Improvement of hydrocarbon recovery by spouting solvent into culture of Botryococcus braunii

Botryococcus braunii , a green microalga, is known to produce plentiful liquid hydrocarbons as promising biodiesel resources. However, the hydrocarbon extraction methods that have so far achieved have several problems such as low efficiency and high cost. In our study, a solvent-spouted extraction p...

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Published in:Bioprocess and biosystems engineering Vol. 36; no. 12; pp. 1977 - 1985
Main Authors: Choi, Seung Phill, Bahn, Sang-Hoon, Sim, Sang Jun
Format: Journal Article
Language:English
Published: Berlin/Heidelberg Springer Berlin Heidelberg 01-12-2013
Springer Nature B.V
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Abstract Botryococcus braunii , a green microalga, is known to produce plentiful liquid hydrocarbons as promising biodiesel resources. However, the hydrocarbon extraction methods that have so far achieved have several problems such as low efficiency and high cost. In our study, a solvent-spouted extraction process integrated with photo-bioculture was designed for simultaneous realization of hydrocarbon extraction and cell culture in two phases. The n -octane was selected as the best solvent among several solvents because its biocompatibility was highest for B. braunii . As a result, high level of biomass and hydrocarbon, 4.17 and 893.79 mg/L, respectively, was attained at 100 mL/min of solvent recycling rate through three times of processes for 66 days. Moreover, formation of cell clump was suppressed in solvent extraction, cells were regenerated after it, and thus cell viability was maintained even after repeated cycles of it. Finally, this solvent-spouted culture process required the smaller cost due to reuse of the less solvent and regenerated cells, compared with the other conventional methods. Accordingly, this technique would be applicable to exploit the continuous extraction of hydrocarbon from the algal biomass, especially for application on a large scale.
AbstractList Botryococcus braunii, a green microalga, is known to produce plentiful liquid hydrocarbons as promising biodiesel resources. However, the hydrocarbon extraction methods that have so far achieved have several problems such as low efficiency and high cost. In our study, a solvent-spouted extraction process integrated with photo-bioculture was designed for simultaneous realization of hydrocarbon extraction and cell culture in two phases. The n-octane was selected as the best solvent among several solvents because its biocompatibility was highest for B. braunii. As a result, high level of biomass and hydrocarbon, 4.17 and 893.79 mg/L, respectively, was attained at 100 mL/min of solvent recycling rate through three times of processes for 66 days. Moreover, formation of cell clump was suppressed in solvent extraction, cells were regenerated after it, and thus cell viability was maintained even after repeated cycles of it. Finally, this solvent-spouted culture process required the smaller cost due to reuse of the less solvent and regenerated cells, compared with the other conventional methods. Accordingly, this technique would be applicable to exploit the continuous extraction of hydrocarbon from the algal biomass, especially for application on a large scale.[PUBLICATION ABSTRACT]
Botryococcus braunii, a green microalga, is known to produce plentiful liquid hydrocarbons as promising biodiesel resources. However, the hydrocarbon extraction methods that have so far achieved have several problems such as low efficiency and high cost. In our study, a solvent-spouted extraction process integrated with photo-bioculture was designed for simultaneous realization of hydrocarbon extraction and cell culture in two phases. The n-octane was selected as the best solvent among several solvents because its biocompatibility was highest for B. braunii. As a result, high level of biomass and hydrocarbon, 4.17 and 893.79 mg/L, respectively, was attained at 100 mL/min of solvent recycling rate through three times of processes for 66 days. Moreover, formation of cell clump was suppressed in solvent extraction, cells were regenerated after it, and thus cell viability was maintained even after repeated cycles of it. Finally, this solvent-spouted culture process required the smaller cost due to reuse of the less solvent and regenerated cells, compared with the other conventional methods. Accordingly, this technique would be applicable to exploit the continuous extraction of hydrocarbon from the algal biomass, especially for application on a large scale.
Botryococcus braunii , a green microalga, is known to produce plentiful liquid hydrocarbons as promising biodiesel resources. However, the hydrocarbon extraction methods that have so far achieved have several problems such as low efficiency and high cost. In our study, a solvent-spouted extraction process integrated with photo-bioculture was designed for simultaneous realization of hydrocarbon extraction and cell culture in two phases. The n -octane was selected as the best solvent among several solvents because its biocompatibility was highest for B. braunii . As a result, high level of biomass and hydrocarbon, 4.17 and 893.79 mg/L, respectively, was attained at 100 mL/min of solvent recycling rate through three times of processes for 66 days. Moreover, formation of cell clump was suppressed in solvent extraction, cells were regenerated after it, and thus cell viability was maintained even after repeated cycles of it. Finally, this solvent-spouted culture process required the smaller cost due to reuse of the less solvent and regenerated cells, compared with the other conventional methods. Accordingly, this technique would be applicable to exploit the continuous extraction of hydrocarbon from the algal biomass, especially for application on a large scale.
Author Bahn, Sang-Hoon
Choi, Seung Phill
Sim, Sang Jun
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  surname: Sim
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  email: simsj@korea.ac.kr
  organization: Department of Chemical and Biological Engineering and Green School, Korea University
BackLink https://www.ncbi.nlm.nih.gov/pubmed/23703677$$D View this record in MEDLINE/PubMed
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Snippet Botryococcus braunii , a green microalga, is known to produce plentiful liquid hydrocarbons as promising biodiesel resources. However, the hydrocarbon...
Botryococcus braunii, a green microalga, is known to produce plentiful liquid hydrocarbons as promising biodiesel resources. However, the hydrocarbon...
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pubmed
springer
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StartPage 1977
SubjectTerms Bacteria
Bioengineering
Biomass
Bioreactors
Biotechnology
Botryococcus braunii
Chemistry
Chemistry and Materials Science
Chlorophyta - cytology
Chlorophyta - metabolism
Culture Media
Environmental Engineering/Biotechnology
Food Science
Hydrocarbons
Hydrocarbons - isolation & purification
Industrial and Production Engineering
Industrial Chemistry/Chemical Engineering
Original Paper
Solvent extraction
Solvent extraction processes
Solvents
Solvents - administration & dosage
Title Improvement of hydrocarbon recovery by spouting solvent into culture of Botryococcus braunii
URI https://link.springer.com/article/10.1007/s00449-013-0974-7
https://www.ncbi.nlm.nih.gov/pubmed/23703677
https://www.proquest.com/docview/1449910918
https://search.proquest.com/docview/1458184969
https://search.proquest.com/docview/1464504248
Volume 36
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