Supercritical Fluids for Higher Extraction Yields of Lipids from Archeological Ceramics

The extraction and study of organic residues from ceramics has been a subject of interest for the last 50 years in archeology and archeological science. Lipids are among the best-preserved organic substances in archeological contexts and can provide information about the diets of ancient populations...

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Published inAnalytical chemistry (Washington) Vol. 90; no. 4; pp. 2420 - 2424
Main Authors Devièse, Thibaut, Van Ham-Meert, Alicia, Hare, Vincent John, Lundy, Jasmine, Hommel, Peter, Ivanovich Bazaliiskii, Vladimir, Orton, Jayson
Format Journal Article
LanguageEnglish
Published United States American Chemical Society 20.02.2018
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Online AccessGet full text
ISSN0003-2700
1520-6882
1520-6882
DOI10.1021/acs.analchem.7b04913

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Abstract The extraction and study of organic residues from ceramics has been a subject of interest for the last 50 years in archeology and archeological science. Lipids are among the best-preserved organic substances in archeological contexts and can provide information about the diets of ancient populations as well as past environments. Here, we present a method which demonstrates significantly improved extraction of lipids from archeological pots by replacing liquid organic solvents with supercritical fluids. Optimization of the procedure using response surface methodology (RSM) approach showed that, on our system, optimal conditions for supercritical extraction of lipids from synthetic fired clay ceramics could be achieved using carbon dioxide with 16 vol % of cosolvent EtOH–H2O (95:5 v/v) in 90 min at a flow rate of 2.3 mL/min, for a pressure of 30 MPa and a temperature of 50 °C. For all reference and archeological samples included in this study, lipid yields obtained by supercritical fluid extraction under these optimal conditions were systematically higher than by conventional solvent extraction. This study also highlighted a variability of the ratio of unsaturated versus saturated fatty acids depending on the extraction method. This can have important implications in the identification of the residue(s). The increased extraction efficiency provided by supercritical fluids, as well as their minimally destructive nature, enable new and refined approaches to residue analysis and dating of archeological ceramics.
AbstractList The extraction and study of organic residues from ceramics has been a subject of interest for the last 50 years in archeology and archeological science. Lipids are among the best-preserved organic substances in archeological contexts and can provide information about the diets of ancient populations as well as past environments. Here, we present a method which demonstrates significantly improved extraction of lipids from archeological pots by replacing liquid organic solvents with supercritical fluids. Optimization of the procedure using response surface methodology (RSM) approach showed that, on our system, optimal conditions for supercritical extraction of lipids from synthetic fired clay ceramics could be achieved using carbon dioxide with 16 vol % of cosolvent EtOH-H O (95:5 v/v) in 90 min at a flow rate of 2.3 mL/min, for a pressure of 30 MPa and a temperature of 50 °C. For all reference and archeological samples included in this study, lipid yields obtained by supercritical fluid extraction under these optimal conditions were systematically higher than by conventional solvent extraction. This study also highlighted a variability of the ratio of unsaturated versus saturated fatty acids depending on the extraction method. This can have important implications in the identification of the residue(s). The increased extraction efficiency provided by supercritical fluids, as well as their minimally destructive nature, enable new and refined approaches to residue analysis and dating of archeological ceramics.
The extraction and study of organic residues from ceramics has been a subject of interest for the last 50 years in archeology and archeological science. Lipids are among the best-preserved organic substances in archeological contexts and can provide information about the diets of ancient populations as well as past environments. Here, we present a method which demonstrates significantly improved extraction of lipids from archeological pots by replacing liquid organic solvents with supercritical fluids. Optimization of the procedure using response surface methodology (RSM) approach showed that, on our system, optimal conditions for supercritical extraction of lipids from synthetic fired clay ceramics could be achieved using carbon dioxide with 16 vol % of cosolvent EtOH–H2O (95:5 v/v) in 90 min at a flow rate of 2.3 mL/min, for a pressure of 30 MPa and a temperature of 50 °C. For all reference and archeological samples included in this study, lipid yields obtained by supercritical fluid extraction under these optimal conditions were systematically higher than by conventional solvent extraction. This study also highlighted a variability of the ratio of unsaturated versus saturated fatty acids depending on the extraction method. This can have important implications in the identification of the residue(s). The increased extraction efficiency provided by supercritical fluids, as well as their minimally destructive nature, enable new and refined approaches to residue analysis and dating of archeological ceramics.
