Method for Determination of Methyl tert-Butyl Ether and Its Degradation Products in Water

An analytical method is described that can detect the major alkyl ether compounds that are used as gasoline oxygenates (methyl tert-butyl ether, MTBE; ethyl tert-butyl ether, ETBE; and tert-amyl methyl ether, TAME) and their most characteristic degradation products (tert-butyl alcohol, TBA; tert-but...

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Published in:Environmental science & technology Vol. 31; no. 12; pp. 3723 - 3726
Main Authors: Church, Clinton D, Isabelle, Lorne M, Pankow, James F, Rose, Donna L, Tratnyek, Paul G
Format: Journal Article
Language:English
Published: Washington, DC American Chemical Society 01-12-1997
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Abstract An analytical method is described that can detect the major alkyl ether compounds that are used as gasoline oxygenates (methyl tert-butyl ether, MTBE; ethyl tert-butyl ether, ETBE; and tert-amyl methyl ether, TAME) and their most characteristic degradation products (tert-butyl alcohol, TBA; tert-butyl formate, TBF; and tert-amyl alcohol, TAA) in water at sub-ppb concentrations. The new method involves gas chromatography (GC) with direct aqueous injec tion (DAI) onto a polar column via a splitless injector, coupled with detection by mass spectrometry (MS). DAI-GC/MS gives excellent agreement with conventional purge-and-trap methods for MTBE over a wide range of environmentally relevant concentrations. The new method can also give simultaneous identification of polar compounds that might occur as degradation products of gasoline oxygenates, such as TBA, TBF, TAA, methyl acetate, and acetone. When the method was applied to effluent from a column microcosm prepared with core material from an urban site in New Jersey, conversion of MTBE to TBA was observed after a lag period of 35 days. However, to date, analyses of water samples from six field sites using the DAI-GC/MS method have not produced evidence for the expected products of in situ degradation of MTBE.
AbstractList An analytical method is described that can detect the major alkyl ether compounds that are used as gasoline oxygenates (methyl tert-butyl ether, MTBE; ethyl tert-butyl ether, ETBE; and tert-amyl methyl ether, TAME) and their most characteristic degradation products (tert-butyl alcohol, TBA; tert-butyl formate, TBF; and tert-amyl alcohol, TAA) in water at sub-ppb concentrations. The new method involves gas chromatography (GC) with direct aqueous injec tion (DAI) onto a polar column via a splitless injector, coupled with detection by mass spectrometry (MS). DAI-GC/MS gives excellent agreement with conventional purge-and-trap methods for MTBE over a wide range of environmentally relevant concentrations. The new method can also give simultaneous identification of polar compounds that might occur as degradation products of gasoline oxygenates, such as TBA, TBF, TAA, methyl acetate, and acetone. When the method was applied to effluent from a column microcosm prepared with core material from an urban site in New Jersey, conversion of MTBE to TBA was observed after a lag period of 35 days. However, to date, analyses of water samples from six field sites using the DAI-GC/MS method have not produced evidence for the expected products of in situ degradation of MTBE.
Methyl tert-butyl ether (MTBE) was used to oxygenate gasoline. An analytical method for the determination of MTBE and its degradation products (tert-butyl alcohol (TBA), acetone, methyl acetate, 2-propanol, tert-butyl formate and tert-amyl alcohol) in water is described. The method was based on GC with direct aqueous injection (DAI) onto a polar Carbowax column via a splitless injector coupled with detection by MS. The detection limits were 10 ug per litre for both MTBE and TBA. The method was validated in an interlaboratory comparison using water samples from 2 leaking underground storage tanks. Results for MTBE obtained using the DAI/GC/MS method agreed with those obtained by the conventional purge and trap GC method. Field studies using DAI/GC/MS provided no evidence for the formation of TBA from in-situ degradation of MTBE. There are 38 references.
A novel analytical method that detects degradation products of methyl tert-butyl ether in water at sub-ppb concentrations is described.
An analytical method is described that can detect the major alkyl ether compounds that are used as gasoline oxygenates (methyl tert-butyl ether, MTBE; ethyl tert-butyl ether, ETBE; and tert-amyl methyl ether, TAME) and their most characteristic degradation products (tert-butyl alcohol, TBA; tert-butyl formate, TBF; and tert-amyl alcohol, TAA) in water at sub-ppb concentrations. The new method involves gas chromatography (GC) with direct aqueous injection (DAI) onto a polar column via a splitless injector, coupled with detection by mass spectrometry (MS). DAI-GC/MS gives excellent agreement with conventional purge-and-trap methods for MTBE over a wide range of environmentally relevant concentrations. The new method can also give simultaneous identification of polar compounds that might occur as degradation products of gasoline oxygenates, such as TBA, TBF, TAA, methyl acetate, and acetone. When the method was applied to effluent from a column microcosm prepared with core material from an urban site in New Jersey, conversion of MTBE to TBA was observed after a lag period of 35 days. However, to date, analyses of water samples from six field sites using the DAI-GC/MS method have not produced evidence for the expected products of in situ degradation of MTBE.
Author Pankow, James F
Isabelle, Lorne M
Tratnyek, Paul G
Church, Clinton D
Rose, Donna L
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  givenname: Clinton D
  surname: Church
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  fullname: Pankow, James F
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  givenname: Donna L
  surname: Rose
  fullname: Rose, Donna L
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  givenname: Paul G
  surname: Tratnyek
  fullname: Tratnyek, Paul G
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Snippet An analytical method is described that can detect the major alkyl ether compounds that are used as gasoline oxygenates (methyl tert-butyl ether, MTBE; ethyl...
A novel analytical method that detects degradation products of methyl tert-butyl ether in water at sub-ppb concentrations is described.
Methyl tert-butyl ether (MTBE) was used to oxygenate gasoline. An analytical method for the determination of MTBE and its degradation products (tert-butyl...
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SubjectTerms Analysis methods
Applied sciences
Biodegradation
Chemicals
Chemistry
environmental degradation
Ethers
Exact sciences and technology
Gas chromatography
Mass spectrometry
natural resources
Natural water pollution
Pollution
waste management
Water
water management
water resources
Water treatment and pollution
Title Method for Determination of Methyl tert-Butyl Ether and Its Degradation Products in Water
URI http://dx.doi.org/10.1021/es9705452
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Volume 31
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