RSM based optimal drying-parameters of unripe-papaya (Carica papaya L.)

被引:0
|
作者
Mukherjee P. [2 ]
Hoque Mondal I. [3 ]
Rangan L. [1 ]
Uppaluri R. [2 ]
机构
[1] Department of Biosciences & Bioengineering, Indian Institute of Technology Guwahati, Guwahati
[2] Department of Chemical Engineering, Indian Institute of Technology Guwahati, Guwahati
[3] Department of Food Technology and Nutrition, School of Agriculture, Lovely Professional University, Phagwara
来源
关键词
Oven-drying; Proximate characteristics; RSM-optimization; Tray-drying; Unripe-papaya;
D O I
10.1016/j.matpr.2022.06.350
中图分类号
学科分类号
摘要
Vegetable infused instantly consumable food items are often prepared with drying or baking technologies. Necessity for a critical knowledge about the heat sensitive nutritional characteristics is inevitable for such formulational research. To assist the development of such targeted products based on unripe-papaya (Carica papaya L.) in the near future, this article provides useful insights of heat treatment related data. This article summarizes the response surface methodology based hot air oven and cabinet (tray) drying characteristics of unripe-papaya in terms of nutritional responses such as moisture content, antioxidant-activity and vitamin C. The drying process features were assessed using drying temperature and time as independent variables. For the obtained data, analysis of variance (ANOVA) approach was adopted to identify best model. A comparative assessment of fresh, oven and tray dried samples was finally undertaken. Simultaneously, drying kinetics parameters were evaluated. The best data set refers to tray drying instance with 7.4 h drying time duration. Proximate analysis supported the inference that papaya retains carbohydrate, crude fiber and vitamin C constituents in due course of prolonged drying and has specific advantages as a key ingredient for ready to consume food products. © 2022
引用
收藏
页码:854 / 861
页数:7
相关论文
共 50 条
  • [1] Metabolic analysis of unripe papaya (Carica papaya L.) to promote its utilization as a functional food
    Hiraga, Yasuhide
    Ara, Takeshi
    Sato, Nao
    Akimoto, Nayumi
    Sugiyama, Kenjiro
    Suzuki, Hideyuki
    Kera, Kota
    BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY, 2021, 85 (05) : 1194 - 1204
  • [2] Convective drying of papaya seeds (Carica papaya L.) and optimization of oil extraction
    Chielle, Daniel Padoin
    Bertuol, Daniel Assumpcao
    Meili, Lucas
    Tanabe, Eduardo Hiromitsu
    Dotto, Guilherme Luiz
    INDUSTRIAL CROPS AND PRODUCTS, 2016, 85 : 221 - 228
  • [3] Genetic Analysis in Papaya (Carica papaya L.)
    Nair, C. S. Jayachandran
    Sereena, J.
    Khader, K. M. Abdul
    II INTERNATIONAL SYMPOSIUM ON PAPAYA, 2010, 851
  • [4] Genetical Studies in Papaya (Carica papaya L.)
    Karunakaran, G.
    Ravishankar, H.
    Dinesh, M. R.
    II INTERNATIONAL SYMPOSIUM ON PAPAYA, 2010, 851
  • [5] Papaya (Carica papaya L.) Flavour Profiling
    Zhou, Ziwei
    Ford, Rebecca
    Bar, Ido
    Kanchana-udomkan, Chutchamas
    GENES, 2021, 12 (09)
  • [6] Mutagenic Studies in Papaya (Carica papaya L.)
    Santosh, L. C.
    Dinesh, M. R.
    Rekha, A.
    II INTERNATIONAL SYMPOSIUM ON PAPAYA, 2010, 851
  • [7] Drying kinetics of fresh and osmotically pre-treated papaya (Carica papaya L.)
    El-Aouar, AA
    Azoubel, PM
    Murr, FEX
    JOURNAL OF FOOD ENGINEERING, 2003, 59 (01) : 85 - 91
  • [8] Shoot Tip Transformation in Papaya (Carica papaya L.)
    Chandra, R.
    Mishra, M.
    Pati, R.
    Agarwal, S.
    Jain, R. K.
    II INTERNATIONAL SYMPOSIUM ON PAPAYA, 2010, 851
  • [9] Pollen morphological analysis of papaya (Carica papaya L.)
    Zhang, Yanfang
    Xiong, Yueming
    Liu, Youjie
    Huang, Xiongfeng
    CROP BREEDING AND APPLIED BIOTECHNOLOGY, 2021, 21 (03):
  • [10] Stigma structure and receptivity in papaya (Carica papaya L.)
    Ferreira, Jacqueline A. B.
    Ledo, Carlos A. S.
    Souza, Fernanda V. D.
    Conceicao, Josimare Q.
    Rossi, Monica L.
    Souza, Everton H.
    ANAIS DA ACADEMIA BRASILEIRA DE CIENCIAS, 2021, 93 (01):