Influences of emerging drying technologies on rice quality.

Muhammad Sufyan, Naveed Mahmood, Xu Zheng, R Pandiselvam, Yanhong Liu, Yue Zhang, Zeeshan Munir, Mansab Ali Saleemi, Harimana Yves, Dengwen Lei

Journal: Food research international (Ottawa, Ont.) 2024;184():114264

PMID: 38609240

Abstract

Rice is an important staple food in the world. Drying is an important step in the post-harvest handling of rice and can influence rice qualities and thus play a key role in determining rice commercial and nutritional value. In rice processing, traditional drying methods may lead to longer drying times, greater energy consumption, and unintended quality losses. Thus, it is imperative to improve the physical, chemical, and milling properties of rice while preserving its nutritional value, flavor, and appearance as much as possible. Additionally, it is necessary to increase the efficiency with which heat energy is utilized during the thermal processing of freshly harvested paddy. Moreover, this review provides insights into the current application status of six different innovative drying technologies such as radio frequency (RF) drying, microwave (MW) drying, infrared (IR) drying, vacuum drying (VD), superheated steam (SHS) drying, fluidized bed (FB) drying along with their effect on the quality of rice such as color, flavor, crack ratio, microstructure and morphology, bioactive components and antioxidant activity as well asstarch content and glycemic index. Dielectric methods of drying due to volumetric heating results in enhanced drying rate, improved heating uniformity, reduced crack ratio, increased head rice yield and better maintain taste value of paddy grains. These novel emerging drying techniques increased the interactions between hydrated proteins and swollen starch granules, resulting in enhanced viscosity of rice flour and promoted starch gelatinization and enhanced antioxidant activity which is helpful to produce functional rice. Moreover, this review not only highlights the existing challenges posed by these innovative thermal technologies but also presents potential solutions. Additionally, the combination of these technologies to optimize operating conditions can further boost their effectiveness in enhancing the drying process. Nevertheless, future studies are essential to gain a deeper understanding of the mechanism of quality changes induced by emerging processing technologies. This knowledge will help expand the application of these techniques in the rice processing industry.

Copyright © 2024 Elsevier Ltd. All rights reserved.

Address: College of Engineering, China Agricultural University, Beijing 100083, China. Electronic address: [email protected].; College of Engineering, China Agricultural University, Beijing 100083, China. Electronic address: [email protected].; College of Food Science, Northeast Agricultural University, Harbin, Heilongjiang 150030, China.; Department of Agricultural Engineering, University of Kassel, Nordbahnhofstr. 1a, Witzenhausen 37213, Germany.; Division of Physiology, Biochemistry and Post-Harvest Technology, ICAR-Central Plantation Crops Research Institute, Kasaragod, 671124, Kerala, India.; College of Engineering, China Agricultural University, Beijing 100083, China.; Department of Molecular Microbiology and Immunology, University of Texas at San Antonio, San Antonio, TX, United States.; College of Biological Sciences, China Agricultural University, Beijing 100083, China.

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