Journal of agricultural and food chemistry (2012). Volume: 60, Issue: 11. Pages: 2778-84. Pauline Maes, Yulia B Monakhova, Thomas Kuballa, Helmut Reusch, Dirk W Lachenmeier et al.
(1)H Nuclear magnetic resonance (NMR) spectroscopy (400 MHz) was used in the context of food surveillance to develop a reliable analytical tool to differentiate brands of cola beverages and to quantify selected constituents of the soft drinks. The preparation of the samples required only degassing and addition of 0.1% of TSP in D(2)O for locking and referencing followed by adjustment of pH to 4.5. The NMR spectra obtained can be considered as "fingerprints" and were analyzed by principal component analysis (PCA). Clusters from colas of the same brand were observed, and significant differences between premium and discount brands were found. The quantification of caffeine, acesulfame-K, aspartame, cyclamate, benzoate, hydroxymethylfurfural (HMF), sulfite ammonia caramel (E 150D), and vanillin was simultaneously possible using external calibration curves and applying TSP as internal standard. Limits of detection for caffeine, aspartame, acesulfame-K, and benzoate were 1.7, 3.5, 0.8, and 1.0 mg/L, respectively. Hence, NMR spectroscopy combined with chemometrics is an efficient tool for simultaneous identification of soft drinks and quantification of selected constituents.
[NMR paper] Qualitative and quantitative control of carbonated cola beverages using (1)h NMR spectroscopy.
From Mendeley Biomolecular NMR group:
Qualitative and quantitative control of carbonated cola beverages using (1)h NMR spectroscopy.
Journal of agricultural and food chemistry (2012). Volume: 60, Issue: 11. Pages: 2778-84. Pauline Maes, Yulia B Monakhova, Thomas Kuballa, Helmut Reusch, Dirk W Lachenmeier et al.
(1)H Nuclear magnetic resonance (NMR) spectroscopy (400 MHz) was used in the context of food surveillance to develop a reliable analytical tool to differentiate brands of cola beverages and to quantify selected constituents of the soft drinks. The preparation of the samples...
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10-17-2013 12:49 PM
Journal Highlight: Quantitative NMR: An applicable method for quantitative analysis of medicinal plant extracts and herbal products
Journal Highlight: Quantitative NMR: An applicable method for quantitative analysis of medicinal plant extracts and herbal products
http://www.spectroscopynow.com/common/images/thumbnails/13abcca009b.jpgA quantitative NMR method has been reported for quantitative analysis of three medicinal plant extracts and their herbal products without the need of authentic standards.
Source: Spectroscopynow.com
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02-03-2013 08:49 AM
[NMR paper] Qualitative and quantitative control of carbonated cola beverages using (1)h NMR spectroscopy.
From Mendeley Biomolecular NMR group:
Qualitative and quantitative control of carbonated cola beverages using (1)h NMR spectroscopy.
Journal of agricultural and food chemistry (2012). Volume: 60, Issue: 11. Pages: 2778-84. Pauline Maes, Yulia B Monakhova, Thomas Kuballa, Helmut Reusch, Dirk W Lachenmeier et al.
(1)H Nuclear magnetic resonance (NMR) spectroscopy (400 MHz) was used in the context of food surveillance to develop a reliable analytical tool to differentiate brands of cola beverages and to quantify selected constituents of the soft drinks. The preparation of the samples...
nmrlearner
Journal club
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01-09-2013 04:20 PM
[NMR paper] Qualitative and quantitative control of carbonated cola beverages using (1)h NMR spectroscopy.
From Mendeley Biomolecular NMR group:
Qualitative and quantitative control of carbonated cola beverages using (1)h NMR spectroscopy.
Journal of agricultural and food chemistry (2012). Volume: 60, Issue: 11. Pages: 2778-84. Pauline Maes, Yulia B Monakhova, Thomas Kuballa, Helmut Reusch, Dirk W Lachenmeier et al.
(1)H Nuclear magnetic resonance (NMR) spectroscopy (400 MHz) was used in the context of food surveillance to develop a reliable analytical tool to differentiate brands of cola beverages and to quantify selected constituents of the soft drinks. The preparation of the samples...
nmrlearner
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10-19-2012 10:22 AM
[NMR paper] Qualitative and quantitative control of carbonated cola beverages using (1)h NMR spectroscopy.
From Mendeley Biomolecular NMR group:
Qualitative and quantitative control of carbonated cola beverages using (1)h NMR spectroscopy.
Journal of agricultural and food chemistry (2012). Volume: 60, Issue: 11. Pages: 2778-84. Pauline Maes, Yulia B Monakhova, Thomas Kuballa, Helmut Reusch, Dirk W Lachenmeier et al.
(1)H Nuclear magnetic resonance (NMR) spectroscopy (400 MHz) was used in the context of food surveillance to develop a reliable analytical tool to differentiate brands of cola beverages and to quantify selected constituents of the soft drinks. The preparation of the samples...
nmrlearner
Journal club
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10-12-2012 09:58 AM
[NMR paper] Qualitative and quantitative control of carbonated cola beverages using (1)h NMR spectroscopy.
From Mendeley Biomolecular NMR group:
Qualitative and quantitative control of carbonated cola beverages using (1)h NMR spectroscopy.
Journal of agricultural and food chemistry (2012). Volume: 60, Issue: 11. Pages: 2778-84. Pauline Maes, Yulia B Monakhova, Thomas Kuballa, Helmut Reusch, Dirk W Lachenmeier et al.
(1)H Nuclear magnetic resonance (NMR) spectroscopy (400 MHz) was used in the context of food surveillance to develop a reliable analytical tool to differentiate brands of cola beverages and to quantify selected constituents of the soft drinks. The preparation of the samples...
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08-24-2012 08:01 PM
Quantitative NMR spectroscopy in pharmaceutical applications
Quantitative NMR spectroscopy in pharmaceutical applications
Publication year: 2010
Source:Progress in Nuclear Magnetic Resonance Spectroscopy, Volume 57, Issue 2</br>
Ulrike Holzgrabe</br>
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nmrlearner
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03-09-2012 09:16 AM
Quantitative NMR Spectroscopy in Pharmaceutical Applications
Quantitative NMR Spectroscopy in Pharmaceutical Applications
Publication year: 2010
Source: Progress in Nuclear Magnetic Resonance Spectroscopy, In Press, Accepted Manuscript, Available online 10 May 2010</br>
Ulrike, Holzgrabe</br>
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