A new analytical approach for the comprehensive characterization of polar xenobiotic organic compounds downgradient of old municipal solid waste (MSW) landfills

Groundwater samples collected downgradient from a former municipal solid waste landfill near Berlin, Germany, were analyzed by GC-MS, HPLC-MS, and HPLC-NMR hyphenated techniques to comprehensively characterize the xenobiotic organic compounds (XOCs). The focus thereby was on the detection and identi...

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Published inAnalytical and bioanalytical chemistry Vol. 403; no. 9; pp. 2553 - 2561
Main Authors Preiss, A., Berger-Preiss, E., Elend, M., Gerling, S., Kühn, S., Schuchardt, S.
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer-Verlag 01.07.2012
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Abstract Groundwater samples collected downgradient from a former municipal solid waste landfill near Berlin, Germany, were analyzed by GC-MS, HPLC-MS, and HPLC-NMR hyphenated techniques to comprehensively characterize the xenobiotic organic compounds (XOCs). The focus thereby was on the detection and identification of the polar XOCs which were analyzed in the extract obtained after separation of the unpolar components by pre-extraction. HPLC-NMR and HPLC-MS runs were used to identify polar XOCs on-line or to obtain preliminary structure information on the other XOCs. These compounds were then isolated by HPLC fractionation and their structures elucidated by off-line NMR and MS investigations. A variety of polar XOCs, products of the dye industry, degradation products of polyethylene glycol, and some heterocyclic compounds could be identified. Furthermore, a semi-quantitative estimation of the identified polar compounds is given. Figure Analytical approach for a comprehensive characterization of XOCs downgradient of old MSW landfills
AbstractList Groundwater samples collected downgradient from a former municipal solid waste landfill near Berlin, Germany, were analyzed by GC-MS, HPLC-MS, and HPLC-NMR hyphenated techniques to comprehensively characterize the xenobiotic organic compounds (XOCs). The focus thereby was on the detection and identification of the polar XOCs which were analyzed in the extract obtained after separation of the unpolar components by pre-extraction. HPLC-NMR and HPLC-MS runs were used to identify polar XOCs on-line or to obtain preliminary structure information on the other XOCs. These compounds were then isolated by HPLC fractionation and their structures elucidated by off-line NMR and MS investigations. A variety of polar XOCs, products of the dye industry, degradation products of polyethylene glycol, and some heterocyclic compounds could be identified. Furthermore, a semi-quantitative estimation of the identified polar compounds is given. Figure Analytical approach for a comprehensive characterization of XOCs downgradient of old MSW landfills
Groundwater samples collected downgradient from a former municipal solid waste landfill near Berlin, Germany, were analyzed by GC-MS, HPLC-MS, and HPLC-NMR hyphenated techniques to comprehensively characterize the xenobiotic organic compounds (XOCs). The focus thereby was on the detection and identification of the polar XOCs which were analyzed in the extract obtained after separation of the unpolar components by pre-extraction. HPLC-NMR and HPLC-MS runs were used to identify polar XOCs on-line or to obtain preliminary structure information on the other XOCs. These compounds were then isolated by HPLC fractionation and their structures elucidated by off-line NMR and MS investigations. A variety of polar XOCs, products of the dye industry, degradation products of polyethylene glycol, and some heterocyclic compounds could be identified. Furthermore, a semi-quantitative estimation of the identified polar compounds is given. Keywords MSW landfill * Leachate * Polar XOCs * Groundwater contamination Non-target analysis GC-MS * HPLC-NMR * HPLC-MS * ¹HNMR * 2DNMR * [MS.sup.n]
Groundwater samples collected downgradient from a former municipal solid waste landfill near Berlin, Germany, were analyzed by GC-MS, HPLC-MS, and HPLC-NMR hyphenated techniques to comprehensively characterize the xenobiotic organic compounds (XOCs). The focus thereby was on the detection and identification of the polar XOCs which were analyzed in the extract obtained after separation of the unpolar components by pre-extraction. HPLC-NMR and HPLC-MS runs were used to identify polar XOCs on-line or to obtain preliminary structure information on the other XOCs. These compounds were then isolated by HPLC fractionation and their structures elucidated by off-line NMR and MS investigations. A variety of polar XOCs, products of the dye industry, degradation products of polyethylene glycol, and some heterocyclic compounds could be identified. Furthermore, a semi-quantitative estimation of the identified polar compounds is given.
Groundwater samples collected downgradient from a former municipal solid waste landfill near Berlin, Germany, were analyzed by GC-MS, HPLC-MS, and HPLC-NMR hyphenated techniques to comprehensively characterize the xenobiotic organic compounds (XOCs). The focus thereby was on the detection and identification of the polar XOCs which were analyzed in the extract obtained after separation of the unpolar components by pre-extraction. HPLC-NMR and HPLC-MS runs were used to identify polar XOCs on-line or to obtain preliminary structure information on the other XOCs. These compounds were then isolated by HPLC fractionation and their structures elucidated by off-line NMR and MS investigations. A variety of polar XOCs, products of the dye industry, degradation products of polyethylene glycol, and some heterocyclic compounds could be identified. Furthermore, a semi-quantitative estimation of the identified polar compounds is given. Figure Analytical approach for a comprehensive characterization of XOCs downgradient of old MSW landfills
Audience Academic
Author Elend, M.
Berger-Preiss, E.
Kühn, S.
Gerling, S.
Schuchardt, S.
Preiss, A.
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CitedBy_id crossref_primary_10_1016_j_envres_2023_118006
crossref_primary_10_1007_s11270_015_2475_6
crossref_primary_10_1007_s11356_015_5359_9
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Issue 9
Keywords Groundwater contamination
GC-MS
MSW landfill
2D NMR
Polar XOCs
HPLC-MS
MS
HPLC-NMR
Leachate
H NMR
Non-target analysis
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PublicationTitle Analytical and bioanalytical chemistry
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Snippet Groundwater samples collected downgradient from a former municipal solid waste landfill near Berlin, Germany, were analyzed by GC-MS, HPLC-MS, and HPLC-NMR...
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SubjectTerms Analytical Chemistry
Berlin
Biochemistry
Characterization and Evaluation of Materials
Chemical properties
Chemistry
Chemistry and Materials Science
Chromatography
Chromatography, High Pressure Liquid
Contamination
Environmental aspects
Food Science
Gas Chromatography-Mass Spectrometry
Germany
Groundwater
Groundwater - analysis
Heterocyclic compounds
Identification and classification
Laboratory Medicine
Magnetic Resonance Spectroscopy
Mass Spectrometry
Mathematical analysis
Methods
Monitoring/Environmental Analysis
Municipal landfills
On-line systems
Organic compounds
Polyethylene glycol
Refuse Disposal
Sanitary landfills
Solid wastes
Spectrum analysis
Technical Note
Water Pollutants, Chemical - analysis
Water pollution
Water, Underground
Xenobiotics
Xenobiotics - analysis
Title A new analytical approach for the comprehensive characterization of polar xenobiotic organic compounds downgradient of old municipal solid waste (MSW) landfills
URI https://link.springer.com/article/10.1007/s00216-012-5941-7
https://www.ncbi.nlm.nih.gov/pubmed/22526634
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https://search.proquest.com/docview/1171872975
https://search.proquest.com/docview/1671491899
https://search.proquest.com/docview/1744716634
Volume 403
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