Steam Explosion and Vibrating Membrane Filtration to Improve the Processing Cost of Microalgae Cell Disruption and Fractionation

The aim of this study is to explore an innovative downstream route for microalgae processing to reduce cost production. Experiments have been carried out on cell disruption and fractionation stages to recover lipids, sugars, and proteins. Steam explosion and dynamic membrane filtration were used as...

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Main Authors: Esther Lorente, Monika Hapońska, Ester Clavero, Carles Torras, Joan Salvadó
Format: Article
Language:English
Published: MDPI AG 2018-03-01
Series:Processes
Subjects:
Online Access:http://www.mdpi.com/2227-9717/6/4/28
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spelling doaj-104185d335ad430393c84c2b6c9b5ff82020-11-25T01:33:14ZengMDPI AGProcesses2227-97172018-03-01642810.3390/pr6040028pr6040028Steam Explosion and Vibrating Membrane Filtration to Improve the Processing Cost of Microalgae Cell Disruption and FractionationEsther Lorente0Monika Hapońska1Ester Clavero2Carles Torras3Joan Salvadó4Catalonia Institute for Energy Research, IREC, Marcel·lí Domingo 2, 43007 Tarragona, Catalonia, SpainChemical Engineering Department, Universitat Rovira i Virgili, Av. Països Catalans 26, 43007 Tarragona, Catalonia, SpainCatalonia Institute for Energy Research, IREC, Marcel·lí Domingo 2, 43007 Tarragona, Catalonia, SpainChemical Engineering Department, Universitat Rovira i Virgili, Av. Països Catalans 26, 43007 Tarragona, Catalonia, SpainChemical Engineering Department, Universitat Rovira i Virgili, Av. Països Catalans 26, 43007 Tarragona, Catalonia, SpainThe aim of this study is to explore an innovative downstream route for microalgae processing to reduce cost production. Experiments have been carried out on cell disruption and fractionation stages to recover lipids, sugars, and proteins. Steam explosion and dynamic membrane filtration were used as unit operations. The species tested were Nannochloropsis gaditana, Chlorella sorokiniana, and Dunaliella tertiolecta with different cell wall characteristics. Acid-catalysed steam explosion permitted cell disruption, as well as the hydrolysis of carbohydrates and partial hydrolysis of proteins. This permitted a better access to non-polar solvents for lipid extraction. Dynamic filtration was used to moderate the impact of fouling. Filtration enabled two streams: A permeate containing water and monosaccharides and a low-volume retentate containing the lipids and proteins. The necessary volume of solvent to extract the lipids is thus much lower. An estimation of operational costs of both steam explosion and membrane filtration was performed. The results show that the steam explosion operation cost varies between 0.005 $/kg and 0.014 $/kg of microalgae dry sample, depending on the cost of fuel. Membrane filtration cost in fractionation was estimated at 0.12 $/kg of microalgae dry sample.http://www.mdpi.com/2227-9717/6/4/28cell disruptioncostsdynamic membrane filtrationfractionationmicroalgaesteam explosion
collection DOAJ
language English
format Article
sources DOAJ
author Esther Lorente
Monika Hapońska
Ester Clavero
Carles Torras
Joan Salvadó
spellingShingle Esther Lorente
Monika Hapońska
Ester Clavero
Carles Torras
Joan Salvadó
Steam Explosion and Vibrating Membrane Filtration to Improve the Processing Cost of Microalgae Cell Disruption and Fractionation
Processes
cell disruption
costs
dynamic membrane filtration
fractionation
microalgae
steam explosion
author_facet Esther Lorente
Monika Hapońska
Ester Clavero
Carles Torras
Joan Salvadó
author_sort Esther Lorente
title Steam Explosion and Vibrating Membrane Filtration to Improve the Processing Cost of Microalgae Cell Disruption and Fractionation
title_short Steam Explosion and Vibrating Membrane Filtration to Improve the Processing Cost of Microalgae Cell Disruption and Fractionation
title_full Steam Explosion and Vibrating Membrane Filtration to Improve the Processing Cost of Microalgae Cell Disruption and Fractionation
title_fullStr Steam Explosion and Vibrating Membrane Filtration to Improve the Processing Cost of Microalgae Cell Disruption and Fractionation
title_full_unstemmed Steam Explosion and Vibrating Membrane Filtration to Improve the Processing Cost of Microalgae Cell Disruption and Fractionation
title_sort steam explosion and vibrating membrane filtration to improve the processing cost of microalgae cell disruption and fractionation
publisher MDPI AG
series Processes
issn 2227-9717
publishDate 2018-03-01
description The aim of this study is to explore an innovative downstream route for microalgae processing to reduce cost production. Experiments have been carried out on cell disruption and fractionation stages to recover lipids, sugars, and proteins. Steam explosion and dynamic membrane filtration were used as unit operations. The species tested were Nannochloropsis gaditana, Chlorella sorokiniana, and Dunaliella tertiolecta with different cell wall characteristics. Acid-catalysed steam explosion permitted cell disruption, as well as the hydrolysis of carbohydrates and partial hydrolysis of proteins. This permitted a better access to non-polar solvents for lipid extraction. Dynamic filtration was used to moderate the impact of fouling. Filtration enabled two streams: A permeate containing water and monosaccharides and a low-volume retentate containing the lipids and proteins. The necessary volume of solvent to extract the lipids is thus much lower. An estimation of operational costs of both steam explosion and membrane filtration was performed. The results show that the steam explosion operation cost varies between 0.005 $/kg and 0.014 $/kg of microalgae dry sample, depending on the cost of fuel. Membrane filtration cost in fractionation was estimated at 0.12 $/kg of microalgae dry sample.
topic cell disruption
costs
dynamic membrane filtration
fractionation
microalgae
steam explosion
url http://www.mdpi.com/2227-9717/6/4/28
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