On the contribution of malt quality and the malting process to the formation of beer staling aldehydes: a review
О вкладе качества солода и процесса солодоращения в образование альдегидов, вызывающих старение пива: обзор
2021-01-01
SCID: 54.1/6ymmya3y
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alternative kilning technologiesbeer flavour instabilitymalt qualitymalting processstaling aldehydes
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Abstract (AI)
Despite decades of extensive research, beer flavour instability remains a challenge for both brewing and malting industries. Malt impacts the brewing process as well as the quality of the final beer. It also affects the stability of beer flavour, as it delivers to the brewing process various compounds with the potential to compromise the desired flavour characteristics of beer. These include staling aldehydes and their precursors, such as amino acids, reducing sugars, α-dicarbonyls and bound-state aldehydes. In general, the content of these compounds depends on barley variety and quality, the malting regime and final malt quality. Malt that represents a low potential for beer staling, i.e. that has low values of Kolbach Index, heat load, colour, LOX activity, Strecker aldehydes, transition metal ions and high antioxidative activity, leads to beer with enhanced flavour stability. However, the consistent production of malt with the desired quality remains challenging. Approaches to achieve this include adjustment of steeping and germination conditions, allowing control of grain modification and thus, the reservoir of aldehydes precursors. Also, the application of alternative kilning technologies may reduce the applied heat load, responsible for the formation of staling aldehydes and triggering development of the oxidising free radical species. This review provides an evaluation of current knowledge on the contribution of the malting process and malt quality to the formation of beer staling aldehydes. © 2021 The Authors. Journal of the Institute of Brewing published by John Wiley & Sons Ltd on behalf of The Institute of Brewing & Distilling.
Key Findings
1
Adjusting steeping and germination conditions can control grain modification and the resulting reservoir of aldehyde precursors.
2
Alternative kilning technologies may reduce heat-load-driven formation of staling aldehydes and generation of oxidising free-radical species, although consistently producing low-staling-potential malt remains challenging.
3
Malt contributes substantially to beer flavour instability by supplying staling aldehydes and precursors, including amino acids, reducing sugars, α-dicarbonyls, and bound-state aldehydes.
4
Malt with low Kolbach Index, heat load, colour, lipoxygenase activity, Strecker aldehydes, and transition-metal ions, but high antioxidative activity, produces beer with improved flavour stability.
5
The concentrations of staling-related compounds depend on barley variety and quality, malting conditions, and final malt quality.
Research Object
malt and the malting process in beer production
Research Subject
their contribution to the formation and flavour stability impact of beer staling aldehydes
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2021-01-01
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