Lipid recovery from microalgae biomass using sugaring-out extraction in liquid biphasic flotation system
The increase in global temperature calls for ambitious action to reduce the release of greenhouse gases into the atmosphere. The transportation sector contributes up to 25% of the total emissions released, mainly from the burning of vehicle fuel. Therefore, scientists from all around the world are f...
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sg-ntu-dr.10356-1692862023-07-14T15:31:47Z Lipid recovery from microalgae biomass using sugaring-out extraction in liquid biphasic flotation system Aron, Nurul Syahirah Mat Chew, Kit Wayne Ma, Zengling Tao, Yang Sriariyanun, Malinee Tan, Inn Shi Mạnh, Cường Nguyễn Xia, Ao Kurniawan, Tonni Agustiono Show, Pau Loke School of Chemistry, Chemical Engineering and Biotechnology Engineering::Bioengineering Aqueous Two-Phase Flotation Microalgae Biorefinery The increase in global temperature calls for ambitious action to reduce the release of greenhouse gases into the atmosphere. The transportation sector contributes up to 25% of the total emissions released, mainly from the burning of vehicle fuel. Therefore, scientists from all around the world are focusing on finding a sustainable alternative to conventional vehicle fuel. Biofuel has attracted much attention, as it shows great potential for the replacement of traditional fossil fuels. However, the main bottlenecks of biofuel are the ongoing controversial conflict between food security with biofuel production. Therefore, this study focuses on a sustainable extraction of lipids from microalgae for the production of biofuel using a liquid biphasic flotation system coupled with sugaring-out method. This is the first study to combine the methods of liquid biphasic flotation system with the sugaring-out technique. It represents a holistic study of optimum and effective conditions needed to extract lipids from the system and to understand the reliability of sugar solution as the agent of cell disruption. At the 15-min flotation time, 150 g/L of fructose solution with a 1:2 mass separating agent-acetonitrile ratio successfully extracted up to 74% of lipid from Chlorella sorokiniana CY-1. Two types of fatty acid methyl esters were recovered from the study, with C5:0 being the main component extracted. Published version This work was supported by the Fundamental Research Grant Scheme, Malaysia [FRGS/1/ 2019/STG05/UNIM/02/2] and MyPAIR-PHC-Hibiscus Grant [MyPAIR/1/2020/STG05/UNIM/1]. 2023-07-11T05:23:34Z 2023-07-11T05:23:34Z 2023 Journal Article Aron, N. S. M., Chew, K. W., Ma, Z., Tao, Y., Sriariyanun, M., Tan, I. S., Mạnh, C. N., Xia, A., Kurniawan, T. A. & Show, P. L. (2023). Lipid recovery from microalgae biomass using sugaring-out extraction in liquid biphasic flotation system. Fermentation, 9(3), 198-. https://dx.doi.org/10.3390/fermentation9030198 2311-5637 https://hdl.handle.net/10356/169286 10.3390/fermentation9030198 2-s2.0-85151134018 3 9 198 en Fermentation © 2023 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https:// creativecommons.org/licenses/by/ 4.0/). application/pdf |
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Engineering::Bioengineering Aqueous Two-Phase Flotation Microalgae Biorefinery Aron, Nurul Syahirah Mat Chew, Kit Wayne Ma, Zengling Tao, Yang Sriariyanun, Malinee Tan, Inn Shi Mạnh, Cường Nguyễn Xia, Ao Kurniawan, Tonni Agustiono Show, Pau Loke Lipid recovery from microalgae biomass using sugaring-out extraction in liquid biphasic flotation system |
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The increase in global temperature calls for ambitious action to reduce the release of greenhouse gases into the atmosphere. The transportation sector contributes up to 25% of the total emissions released, mainly from the burning of vehicle fuel. Therefore, scientists from all around the world are focusing on finding a sustainable alternative to conventional vehicle fuel. Biofuel has attracted much attention, as it shows great potential for the replacement of traditional fossil fuels. However, the main bottlenecks of biofuel are the ongoing controversial conflict between food security with biofuel production. Therefore, this study focuses on a sustainable extraction of lipids from microalgae for the production of biofuel using a liquid biphasic flotation system coupled with sugaring-out method. This is the first study to combine the methods of liquid biphasic flotation system with the sugaring-out technique. It represents a holistic study of optimum and effective conditions needed to extract lipids from the system and to understand the reliability of sugar solution as the agent of cell disruption. At the 15-min flotation time, 150 g/L of fructose solution with a 1:2 mass separating agent-acetonitrile ratio successfully extracted up to 74% of lipid from Chlorella sorokiniana CY-1. Two types of fatty acid methyl esters were recovered from the study, with C5:0 being the main component extracted. |
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School of Chemistry, Chemical Engineering and Biotechnology |
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School of Chemistry, Chemical Engineering and Biotechnology Aron, Nurul Syahirah Mat Chew, Kit Wayne Ma, Zengling Tao, Yang Sriariyanun, Malinee Tan, Inn Shi Mạnh, Cường Nguyễn Xia, Ao Kurniawan, Tonni Agustiono Show, Pau Loke |
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Article |
author |
Aron, Nurul Syahirah Mat Chew, Kit Wayne Ma, Zengling Tao, Yang Sriariyanun, Malinee Tan, Inn Shi Mạnh, Cường Nguyễn Xia, Ao Kurniawan, Tonni Agustiono Show, Pau Loke |
author_sort |
Aron, Nurul Syahirah Mat |
title |
Lipid recovery from microalgae biomass using sugaring-out extraction in liquid biphasic flotation system |
title_short |
Lipid recovery from microalgae biomass using sugaring-out extraction in liquid biphasic flotation system |
title_full |
Lipid recovery from microalgae biomass using sugaring-out extraction in liquid biphasic flotation system |
title_fullStr |
Lipid recovery from microalgae biomass using sugaring-out extraction in liquid biphasic flotation system |
title_full_unstemmed |
Lipid recovery from microalgae biomass using sugaring-out extraction in liquid biphasic flotation system |
title_sort |
lipid recovery from microalgae biomass using sugaring-out extraction in liquid biphasic flotation system |
publishDate |
2023 |
url |
https://hdl.handle.net/10356/169286 |
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1772828158620336128 |