Multiple-factor mathematical modeling of glycine-glucose browning

  • Choachamnan, Jinnipar
  • Moraru, Carmen
  • Lee, Seunghyung
  • Kurosaka, Akira
  • Boonsupthip, Waraporn
Citations

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SCOPUS

5

초록

The objective of this investigation was to develop the mathematical models that included the effects of time, temperature, pH and substrate concentration on the non-enzymatic browning reaction. Glycine-glucose solutions were used as food models. Experimental data of 420-nm browning absorbance, which were converted into s-curved X-t values, were used for the modeling and validation processes. The impacts of multiple factors on browning were well expressed by a combined use of modified Gompertz, Arrhenius and interaction polynomial models and a data conversion technique (R-2 >= 0.9441). The browning rates varied greatly (lambda = 7.46-888 min and u(max) = 0.06 to 26.90 min(-1)), depending on temperature, pH and concentration. The activation energy (Ea) values of lambda (62-120 kJ/mol) and u(max) (87-129 kJ/mol) varied, depending more on concentration than pH. Although non-enzymatic browning reactions are complex with a variety of pathways and reactive products in response to multiple factors, they are likely modellable so that the benefits (food quality based on color and aroma) and harmful properties (e.g., carcinogens) of browning can be better managed.

키워드

Multiple factorsModelingGlycineGlucoseBrowningFoodTIME-TEMPERATURE INDICATORMAILLARD REACTIONCOLORFOODPHKINETICSCARAMELIZATIONPROTOTYPEONION
제목
Multiple-factor mathematical modeling of glycine-glucose browning
저자
Choachamnan, JinniparMoraru, CarmenLee, SeunghyungKurosaka, AkiraBoonsupthip, Waraporn
DOI
10.1016/j.jfoodeng.2019.109829
발행일
2020-05
유형
Article
저널명
Journal of Food Engineering
273