THE CHEMISTRY OF NITROSAMINE FORMATION: RELEVANCE TO MALTING AND BREWING
Химия образования нитрозаминов: значение для солодоращения и пивоварения
1986-01-02
SCID: 54.1/tpuupzhz
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hordeninemalting and brewingnitrogen oxides (NOx)nitrosamine formationnitrosodimethylamine (NDMA)
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Abstract (AI)
This paper reviews the chemistry of nitrosamine formation with special reference to malting and brewing. Whilst the main emphasis is on the formation of nitrosodimethylamine (NDMA), the chemistry is also related to the formation of other nitrosamines and certain other nitrocompounds. It seems likely that in malting and brewing the only important source of the nitroso group is the mixture of oxides of nitrogen (NOx) in the hot air in contact with malt during kilning. Under normal commercial conditions there appears to be little if any formation of nitrosamines at other stages of malting or brewing. It is suggested that much of the nitrosation is due to NOx which exists temporarily in the form of nitrogen trioxide (N2O3) and nitrogen tetroxide (N2O4) as it dissolves in water in the moist malt or in malt lipids. The dissolved NOx subsequently reaches equilibrium with nitrite and nitrate ions formed from it. The origin of the dimethylamine portion of the NDMA is still not clear. The most likely sources are free DMA, gramine and hordenine, all of which are produced in germinating barley. On balance it seems that hordenine is the most important source of NDMA in the malt at the end of kilning. The reasons for the low yield of nitrosamines from the precursors and NOx present during kilning are discussed and related to the formation of other nitroso- and nitro-compounds. The occurrence of competing reactions which reduce nitrosamine formation is also described.
Key Findings
1
NOx likely promotes nitrosation through transient nitrogen trioxide and nitrogen tetroxide, which dissolve in moist malt or malt lipids and equilibrate with nitrite and nitrate.
2
Nitrosamine yields remain low despite precursor and NOx availability because competing reactions and formation of other nitroso- and nitro-compounds limit nitrosation.
3
Potential dimethylamine sources for NDMA include free DMA, gramine, and hordenine produced during barley germination; hordenine is considered the most important precursor at the end of kilning.
4
The review identifies nitrogen oxides (NOx) in hot kiln air as the likely sole important source of the nitroso group during commercial malting and brewing.
5
Under normal commercial conditions, little if any nitrosamine formation appears to occur during malting or brewing stages other than kilning.
Research Object
Nitrosamine formation in malting and brewing, particularly NDMA formation during malt kilning
Research Subject
The chemical pathways, precursors, NOx sources, and competing reactions governing nitrosamine formation
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1986-01-02
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