Supercritical CO₂ extraction of policyclic aromatic hydrocarbons from a contaminated soil
Polycyclic Aromatic Hydrocarbons (PAHs) that are generated by diverse anthropogenic sources, are classified by the U.S. Environmental Protection Agency (EPA) as Semivolatile Hazardous Compounds. PAHs are pollutants of great concern due to their toxicity and mobility in the environment; they can be f...
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ndltd-fiu.edu-oai-digitalcommons.fiu.edu-etd-45212018-01-05T15:35:11Z Supercritical CO₂ extraction of policyclic aromatic hydrocarbons from a contaminated soil Ferreira, Oscar G. Polycyclic Aromatic Hydrocarbons (PAHs) that are generated by diverse anthropogenic sources, are classified by the U.S. Environmental Protection Agency (EPA) as Semivolatile Hazardous Compounds. PAHs are pollutants of great concern due to their toxicity and mobility in the environment; they can be found in air, water, and soil media. Supercritical Fluid Extraction (SFE) is currently an alternative technology for the removal of PAHs from solid matrices. Carbon dioxide, water and organic compounds, above their critical temperature and pressure conditions, have been used as supercritical fluids. This bench-scale study evaluates the influence of temperature and use of modifiers on the extraction efficiency of PAHs in a diesel-contaminated soil sample from the Miami International Airport (MIA). Carbon dioxide at supercritical conditions was used as extraction fluid in most of this research. Subcritical water, in vapor and liquid states, was also used in a preliminary testing as extraction fluids. A conceptual design of a supercritical carbon dioxide extraction plant is suggested. 1999-10-06T07:00:00Z text application/pdf http://digitalcommons.fiu.edu/etd/3312 FIU Electronic Theses and Dissertations FIU Digital Commons Life Sciences Other Engineering |
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Life Sciences Other Engineering |
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Life Sciences Other Engineering Ferreira, Oscar G. Supercritical CO₂ extraction of policyclic aromatic hydrocarbons from a contaminated soil |
description |
Polycyclic Aromatic Hydrocarbons (PAHs) that are generated by diverse anthropogenic sources, are classified by the U.S. Environmental Protection Agency (EPA) as Semivolatile Hazardous Compounds. PAHs are pollutants of great concern due to their toxicity and mobility in the environment; they can be found in air, water, and soil media. Supercritical Fluid Extraction (SFE) is currently an alternative technology for the removal of PAHs from solid matrices. Carbon dioxide, water and organic compounds, above their critical temperature and pressure conditions, have been used as supercritical fluids. This bench-scale study evaluates the influence of temperature and use of modifiers on the extraction efficiency of PAHs in a diesel-contaminated soil sample from the Miami International Airport (MIA). Carbon dioxide at supercritical conditions was used as extraction fluid in most of this research. Subcritical water, in vapor and liquid states, was also used in a preliminary testing as extraction fluids. A conceptual design of a supercritical carbon dioxide extraction plant is suggested. |
author |
Ferreira, Oscar G. |
author_facet |
Ferreira, Oscar G. |
author_sort |
Ferreira, Oscar G. |
title |
Supercritical CO₂ extraction of policyclic aromatic hydrocarbons from a contaminated soil |
title_short |
Supercritical CO₂ extraction of policyclic aromatic hydrocarbons from a contaminated soil |
title_full |
Supercritical CO₂ extraction of policyclic aromatic hydrocarbons from a contaminated soil |
title_fullStr |
Supercritical CO₂ extraction of policyclic aromatic hydrocarbons from a contaminated soil |
title_full_unstemmed |
Supercritical CO₂ extraction of policyclic aromatic hydrocarbons from a contaminated soil |
title_sort |
supercritical co₂ extraction of policyclic aromatic hydrocarbons from a contaminated soil |
publisher |
FIU Digital Commons |
publishDate |
1999 |
url |
http://digitalcommons.fiu.edu/etd/3312 |
work_keys_str_mv |
AT ferreiraoscarg supercriticalco2extractionofpolicyclicaromatichydrocarbonsfromacontaminatedsoil |
_version_ |
1718581668241997824 |