The extraction and study of organic residues from ceramics has been a subject of interest for the last 50 years in archeology and archeological science. Lipids are among the best-preserved organic substances in archeological contexts and can provide information about the diets of ancient populations as well as past environments. Here, we present a method which demonstrates significantly improved extraction of lipids from archeological pots by replacing liquid organic solvents with supercritical fluids. Optimization of the procedure using response surface methodology (RSM) approach showed that, on our system, optimal conditions for supercritical extraction of lipids from synthetic fired clay ceramics could be achieved using carbon dioxide with 16 vol % of cosolvent EtOH-H2O (95:5 v/v) in 90 min at a flow rate of 2.3 mL/min, for a pressure of 30 MPa and a temperature of 50 °C. For all reference and archeological samples included in this study, lipid yields obtained by supercritical fluid extraction under these optimal conditions were systematically higher than by conventional solvent extraction. This study also highlighted a variability of the ratio of unsaturated versus saturated fatty acids depending on the extraction method. This can have important implications in the identification of the residue(s). The increased extraction efficiency provided by supercritical fluids, as well as their minimally destructive nature, enable new and refined approaches to residue analysis and dating of archeological ceramics.The extraction and study of organic residues from ceramics has been a subject of interest for the last 50 years in archeology and archeological science. Lipids are among the best-preserved organic substances in archeological contexts and can provide information about the diets of ancient populations as well as past environments. Here, we present a method which demonstrates significantly improved extraction of lipids from archeological pots by replacing liquid organic solvents with supercritical fluids. Optimization of the procedure using response surface methodology (RSM) approach showed that, on our system, optimal conditions for supercritical extraction of lipids from synthetic fired clay ceramics could be achieved using carbon dioxide with 16 vol % of cosolvent EtOH-H2O (95:5 v/v) in 90 min at a flow rate of 2.3 mL/min, for a pressure of 30 MPa and a temperature of 50 °C. For all reference and archeological samples included in this study, lipid yields obtained by supercritical fluid extraction under these optimal conditions were systematically higher than by conventional solvent extraction. This study also highlighted a variability of the ratio of unsaturated versus saturated fatty acids depending on the extraction method. This can have important implications in the identification of the residue(s). The increased extraction efficiency provided by supercritical fluids, as well as their minimally destructive nature, enable new and refined approaches to residue analysis and dating of archeological ceramics.
The extraction and study of organic residues from ceramics has been a subject of interest for the last 50 years in archeology and archeological science. Lipids are among the best-preserved organic substances in archeological contexts and can provide information about the diets of ancient populations as well as past environments. Here, we present a method which demonstrates significantly improved extraction of lipids from archeological pots by replacing liquid organic solvents with supercritical fluids. Optimization of the procedure using response surface methodology (RSM) approach showed that, on our system, optimal conditions for supercritical extraction of lipids from synthetic fired clay ceramics could be achieved using carbon dioxide with 16 vol % of cosolvent EtOH–H₂O (95:5 v/v) in 90 min at a flow rate of 2.3 mL/min, for a pressure of 30 MPa and a temperature of 50 °C. For all reference and archeological samples included in this study, lipid yields obtained by supercritical fluid extraction under these optimal conditions were systematically higher than by conventional solvent extraction. This study also highlighted a variability of the ratio of unsaturated versus saturated fatty acids depending on the extraction method. This can have important implications in the identification of the residue(s). The increased extraction efficiency provided by supercritical fluids, as well as their minimally destructive nature, enable new and refined approaches to residue analysis and dating of archeological ceramics.
