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  5. Dendrochemical investigation on hexachlorohexane isomers (HCHs) in poplars by integrated study of micro-Fourier transform infrared spectrometry and gas chromatography

Dendrochemical investigation on hexachlorohexane isomers (HCHs) in poplars by integrated study of micro-Fourier transform infrared spectrometry and gas chromatography

Author(s)
Bernini, Roberta  
Pelosi, Claudia  
Carastro, Isabella
Venanzi, Rachele
Alfredo Di Filippo  
more
Date Issued
2016
Type
article
Volume
30
Issue
4
Start Page
1455
End Page
1463
DOI
10.1007/s00468-015-1343-8
Journal
TREES  
Abstract
A combined Micro-FTIRS and GC analysis revealed that poplars grown under natural field conditions can accumulate HCHs in their wood when growing in contaminated areas. Abstract: Micro-Fourier Transform Infrared (micro-FTIR) spectroscopy was used to evaluate possible contaminations from hexachlorocyclohexane isomers (HCHs) in poplar tree-rings growing near a river polluted by HCHs (Sacco River, Latium, Italy). Conventional gas chromatographic analyses (GC–ECD and GC–MS) carried out on the same samples confirmed the micro-FTIR data and showed a high level of contamination by HCHs (mainly β-HCH) in wood core samples from poplars growing near the Sacco River. Even if the micro-FTIR cannot be considered as an alternative technique to the gas chromatographic analysis, it would permit to carry out a faster and cheaper screening of tree-rings. The proposed dendrochemical approach may have applications for rapid detection and delineation of HCHs pollution in environmental monitoring programs as well as in forensic assessments (phytoforensics). Since fast growing trees like poplars are used in bioremediation programs, the accumulation of HCHs in the wood of trees from contaminated areas opens new technical questions on the safety of their use for round-wood, biomass or bioenergy production.
Subjects

Dendrochemistry

Gas chromatography

Hexachlorocyclohexane...

Infrared spectroscopy...

Isomers

Poplar

Sacco River Valley

Handle
http://hdl.handle.net/2067/48270
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Project(s)
Materials science

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