Modeling, drying kinetics, and antioxidant properties of Bentong ginger based on different drying techniques
This study presents the effect of different drying techniques (swirling fluidized bed drying [SFBD], oven drying [OD], and freeze drying [FD]) on the drying kinetics, antioxidant potential, and 6-gingerol concentration of Bentong ginger (BG). Seven mathematical models were applied to the experimenta...
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Blackwell Publishing Inc.
2022
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Online Access: | http://umpir.ump.edu.my/id/eprint/36864/1/Modeling%2C%20drying%20kinetics%2C%20and%20antioxidant%20properties%20of%20Bentong%20ginger%20.pdf http://umpir.ump.edu.my/id/eprint/36864/2/Modeling%2C%20drying%20kinetics%2C%20and%20antioxidant%20properties%20of%20Bentong%20ginger_full.pdf http://umpir.ump.edu.my/id/eprint/36864/ https://doi.org/10.1111/jfpe.14234 https://doi.org/10.1111/jfpe.14234 |
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my.ump.umpir.368642023-02-01T06:40:25Z http://umpir.ump.edu.my/id/eprint/36864/ Modeling, drying kinetics, and antioxidant properties of Bentong ginger based on different drying techniques Subramaniam, Sarmilaah Dewi Mohd Azman, N. A. Abdul Mudalip, S. K. Abdul Halim, Luqman Basrawi, Firdaus Muhammad, Noryanti QD Chemistry TP Chemical technology This study presents the effect of different drying techniques (swirling fluidized bed drying [SFBD], oven drying [OD], and freeze drying [FD]) on the drying kinetics, antioxidant potential, and 6-gingerol concentration of Bentong ginger (BG). Seven mathematical models were applied to the experimental data to determine the best thin-layer drying models for drying applications Interaction between the drying methods and antioxidant properties has been evaluated using correlation coefficient (R). The Midilli–Kucuk model showed the best fit at explaining the thin layer drying behavior of the BG for OD and SFBD, whereas the Page model showed the best fit for FD. Correlation analysis revealed that the drying methods had a strong positive correlation with DPPH and a moderate negative correlation with 6-gingerol concentration and total phenolic content. The experimental results showed that SFBD reduces the total drying time compared to OD and FD, which translates to a low energy consumption, high drying rate, and moisture diffusivity. In addition, the dried BG sample from the SFBD exhibited a slightly higher DPPH inhibition and total phenolic yield as well as the best option to preserve the 6-gingerol compound in the Liquid Chromatography Quadrupole Time-of-Flight Mass Spectrometry (LC-QTOF/MS) analysis. Thus, the SFBD approach proved to be a feasible method for drying ginger. Practical applications: Ginger is considered to be highly perishable foods due to their high moisture content. The most common process for keeping shelf-stable ginger is dehydration. Drying preserves the quality of ginger by lowering the moisture level, which prevents microbial growth and chemical changes during dried storage. The use of fluidized bed (FBD) dryers for agricultural products processing has grown in popularity in recent years. The modified and hybrid FBD systems were observed to be efficient for drying food products in previous studies. The outcome of this research showed that SFBD techniques attain better nutritional quality of ginger through less energy consumption and processing time. Blackwell Publishing Inc. 2022 Article PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/36864/1/Modeling%2C%20drying%20kinetics%2C%20and%20antioxidant%20properties%20of%20Bentong%20ginger%20.pdf pdf en http://umpir.ump.edu.my/id/eprint/36864/2/Modeling%2C%20drying%20kinetics%2C%20and%20antioxidant%20properties%20of%20Bentong%20ginger_full.pdf Subramaniam, Sarmilaah Dewi and Mohd Azman, N. A. and Abdul Mudalip, S. K. and Abdul Halim, Luqman and Basrawi, Firdaus and Muhammad, Noryanti (2022) Modeling, drying kinetics, and antioxidant properties of Bentong ginger based on different drying techniques. Journal of Food Process Engineering, Ahead of Print (Ahead of Print). pp. 1-14. ISSN 0145-8876 (In Press) https://doi.org/10.1111/jfpe.14234 https://doi.org/10.1111/jfpe.14234 |
