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Article Dans Une Revue Analytical and Bioanalytical Chemistry Année : 2015

Behavior of PAH/mineral associations during thermodesorption: impact for the determination of mineral retention properties towards PAHs

Résumé

Polycyclic aromatic hydrocarbons (PAHs) associated with two minerals (silica sand and bentonite) presenting opposite retention properties were analyzed with a thermodesorption (Td)-GC-MS coupling in order to validate this technique as a new and rapid way to evaluate the solid sorption properties. Two analysis modes were used, evolved gas analysis (EGA) and Td with cryo-trap. EGA allowed a real-time monitoring of the compounds desorbed during a temperature program and gave a first screening of the samples while Td gave more precise indications on compound abundances for selected temperature ranges. When associated with silica sand, PAHs were released at relatively low temperatures (< 300 A degrees C) close to corresponding boiling point, whereas for the PAH/bentonite mixture, PAHs were desorbed at much higher temperatures; they were also present in much lower abundance and were associated with mono-aromatic compounds. With bentonite, the PAH abundances decreased and the mono-aromatics increased with the increasing PAH molecular weight. These results indicated a clear PAH retention by the bentonite due to polymerization, followed by a thermal cracking at higher temperatures. The Td-GC-MS was proven to efficiently underline differences in retention properties of two minerals, and this study highlights the great potential of this technique to evaluate compound/matrix bond strength and interaction.
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Dates et versions

hal-01158744 , version 1 (02-02-2018)

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Coralie Biache, Catherine Lorgeoux, Alain Saada, Pierre Faure. Behavior of PAH/mineral associations during thermodesorption: impact for the determination of mineral retention properties towards PAHs. Analytical and Bioanalytical Chemistry, 2015, 407 (12), pp.3509-3516. ⟨10.1007/s00216-015-8547-z⟩. ⟨hal-01158744⟩
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