CELLULOSIC BIOETHANOL PRODUCTION FROM ULVA LACTUCA MACROALGAE

Author:

ALLOUACHE AMINA1,MAJDA AZIZA2,TOUDERT AHMED ZAID1,AMRANE ABDELTIF3,BALLESTEROS MERCEDES4

Affiliation:

1. Centre de Développement des Energies Renouvelables, Division Bioénergies et Environnement Route de l'Observatoire, B.P. 62, Bouzareah, 16340, Algiers, Algeria

2. Ecole Nationale Polytechnique, Département de Génie Chimique, Laboratoire de Valorisation des Energies Fossiles, 10 Avenue Hassen Badi, BP 182, El Harrach, 16200 Algiers, Algeria

3. Université de Rennes, Ecole Nationale Supérieure de Chimie de Rennes, CNRS, ISCR (Institut des Sciences Chimiques de Rennes) – UMR 6226, F-35000 Rennes, France

4. "Centro de Investigaciones Energeticas, Medioambientales y Tecnologicas, Biofuels Unit, Renewable Energies Department, Avda. Complutense, 40, Madrid, Spain "

Abstract

Nowadays, the use of biofuels has become an unavoidable solution to the depletion of fossil fuels and global warming. The controversy over the use of food crops for the production of the first-generation biofuels and deforestation caused by the second-generation ones has forced the transition to the third generation of biofuels, which avoids the use of arable land and edible products, and does not threaten biodiversity. This generation is based on the marine and freshwater biomass, which has the advantages of being abundant or even invasive, easy to cultivate and having a good energetic potential. Bioethanol production from Ulva lactuca, a local marine macroalgae collected from the west coast of Algiers, was examined in this study. Ulva lactuca showed a good energetic potential due to its carbohydrate-rich content: 9.57% of cellulose, 6.9% of hemicellulose and low lignin content of 5.11%. Ethanol was produced following the separate hydrolysis and fermentation process (SHF), preceded by a thermal acid pretreatment at 120 °C during 15 min. Enzymatic hydrolysis was performed using a commercial cellulase (Celluclast 1.5 L), which saccharified the cellulose contained in the green seaweed, releasing about 85.01% of the total glucose, corresponding to 7.21 g/L after 96 h of enzymatic hydrolysis at pH 5 and 45 °C. About 3.52 g/L of ethanol was produced after 48 h of fermentation using Saccharomyces cerevisiae at 30 °C and pH 5, leading to a high ethanol yield of 0.41 g of ethanol/g of glucose.

Publisher

Institutul de Chimie Macromoleculara Petru Poni

Subject

Materials Chemistry,Organic Chemistry

Reference30 articles.

1. "1 Ministry of Energy and Mines, National Agency for the Promotion and Rationalization of Energy Use, Final Energy Consumption of Algeria, in APRUE 2007, http://www.aprue.org.dz/documents/PUBLICATION%20CONSOMMATION%20ENERGETIQUE%20FINALE%202015.pdf, accessed on 26/04/2021

2. 2 Ministry of Energy, Hydrocarbons Regulatory Authority, National Land Fuels Market Report 2016, March 2017, http://www.arh.gov.dz/pdf/synthese_publiable_cbr.pdf, accessed on 02/05/2021

3. 3 Ministry of Energy, Contribution of the Directorate of New and Renewable Energies and Energy Management, 2014, https://www.energy.gov.dz/?rubrique=energies-nouvelles-renouvelables-et-maitrise-de-lrenergie, accessed on 11/09/2019

4. 4 Ministry of Energy, National Program for New and Renewable Energies, 2015, https://era.dz/salon/fr/content/programme-national-des-%C3%A9nergies-nouvelles-et-renouvelables, accessed on 20/04/2021

5. 5 IEA, Tracking Transport 2020, Paris, 2020, https://www.iea.org/reports/tracking-transport-2020, accessed on 20/04/2021

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