Drying kinetics study of medicinal plants used in diabetes treatment

Drying is an essential post-harvest process done to preserve the medicinal qualities of medicinal plants. Although the drying process has been advantageous for the preservation of active ingredients in medicinal plants, the improper operation could lead to undesirable changes in appearance, flavor,...

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Main Authors: Ching, Robby Andre T., Nibre, Joshua V., Pablo, Michelle N.
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Language:English
Published: Animo Repository 2023
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Online Access:https://animorepository.dlsu.edu.ph/etdb_chemeng/19
https://animorepository.dlsu.edu.ph/cgi/viewcontent.cgi?article=1021&context=etdb_chemeng
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Institution: De La Salle University
Language: English
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spelling oai:animorepository.dlsu.edu.ph:etdb_chemeng-10212023-01-18T02:54:21Z Drying kinetics study of medicinal plants used in diabetes treatment Ching, Robby Andre T. Nibre, Joshua V. Pablo, Michelle N. Drying is an essential post-harvest process done to preserve the medicinal qualities of medicinal plants. Although the drying process has been advantageous for the preservation of active ingredients in medicinal plants, the improper operation could lead to undesirable changes in appearance, flavor, and a significant loss in active ingredients. With that, the determination of the drying kinetics and characteristics of medicinal plants is essential to establish the appropriate drying conditions. In this study, the drying behavior of Costus igneus (Insulin Plant), Lagerstroemia speciosa (Banaba), and Blumea balsamifera (Sambong) – medicinal plants in the Philippines used in the treatment of diabetes were investigated. The experimental runs were conducted for two trials per plant system at two different inlet air fan settings (30% and 50%), which approximately corresponded to (0.80 and 1.0 m/s) of air velocity, and three different inlet air temperatures (45°C, 50°C, 55°C) using the Armfield UOP8 MKII convective tray dryer, thus having a total of 6 conditions. Among the three plant systems, the Insulin plant had the highest initial moisture content, longest drying time, and lowest drying rate. For all six conditions, all three systems had no constant rate period and only exhibited falling rate period/s. The drying rate for each plant system generally increased with temperature but only up to a certain point, where beyond it the opposite trend occurs. Changes in the morphology during the drying process caused by shrinkage may have led to this behavior. Sambong had the largest drying rate initially but was most affected by shrinkage as evident in the large decrease in its drying rate. Ten thin-layer drying kinetics models were evaluated for all conditions. Demir model was determined to be applicable for all conditions among all plant systems. Wang and Singh model was also found to be applicable for all conditions of banaba while Kaleemullah model for sambong and insulin plant. Effective moisture diffusivity for all conditions of the plant systems was also obtained and within the expected range of to . The activation energy for the plant systems, except Insulin plant dried at 30% fan setting, was within the expected range of 12.32 to 82.93 kJ/mol. Based on the observed variation of effective moisture diffusivity with moisture content, liquid diffusion is the main moisture transport mechanism at the earlier stage of drying, while vapor diffusion takes place at the latter stage of the process. 2023-01-01T08:00:00Z text application/pdf https://animorepository.dlsu.edu.ph/etdb_chemeng/19 https://animorepository.dlsu.edu.ph/cgi/viewcontent.cgi?article=1021&context=etdb_chemeng Chemical Engineering Bachelor's Theses English Animo Repository Medicinal plants —Drying Chemical Engineering
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
language English
topic Medicinal plants —Drying
Chemical Engineering
spellingShingle Medicinal plants —Drying
Chemical Engineering
Ching, Robby Andre T.
Nibre, Joshua V.
Pablo, Michelle N.
Drying kinetics study of medicinal plants used in diabetes treatment
description Drying is an essential post-harvest process done to preserve the medicinal qualities of medicinal plants. Although the drying process has been advantageous for the preservation of active ingredients in medicinal plants, the improper operation could lead to undesirable changes in appearance, flavor, and a significant loss in active ingredients. With that, the determination of the drying kinetics and characteristics of medicinal plants is essential to establish the appropriate drying conditions. In this study, the drying behavior of Costus igneus (Insulin Plant), Lagerstroemia speciosa (Banaba), and Blumea balsamifera (Sambong) – medicinal plants in the Philippines used in the treatment of diabetes were investigated. The experimental runs were conducted for two trials per plant system at two different inlet air fan settings (30% and 50%), which approximately corresponded to (0.80 and 1.0 m/s) of air velocity, and three different inlet air temperatures (45°C, 50°C, 55°C) using the Armfield UOP8 MKII convective tray dryer, thus having a total of 6 conditions. Among the three plant systems, the Insulin plant had the highest initial moisture content, longest drying time, and lowest drying rate. For all six conditions, all three systems had no constant rate period and only exhibited falling rate period/s. The drying rate for each plant system generally increased with temperature but only up to a certain point, where beyond it the opposite trend occurs. Changes in the morphology during the drying process caused by shrinkage may have led to this behavior. Sambong had the largest drying rate initially but was most affected by shrinkage as evident in the large decrease in its drying rate. Ten thin-layer drying kinetics models were evaluated for all conditions. Demir model was determined to be applicable for all conditions among all plant systems. Wang and Singh model was also found to be applicable for all conditions of banaba while Kaleemullah model for sambong and insulin plant. Effective moisture diffusivity for all conditions of the plant systems was also obtained and within the expected range of to . The activation energy for the plant systems, except Insulin plant dried at 30% fan setting, was within the expected range of 12.32 to 82.93 kJ/mol. Based on the observed variation of effective moisture diffusivity with moisture content, liquid diffusion is the main moisture transport mechanism at the earlier stage of drying, while vapor diffusion takes place at the latter stage of the process.
format text
author Ching, Robby Andre T.
Nibre, Joshua V.
Pablo, Michelle N.
author_facet Ching, Robby Andre T.
Nibre, Joshua V.
Pablo, Michelle N.
author_sort Ching, Robby Andre T.
title Drying kinetics study of medicinal plants used in diabetes treatment
title_short Drying kinetics study of medicinal plants used in diabetes treatment
title_full Drying kinetics study of medicinal plants used in diabetes treatment
title_fullStr Drying kinetics study of medicinal plants used in diabetes treatment
title_full_unstemmed Drying kinetics study of medicinal plants used in diabetes treatment
title_sort drying kinetics study of medicinal plants used in diabetes treatment
publisher Animo Repository
publishDate 2023
url https://animorepository.dlsu.edu.ph/etdb_chemeng/19
https://animorepository.dlsu.edu.ph/cgi/viewcontent.cgi?article=1021&context=etdb_chemeng
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