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Microbes in Beverage Production01:25

Microbes in Beverage Production

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Alcoholic beverages such as wine, beer, and spirits are the products of microbial fermentation processes that transform simple sugars into ethanol and a wide array of complex flavor compounds. These transformations rely on the metabolic activities of specific yeasts and bacteria, which are selected and controlled to yield the desired beverage characteristics.Wine Fermentation and MaturationWine production begins with the crushing of grapes to release juice and pulp, forming a must that is...
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Mass Spectrometry: Alcohol Fragmentation01:03

Mass Spectrometry: Alcohol Fragmentation

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Alcohols (R-OH) ionize to lose one non-bonded electron from the oxygen atom, forming molecular ions. Due to their tendency to fragment rapidly, the intensity of the molecular ion peak in the mass spectrum is weak or sometimes absent. The fragmentation patterns for alcohols occur in two ways, i.e. ⍺-cleavage and dehydration. During ⍺-cleavage, the bond at the ⍺-position adjacent to the hydroxyl group cleaves to give a resonance-stabilized cation and a radical. However,...
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¹³C NMR: Distortionless Enhancement by Polarization Transfer (DEPT)01:20

¹³C NMR: Distortionless Enhancement by Polarization Transfer (DEPT)

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When proton-coupled carbon-13 spectra are simplified by a broadband proton decoupling technique, structural information about the coupled protons is lost. Distortionless enhancement by polarization transfer (DEPT) is a technique that provides information on the number of hydrogens attached to each carbon in a molecule. While the DEPT experiment utilizes complex pulse sequences, the pulse delay and flip angle are specifically manipulated. The resulting signals have different phases depending on...
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¹H NMR of Labile Protons: Temporal Resolution01:10

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Protons bonded to heteroatoms such as nitrogen and oxygen exhibit a range of chemical shift values. This is due to the varying degree of hydrogen bonding between the proton and the heteroatom in other molecules. The extent of hydrogen bonding affects the electron density around the proton, thereby giving different chemical shift values for the protons in the proton NMR spectrum.
The –OH proton in alcohols typically appears in the range of δ 2 to 5 ppm but can vary depending on the...
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Gustation01:43

Gustation

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Gustation is a chemical sense that, along with olfaction (smell), contributes to our perception of taste. It starts with the activation of receptors by chemical compounds (tastants) dissolved in the saliva. The saliva and filiform papillae on the tongue distribute the tastants and increase their exposure to the taste receptors.
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Qualitative Analysis01:10

Qualitative Analysis

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Qualitative analysis is the process of identifying elements, ions, or compounds in an unknown sample. It is the first and most fundamental type of analysis based on the hierarchy of analytical goals. This hierarchy is significant as it provides a structured approach to scientific research, with qualitative analysis serving as the initial step, providing essential information before moving on to quantitative or other forms of analysis.
There are two main approaches to qualitative analysis:...
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Related Experiment Video

Updated: Apr 24, 2026

PTR-ToF-MS Coupled with an Automated Sampling System and Tailored Data Analysis for Food Studies: Bioprocess Monitoring, Screening and Nose-space Analysis
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PTR-ToF-MS Coupled with an Automated Sampling System and Tailored Data Analysis for Food Studies: Bioprocess Monitoring, Screening and Nose-space Analysis

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New trends in beer flavour compound analysis.

Cristina Andrés-Iglesias1, Olimpio Montero, Daniel Sancho

  • 1Departamento Ingeniería Agrícola y Forestal (Área de Tecnología de los Alimentos), ETS Ingenierías Agrarias, Universidad de Valladolid, 34004, Palencia, Spain.

Journal of the Science of Food and Agriculture
|September 11, 2014
PubMed
Summary

Instrumental analysis is crucial for developing superior beer flavor. This review covers advanced methods for analyzing beer

Keywords:
analytical methodsbeerchromatographyflavour compoundsspectrometryspectroscopy

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Area of Science:

  • Food Science and Technology
  • Analytical Chemistry

Background:

  • The expanding beer market demands consistent, high-quality organoleptic characteristics.
  • Flavor is a critical attribute influencing consumer preference in beer.

Purpose of the Study:

  • To review emerging instrumental methods for comprehensive beer flavor analysis.
  • To highlight advancements in sample preparation techniques for improved flavor profiling.

Main Methods:

  • Chromatography
  • Spectroscopy
  • Nuclear Magnetic Resonance (NMR)
  • Mass Spectrometry (MS)
  • Electronic Nose and Tongue technologies
  • Derivatization techniques
  • Microextraction methods

Main Results:

  • Various instrumental techniques are successfully applied for detailed beer flavor analysis.
  • Sample preparation methods like derivatization and microextraction enhance analytical capabilities.

Conclusions:

  • Advanced instrumental analysis is key to achieving optimal beer flavor.
  • The integration of novel analytical and sample preparation methods supports the brewing industry in delivering superior products.