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QD Chemistry TP Chemical technology Subramaniam, Sarmilaah Dewi Mohd Azman, N. A. Abdul Mudalip, S. K. Abdul Halim, Luqman Basrawi, Firdaus Muhammad, Noryanti Modeling, drying kinetics, and antioxidant properties of Bentong ginger based on different drying techniques |
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This study presents the effect of different drying techniques (swirling fluidized bed drying [SFBD], oven drying [OD], and freeze drying [FD]) on the drying kinetics, antioxidant potential, and 6-gingerol concentration of Bentong ginger (BG). Seven mathematical models were applied to the experimental data to determine the best thin-layer drying models for drying applications Interaction between the drying methods and antioxidant properties has been evaluated using correlation coefficient (R). The Midilli–Kucuk model showed the best fit at explaining the thin layer drying behavior of the BG for OD and SFBD, whereas the Page model showed the best fit for FD. Correlation analysis revealed that the drying methods had a strong positive correlation with DPPH and a moderate negative correlation with 6-gingerol concentration and total phenolic content. The experimental results showed that SFBD reduces the total drying time compared to OD and FD, which translates to a low energy consumption, high drying rate, and moisture diffusivity. In addition, the dried BG sample from the SFBD exhibited a slightly higher DPPH inhibition and total phenolic yield as well as the best option to preserve the 6-gingerol compound in the Liquid Chromatography Quadrupole Time-of-Flight Mass Spectrometry (LC-QTOF/MS) analysis. Thus, the SFBD approach proved to be a feasible method for drying ginger. Practical applications: Ginger is considered to be highly perishable foods due to their high moisture content. The most common process for keeping shelf-stable ginger is dehydration. Drying preserves the quality of ginger by lowering the moisture level, which prevents microbial growth and chemical changes during dried storage. The use of fluidized bed (FBD) dryers for agricultural products processing has grown in popularity in recent years. The modified and hybrid FBD systems were observed to be efficient for drying food products in previous studies. The outcome of this research showed that SFBD techniques attain better nutritional quality of ginger through less energy consumption and processing time. |
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Article |
author |
Subramaniam, Sarmilaah Dewi Mohd Azman, N. A. Abdul Mudalip, S. K. Abdul Halim, Luqman Basrawi, Firdaus Muhammad, Noryanti |
author_facet |
Subramaniam, Sarmilaah Dewi Mohd Azman, N. A. Abdul Mudalip, S. K. Abdul Halim, Luqman Basrawi, Firdaus Muhammad, Noryanti |
author_sort |
Subramaniam, Sarmilaah Dewi |
title |
Modeling, drying kinetics, and antioxidant properties of Bentong ginger based on different drying techniques |
title_short |
Modeling, drying kinetics, and antioxidant properties of Bentong ginger based on different drying techniques |
title_full |
Modeling, drying kinetics, and antioxidant properties of Bentong ginger based on different drying techniques |
title_fullStr |
Modeling, drying kinetics, and antioxidant properties of Bentong ginger based on different drying techniques |
title_full_unstemmed |
Modeling, drying kinetics, and antioxidant properties of Bentong ginger based on different drying techniques |
title_sort |
modeling, drying kinetics, and antioxidant properties of bentong ginger based on different drying techniques |
publisher |
Blackwell Publishing Inc. |
publishDate |
2022 |
url |
http://umpir.ump.edu.my/id/eprint/36864/1/Modeling%2C%20drying%20kinetics%2C%20and%20antioxidant%20properties%20of%20Bentong%20ginger%20.pdf http://umpir.ump.edu.my/id/eprint/36864/2/Modeling%2C%20drying%20kinetics%2C%20and%20antioxidant%20properties%20of%20Bentong%20ginger_full.pdf http://umpir.ump.edu.my/id/eprint/36864/ https://doi.org/10.1111/jfpe.14234 https://doi.org/10.1111/jfpe.14234 |
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1756684417638596608 |
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13.211869 |