Author Devièse, Thibaut
Hommel, Peter
Orton, Jayson
Van Ham-Meert, Alicia
Hare, Vincent John
Ivanovich Bazaliiskii, Vladimir
Lundy, Jasmine
AuthorAffiliation Department of Archaeology
University of South Africa
Irkutsk State University
Department of Anthropology and Archaeology
Irkutsk Laboratory of Archaeology and Paleoecology, Institute of Archaeology and Ethnography, Siberian Branch of the Russian Academy of Sciences
University of Oxford
University of Cape Town
Research Laboratory for Archaeology and the History of Art
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Cites_doi 10.1016/S0896-8446(99)00049-2
10.1021/ac020743y
10.1111/j.1095-9270.1995.tb00724.x
10.1016/j.supflu.2012.12.033
10.1007/BF02221004
10.1016/j.jas.2014.03.033
10.1098/rspa.2012.0109
10.1039/b617543k
10.1016/j.jasrep.2016.04.005
10.1017/ppr.2017.12
10.1016/j.supflu.2013.01.006
10.1017/S0033822200057866
10.1016/j.supflu.2013.01.002
10.1080/00438240801889373
10.1002/oa.935
10.2307/1506861
10.1016/S2221-1691(12)60139-7
10.1080/00438243.1993.9980229
10.1039/c3ay41678j
10.1016/j.jas.2015.01.016
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References ref9/cit9
ref99/cit99
ref6/cit6
ref3/cit3
ref18/cit18
Pollard A. M. (ref1/cit1) 2017
ref11/cit11
ref25/cit25
ref16/cit16
ref23/cit23
ref8/cit8
ref2/cit2
ref20/cit20
ref17/cit17
ref10/cit10
ref19/cit19
ref21/cit21
ref12/cit12
ref15/cit15
ref22/cit22
ref13/cit13
ref4/cit4
ref24/cit24
Sairam P. (ref14/cit14) 2012; 2
ref7/cit7
References_xml – ident: ref2/cit2
– ident: ref15/cit15
  doi: 10.1016/S0896-8446(99)00049-2
– ident: ref22/cit22
  doi: 10.1021/ac020743y
– ident: ref8/cit8
  doi: 10.1111/j.1095-9270.1995.tb00724.x
– ident: ref6/cit6
  doi: 10.1016/j.supflu.2012.12.033
– ident: ref18/cit18
  doi: 10.1007/BF02221004
– ident: ref13/cit13
– ident: ref20/cit20
  doi: 10.1016/j.jas.2014.03.033
– ident: ref24/cit24
  doi: 10.1098/rspa.2012.0109
– ident: ref10/cit10
  doi: 10.1039/b617543k
– ident: ref11/cit11
– ident: ref4/cit4
  doi: 10.1016/j.jasrep.2016.04.005
– ident: ref17/cit17
  doi: 10.1017/ppr.2017.12
– ident: ref7/cit7
  doi: 10.1016/j.supflu.2013.01.006
– ident: ref23/cit23
  doi: 10.1017/S0033822200057866
– ident: ref12/cit12
  doi: 10.1016/j.supflu.2013.01.002
– ident: ref3/cit3
  doi: 10.1080/00438240801889373
– ident: ref19/cit19
  doi: 10.1002/oa.935
– ident: ref9/cit9
  doi: 10.2307/1506861
– ident: ref16/cit16
– volume: 2
  start-page: 112
  year: 2012
  ident: ref14/cit14
  publication-title: Asian Pac. J. Trop. Biomed.
  doi: 10.1016/S2221-1691(12)60139-7
– volume-title: Archaeological Chemistry
  year: 2017
  ident: ref1/cit1
– ident: ref21/cit21
  doi: 10.1080/00438243.1993.9980229
– ident: ref99/cit99
  doi: 10.1039/c3ay41678j
– ident: ref25/cit25
  doi: 10.1016/j.jas.2015.01.016
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Snippet The extraction and study of organic residues from ceramics has been a subject of interest for the last 50 years in archeology and archeological science. Lipids...
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SubjectTerms Archaeology
Carbon dioxide
Ceramics
Chemistry
clay
Dating techniques
diet
Environmental Sciences
Fatty acids
Flow rates
Flow velocity
Lipids
liquids
Optimization
organic matter
Organic solvents
Response surface methodology
saturated fatty acids
Solvent extraction
Solvents
supercritical fluid extraction
Supercritical fluids
temperature
Title Supercritical Fluids for Higher Extraction Yields of Lipids from Archeological Ceramics
URI http://dx.doi.org/10.1021/acs.analchem.7b04913
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