The effects of (sulfuric acid concentration, time, temperature) in hydrolysis and (type, weight of yeast) in fermentation process to bioethanol yield in the making of bioethanol from peat

Putri, Apriani and Khoirul, Fitrisyah and Kiagus, Ahmad Roni (2018) The effects of (sulfuric acid concentration, time, temperature) in hydrolysis and (type, weight of yeast) in fermentation process to bioethanol yield in the making of bioethanol from peat. International Journal of Engineering & Technology.

[img]
Preview
Text
The effects of (sulfuric acid concentration, time, temperature) in hydrolysis and (type, weight of yeast) i.pdf

Download (283kB) | Preview

Abstract

Abstract The Indonesian Government's policy regarding the development of alternative energy sources as a substitute for fuel oil has been estab-lished bioenergy as an alternative fuel. Bioenergy is energy derived from biofuels. Common biofuel is bioethanol. Bioethanol burning is cleaner than fossil fuels which means reducing greenhouse gas emissions. Therefore, further research is needed on biomass which can be used as raw material for bioethanol production and also the process stages that affect on bioethanol production. The material that can be a substrate for bioethanol production is lignocellulose material. One of the lignocellulosic biomass is peat. This study aims to review the effect of the stages of the process in making bioethanol from peat, namely the delignification process, hydrolysis and fermentation of ethanol produced. Keywords: Peat Soil; Delignification; Acid Hydrolysis; Bioethanol

Item Type: Article
Subjects: Kimia > Teknologi Kimia
Divisions: Lain - Lain > Jurnal
Depositing User: KIAGUS AHMAD RONI S.T, M.T, Dr
Date Deposited: 13 Feb 2021 04:40
Last Modified: 13 Feb 2021 04:40
URI: http://repository.um-palembang.ac.id/id/eprint/14100

Actions (login required)

View Item View Item

is powered by EPrints 3 which is developed by the School of Electronics and Computer Science at the University of Southampton. More information and software credits.