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Научный журнал НИУ ИТМО. Серия «Процессы и аппараты пищевых производств» № 3, 2017

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9.

Zhang H., Datta A.K., Taub I.A., Doona C. Electromagnetics, heat transfer, and thermokinetics in microwave

sterilization.

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Ahmed J., Ramaswamy H.S. Microwave pasteurization and sterilization of foods.

Food science and technology

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11.

Feng H., Yin Y., Tang J. Microwave drying of food and agricultural materials: basics and heat and mass transfer

modeling.

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12.

Peng J., Tang J., Jiao Y., Bohnet S.G., Barrett D.M. Dielectric properties of tomatoes assisting in the

development of microwave pasteurization and sterilization processes.

LWT-Food Science and Technology

.

2013, V. 54, no. 2, pp. 367–376.

13.

Kim J.E., Oh Y.J., Won M.Y., Lee K.S., Min S.C. Microbial decontamination of onion powder using microwave-

powered cold plasma treatments.

Food Microbiology.

2017, V. 62, pp. 112–123.

14.

Das I., Kumar G., Shah N.G. Microwave heating as an alternative quarantine method for disinfestation of stored

food grains.

International journal of food science

. 2013, V. 2013, pp. 1–13.

15.

Ramya H.G., Kumar S., Alam M.S. Microwave drying of fruits and vegetables: a fourth generation drying

technology.

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16.

Lyng J.G., Arimi J.M., Scully M., Marra F. The influence of compositional changes in reconstituted potato flakes

on thermal and dielectric properties and temperatures following microwave heating.

Journal of Food

Engineering

. 2014, V. 124, pp. 133–142.

17.

Yang M., Zheng C., Zhou Q., Liu C., Li W., Huang F. Influence of microwaves treatment of rapeseed on phenolic

compounds and canolol content.

Journal of agricultural and food chemistry

. 2014, V. 62, no. 8, pp. 1956–1963.

Статья поступила в редакцию 20.06.2017

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