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Effect of different drying technologies on drying characteristics and quality of red pepper ( Capsicum frutescens L.): a comparative study
Author(s) -
Cao Zhenzhen,
Zhou Linyan,
Bi Jinfeng,
Yi Jianyong,
Chen Qinqin,
Wu Xinye,
Zheng Jinkai,
Li Shurong
Publication year - 2016
Publication title -
journal of the science of food and agriculture
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.782
H-Index - 142
eISSN - 1097-0010
pISSN - 0022-5142
DOI - 10.1002/jsfa.7549
Subject(s) - pepper , infrared , water content , thermal diffusivity , air temperature , moisture , dehydration , chemistry , food science , materials science , composite material , meteorology , biochemistry , physics , geotechnical engineering , quantum mechanics , optics , engineering
BACKGROUND Hot air drying and sun drying are traditional drying technologies widely used in the drying of agricultural products for a long time, but usually recognized as time‐consuming or producing lower‐quality products. Infrared drying is a rather effective drying technology that has advantages over traditional drying technologies. Thus, in order to investigate the application of infrared drying in the dehydration of red pepper, the drying characteristics and quality of infrared‐dried red pepper were compared with those of sun‐dried and hot air‐dried red pepper. RESULTS The infrared drying technology significantly enhanced the drying rate when compared with hot air drying and sun drying. Temperature was the most important factor affecting the moisture transfer during the process of infrared drying as well as hot air drying. Effective moisture diffusivity ( D eff ) values of infrared drying ranged from 1.58 × 10 −9 to 3.78 × 10 −9 m 2 s −1 . The E a values of infrared drying and hot air drying were 42.67 and 44.48 kJ mol −1 respectively. Infrared drying and hot air drying produced color loss to a similar extent. Relatively higher crispness values were observed for infrared‐dried samples. CONCLUSION Sun drying produced dried red pepper with the best color when compared with hot air drying and infrared drying. Meanwhile, infrared drying markedly improved the drying rate at the same drying temperature level of hot air drying, and the products obtained had relatively better quality with higher crispness values. © 2015 Society of Chemical Industry