Prospecting for Oleaginous and Robust Chlorella spp. for Coal-Fired Flue-Gas-Mediated Biodiesel Production
Prospecting for robust and high-productivity strains is a strategically important step in the microalgal biodiesel process. In this study, 30 local strains of Chlorella were evaluated in photobioreactors for biodiesel production using coal-fired flue-gas. Three strains (M082, M134, and KR-1) were se...
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doaj-c61dfcbefb8b4cfb8b0da15d496e09682020-11-25T00:11:03ZengMDPI AGEnergies1996-10732018-08-01118202610.3390/en11082026en11082026Prospecting for Oleaginous and Robust Chlorella spp. for Coal-Fired Flue-Gas-Mediated Biodiesel ProductionBohwa Kim0Ramasamy Praveenkumar1Eunji Choi2Kyubock Lee3Sang Goo Jeon4You-Kwan Oh5Advanced Biomass R&D Center, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, KoreaAquatic Biology Laboratory, and Renewable Materials and Nanotechnology Group, KU Leuven, Campus Kulak, 8500 Kortrijk, BelgiumBiomass and Waste Energy Laboratory, Korea Institute of Energy Research (KIER), Daejeon 34129, KoreaGraduate School of Energy Science and Technology, Chungnam National University (CNU), Daejeon 34134, KoreaBiomass and Waste Energy Laboratory, Korea Institute of Energy Research (KIER), Daejeon 34129, KoreaSchool of Chemical and Biomolecular Engineering, Pusan National University (PNU), Busan 46241, KoreaProspecting for robust and high-productivity strains is a strategically important step in the microalgal biodiesel process. In this study, 30 local strains of Chlorella were evaluated in photobioreactors for biodiesel production using coal-fired flue-gas. Three strains (M082, M134, and KR-1) were sequentially selected based on cell growth, lipid content, and fatty acid composition under autotrophic and mixotrophic conditions. Under autotrophic conditions, M082 and M134 showed comparable lipid contents (ca. 230 mg FAME [fatty acid methyl esters derived from microalgal lipids]/g cell) and productivities (ca. 40 mg FAME/L·d) versus a reference strain (KR-1) outdoors with actual flue-gas (CO2, 13%). Interestingly, under mixotrophic conditions, M082 demonstrated, along with maximal lipid content (397 mg FAME/g cell), good tolerance to high temperature (40 °C). Furthermore, the fatty acid methyl esters met important international standards under all of the tested culture conditions. Thus, it was concluded that M082 can be a feedstock of choice for coal-fired, flue-gas-mediated biodiesel production.http://www.mdpi.com/1996-1073/11/8/2026Chlorellacoal-fired flue-gasscreeningbiodiesel propertymixotrophic cultivation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Bohwa Kim Ramasamy Praveenkumar Eunji Choi Kyubock Lee Sang Goo Jeon You-Kwan Oh |
spellingShingle |
Bohwa Kim Ramasamy Praveenkumar Eunji Choi Kyubock Lee Sang Goo Jeon You-Kwan Oh Prospecting for Oleaginous and Robust Chlorella spp. for Coal-Fired Flue-Gas-Mediated Biodiesel Production Energies Chlorella coal-fired flue-gas screening biodiesel property mixotrophic cultivation |
author_facet |
Bohwa Kim Ramasamy Praveenkumar Eunji Choi Kyubock Lee Sang Goo Jeon You-Kwan Oh |
author_sort |
Bohwa Kim |
title |
Prospecting for Oleaginous and Robust Chlorella spp. for Coal-Fired Flue-Gas-Mediated Biodiesel Production |
title_short |
Prospecting for Oleaginous and Robust Chlorella spp. for Coal-Fired Flue-Gas-Mediated Biodiesel Production |
title_full |
Prospecting for Oleaginous and Robust Chlorella spp. for Coal-Fired Flue-Gas-Mediated Biodiesel Production |
title_fullStr |
Prospecting for Oleaginous and Robust Chlorella spp. for Coal-Fired Flue-Gas-Mediated Biodiesel Production |
title_full_unstemmed |
Prospecting for Oleaginous and Robust Chlorella spp. for Coal-Fired Flue-Gas-Mediated Biodiesel Production |
title_sort |
prospecting for oleaginous and robust chlorella spp. for coal-fired flue-gas-mediated biodiesel production |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2018-08-01 |
description |
Prospecting for robust and high-productivity strains is a strategically important step in the microalgal biodiesel process. In this study, 30 local strains of Chlorella were evaluated in photobioreactors for biodiesel production using coal-fired flue-gas. Three strains (M082, M134, and KR-1) were sequentially selected based on cell growth, lipid content, and fatty acid composition under autotrophic and mixotrophic conditions. Under autotrophic conditions, M082 and M134 showed comparable lipid contents (ca. 230 mg FAME [fatty acid methyl esters derived from microalgal lipids]/g cell) and productivities (ca. 40 mg FAME/L·d) versus a reference strain (KR-1) outdoors with actual flue-gas (CO2, 13%). Interestingly, under mixotrophic conditions, M082 demonstrated, along with maximal lipid content (397 mg FAME/g cell), good tolerance to high temperature (40 °C). Furthermore, the fatty acid methyl esters met important international standards under all of the tested culture conditions. Thus, it was concluded that M082 can be a feedstock of choice for coal-fired, flue-gas-mediated biodiesel production. |
topic |
Chlorella coal-fired flue-gas screening biodiesel property mixotrophic cultivation |
url |
http://www.mdpi.com/1996-1073/11/8/2026 |
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