Enzymatic Hydrolysis of Liquid Hot Water Pre-treated Macro-alga (Ulva lactuca) for Fermentable Sugar Production

Ulva lactuca is one of green macro-algae that has a significant cellulose content. This study aims to determine the effect of variations in substrate-enzyme ratio and hydrolysis time on the enzymatic hydrolysis process of cellulose extracted from Ulva lactuca to produce fermentable sugar or reducing...

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Main Authors: Poespowati Tri, Riyanto Ardy, Hazlan, Mahmudi Ali, Kartika-Dewi Rini
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201815601015
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spelling doaj-7078d8d9403d475ea5e3b0438f409e3c2021-02-02T03:23:43ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011560101510.1051/matecconf/201815601015matecconf_rsce2018_01015Enzymatic Hydrolysis of Liquid Hot Water Pre-treated Macro-alga (Ulva lactuca) for Fermentable Sugar ProductionPoespowati TriRiyanto ArdyHazlanMahmudi AliKartika-Dewi RiniUlva lactuca is one of green macro-algae that has a significant cellulose content. This study aims to determine the effect of variations in substrate-enzyme ratio and hydrolysis time on the enzymatic hydrolysis process of cellulose extracted from Ulva lactuca to produce fermentable sugar or reducing sugar as a raw material for making bioethanol. Firstly, Liquid Hot Water (LHW) pre-treatment process was performed at the temperature of 135°C for 20 minutes; the purpose of this pre-treatment was to reduce the content of hemicellulose and to increase the cellulose content. Secondly, enzymatic hydrolysis process using cellulase enzyme was carried out, in this process citrate buffer was needed in order to stabilize the pH level during hydrolysis process. The process variables were ratio of substrate-enzyme (1:0.05; 1:0.1; 1:1.5; 1:2 and 1:2.5 w/w) and hydrolysis time (24, 48 and 72 hours) under temperature of 45°C and pH level of 5.5. The results shows that the highest reducing sugar yield is 79.7% obtained at a ratio of substrate-enzyme of 1:2.5 (w/w) for 48 hours of hydrolysis time, with the result of reducing sugar concentration is 16.2043 mg/mL.https://doi.org/10.1051/matecconf/201815601015
collection DOAJ
language English
format Article
sources DOAJ
author Poespowati Tri
Riyanto Ardy
Hazlan
Mahmudi Ali
Kartika-Dewi Rini
spellingShingle Poespowati Tri
Riyanto Ardy
Hazlan
Mahmudi Ali
Kartika-Dewi Rini
Enzymatic Hydrolysis of Liquid Hot Water Pre-treated Macro-alga (Ulva lactuca) for Fermentable Sugar Production
MATEC Web of Conferences
author_facet Poespowati Tri
Riyanto Ardy
Hazlan
Mahmudi Ali
Kartika-Dewi Rini
author_sort Poespowati Tri
title Enzymatic Hydrolysis of Liquid Hot Water Pre-treated Macro-alga (Ulva lactuca) for Fermentable Sugar Production
title_short Enzymatic Hydrolysis of Liquid Hot Water Pre-treated Macro-alga (Ulva lactuca) for Fermentable Sugar Production
title_full Enzymatic Hydrolysis of Liquid Hot Water Pre-treated Macro-alga (Ulva lactuca) for Fermentable Sugar Production
title_fullStr Enzymatic Hydrolysis of Liquid Hot Water Pre-treated Macro-alga (Ulva lactuca) for Fermentable Sugar Production
title_full_unstemmed Enzymatic Hydrolysis of Liquid Hot Water Pre-treated Macro-alga (Ulva lactuca) for Fermentable Sugar Production
title_sort enzymatic hydrolysis of liquid hot water pre-treated macro-alga (ulva lactuca) for fermentable sugar production
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Ulva lactuca is one of green macro-algae that has a significant cellulose content. This study aims to determine the effect of variations in substrate-enzyme ratio and hydrolysis time on the enzymatic hydrolysis process of cellulose extracted from Ulva lactuca to produce fermentable sugar or reducing sugar as a raw material for making bioethanol. Firstly, Liquid Hot Water (LHW) pre-treatment process was performed at the temperature of 135°C for 20 minutes; the purpose of this pre-treatment was to reduce the content of hemicellulose and to increase the cellulose content. Secondly, enzymatic hydrolysis process using cellulase enzyme was carried out, in this process citrate buffer was needed in order to stabilize the pH level during hydrolysis process. The process variables were ratio of substrate-enzyme (1:0.05; 1:0.1; 1:1.5; 1:2 and 1:2.5 w/w) and hydrolysis time (24, 48 and 72 hours) under temperature of 45°C and pH level of 5.5. The results shows that the highest reducing sugar yield is 79.7% obtained at a ratio of substrate-enzyme of 1:2.5 (w/w) for 48 hours of hydrolysis time, with the result of reducing sugar concentration is 16.2043 mg/mL.
url https://doi.org/10.1051/matecconf/201815601015
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AT riyantoardy enzymatichydrolysisofliquidhotwaterpretreatedmacroalgaulvalactucaforfermentablesugarproduction
AT hazlan enzymatichydrolysisofliquidhotwaterpretreatedmacroalgaulvalactucaforfermentablesugarproduction
AT mahmudiali enzymatichydrolysisofliquidhotwaterpretreatedmacroalgaulvalactucaforfermentablesugarproduction
AT kartikadewirini enzymatichydrolysisofliquidhotwaterpretreatedmacroalgaulvalactucaforfermentablesugarproduction
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