantial amount of oil palm biomass as agricultural wastes in the forms of empty fruit bunches, shell and fiber, fronds, leaves, and trunks. This biomass feedstock has long been identified as a sustainable source of renewable energy which could reduce the dependency on fossil fuels as the main source of the energy supply and thus lead to reduction of greenhouse gases emission. This chapter highlights the application of oil palm biomass as value-added product and specifically demonstrates the capability of empty fruit bunch as renewable source in generating bio-oil which later could be upgraded as biofuel. Green extraction technique known as supercritical fluid extraction using supercritical CO2 (SC-CO2) was implemented in this study. Effects of two extraction conditions were investigated which includes temperature (60-80°C) and CO2 flow rate (3-6 mL/min). The extraction was conducted for 2 h using 10 g of OPEFB within particle size 0.15 mm. The crude bio-oil obtained in this study was diluted in 10 mL dichloromethane (DCM) for analysis using gas chromatography-mass spectrometry (GC-MS). Hexadecanoic acid (palmitic acid, C16), dodecanoic acid 1, 2, 3-propanetriyl ester (glycerol trilaurate, C39), and 6 octadecanoic acid (stearic acid, C18:0) were identified as the major compounds. © 2014 Springer International Publishing Switzerland. All rights reserved.
date: 2014
publisher: Springer International Publishing
official_url: https://www.scopus.com/inward/record.uri?eid=2-s2.0-84930252353&doi=10.1007%2f978-3-319-07578-5_3&partnerID=40&md5=52bda5e720396dba2493e887f909375b
id_number: 10.1007/978-3-319-07578-5₃
full_text_status: none
publication: Biomass and Bioenergy: Applications
volume: 978331
pagerange: 63-78
refereed: TRUE
isbn: 9783319075785; 3319075772; 9783319075778
citation:   Mohamed, M. and Yusup, S. and Wahyudiono and Machmudah, S. and Goto, M. and Uemura, Y.  (2014) Upgrading of oil palm empty fruit bunch to value-added products.     Springer International Publishing, pp. 63-78.  ISBN 9783319075785; 3319075772; 9783319075778