POLYCYCLIC AROMATIC HYDROCARBONS (PAH) IN DANISH SMOKED FISH AND MEAT PRODUCTS

2006 ◽  
Vol 26 (3) ◽  
pp. 163-184 ◽  
Author(s):  
L. Duedahl-Olesen ◽  
S. White ◽  
M. -L. Binderup
2018 ◽  
Vol 2018 ◽  
pp. 1-14 ◽  
Author(s):  
Mirja Hokkanen ◽  
Ulla Luhtasela ◽  
Pirkko Kostamo ◽  
Tiina Ritvanen ◽  
Kimmo Peltonen ◽  
...  

Eighty fish products and 62 meat products were sampled and analysed in Finland, in the year of 2012 for four marker polycyclic aromatic hydrocarbons (PAH4) with an accredited gas chromatography-tandem mass spectrometry method. In general, the determined PAH4 levels were relatively low and below the maximum levels. The mean concentrations of smoked fish samples were 0.7 μg·kg−1 for benzo[a]pyrene and 3.9 μg·kg−1 for the PAH4 sum, whereas in smoked meat samples, mean benzo[a]pyrene and PAH4 sum levels were 2.2 μg·kg−1 and 11 μg·kg−1, respectively. However, PAH4 sum concentrations ranged from not detected to 200 µg·kg−1 particularly among meat products, underlining the importance of controlling the smoking process. In this study, the effect of selected smoking parameters, i.e., smoking technique (direct/indirect), smoking time (less than five hours/more than five hours), smoke generation temperature (optimised/nonoptimised), and the distance (less than five metres/more than five metres) between the food and the smoke source, confirmed the linkage between the smoking factors and the PAH4 levels formed in fish and meat products. As guidance for a safe smoking process, it was demonstrated that an indirect smoking technique, a shorter smoking time, an optimised smoke generation temperature, and a longer distance from the smoke source generated lower PAH concentrations in food products. However, while a shorter smoking time generated lower PAH levels in meat products, the levels in fish products were unexpectedly higher than in those smoked for a longer time. Other factors, such as the smoking type (cold smoking/warm or hot smoking) and the fish size, may have affected this result.


Food Control ◽  
2021 ◽  
pp. 108089
Author(s):  
Ogouyôm Herbert Iko Afé ◽  
Claude Saegerman ◽  
Yénoukounmè Euloge Kpoclou ◽  
Caroline Douny ◽  
Ahmed Igout ◽  
...  

1968 ◽  
Vol 51 (1) ◽  
pp. 114-121
Author(s):  
A J Malanoski ◽  
E L Greenfield ◽  
C J Barnes ◽  
J M Worthington ◽  
F L Joe

Abstract A survey was conducted jointly by the Food and Drug Administration and the Department of Agriculture to ascertain the types and amounts of polycyclic aromatic hydrocarbons present in smoked foods. The samples include many varieties of meat products, poultry, fish, and other miscellaneous items. All samples were analyzed by the published methods of Howard et al. Results indicate that many smoked foods contain small amounts (0.5—7.0 ppb) of polycyclic aromatic hydrocarbons


2019 ◽  
Vol 121 (12) ◽  
pp. 3193-3207
Author(s):  
Congcong Liu ◽  
Chong Wang ◽  
Keping Ye ◽  
Yun Bai ◽  
Xiaobo Yu ◽  
...  

Purpose The purpose of this paper is to elucidate the influences of the animal fat and fatty acid type on the formation of polycyclic aromatic hydrocarbons (PAHs) and to propose a formation mechanism of PAHs in fat during electric roasting, which is a method of non-direct-contact-flame heating. Design/methodology/approach The effects of animal fats and model fat on the formation of PAHs were valued on the basis of the ultra high-performance liquid chromatography data. The corresponding products of the FAME pyrolysis were detected by TG-FTIR. The proposal formation mechanism of PAHs was based on the summary of the literature. Findings Contrary to the International Agency for Research on Cancer, DF had higher risk with 280.53 ng/g of concentration after being roasted than the others animal fats of red meat in terms of PAHs formation. This research also ensured the importance of fat on PAHs formation, the concentration of PAHs in pure fats was higher after being electric roasted than that in meat patties and juice which made from corresponding animal fat. What is more, during pure animal fats and meat products being processed, less PAHs formed in the fat with lower extent of unsaturation and lower content of linolenate. In the same way, methyl linolenate demonstrated the significant increasement to PAHs formation compared to the other fatty acids. And, the number of carbon atom and the extent of unsaturation in fatty acid affects the formation of PAHs during roasting. The detection of alkene and alkane allows to propose a formation mechanism of PAHs during model fat being heated. Further study is required to elucidate the confirm moleculars during the formation of PAHs. Originality/value This work studied the effect of the carbon atom number and the unsaturation extent of fats and model fats on the formation of PAHs. This work also assure the important of alkene and alkane on the pyrolysis of model fats. This study also researched the formation and distribution of PAHs in pure fats and meat products after being heated.


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