Rattanamechaiskul, Chaiwat
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Preferred name
Rattanamechaiskul, Chaiwat
Alternative Name
Rattanamechaiskul, C.
Main Affiliation
Email
chaiwat.ra@kmitl.ac.th
4 results
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Item type:Publication, Drying and mathematical modelling for the decelerated rancidity of treated jasmine brown rice using different drying media(2021-01-01) ;Junka, Nittaya; ;Wongs-Aree, ChalermchaiSoponronnarit, SomchartJasmine brown rice (JBR) attains a rancid odour because of lipid deterioration, which reduces its shelf life. This study focused on preserving JBR's stability through drying in a fluidised bed at 100–150 °C using different drying media: hot air (HA), humidified hot air (HHA), and superheated steam (SHS). The JBR and the rancid odour caused by thiobarbituric acid (TBA) were analysed. A mathematical model was developed for the drying process, and associated equations were formulated to predict the mechanism underlying changes in TBA during 180 days of storage. The dried samples became harder owing to gelatinisation of starch and decrease in 2-acetyl-1-pyrroline volatility. Changes in JBR quality were correlated to the drying temperature and drying media used. SHS drying at 150 °C decelerated TBA formation the most. The proposed mathematical model and associated equations can predict changes in TBA during storage accurately and be applied to JBR under most drying conditions. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Free Fatty Acid Deformation of Treated Black Glutinous Rice During Storage by Fluidization Drying(2017-06-01) ;Junka, Nittaya; Wongs-Aree, ChalermchaiThis research was contemplated for two purposes: to study a consequent change in the free fatty acid (FFA) content of dried black glutinous rice by fluidization drying and to develop a mathematical equation for predicting FFA formation during storage. It was found that during the same storage period, the rice that passed through the drying process at temperatures of 100, 130 and 150°C accounted for less formation of FFA content than the referenced rice, and the FFA formation was reduced in accordance with the increasing drying temperature. In regard to the proposed equation, predicted FFA formation in rice during the storage period by zero-order rate reactions yielded the best fit with the values acquired from the experiment. Practical Applications: The drying process, which uses fluidization with high temperature hot air, is a highly efficient drying method in reducing moisture of the paddy to a suitable level before transporting or storing. In addition, such a method could be applied to the inactivated lipase enzyme to prevent hydrolysis of lipids in rice bran that give rise to FFA, which results in undesirable rancidity for consumers. Data on the change in the FFA content acquired from the experiment would be used to develop a mathematical equation for predicting FFA formation in black glutinous rice during the storage period. The suitable drying condition and proposed mathematical equation would be beneficial as a drying guideline to control rancidity of rice during storage. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Influence of hot air fluidized bed drying on quality changes of purple rice(2016-09-09); ;Junka, Nittaya ;Wongs-Aree, Chalermchai ;Prachayawarakorn, SomkiatSoponronnarit, SomchartThe influence of drying using a fluidization technique on the quality of purple rice was investigated in this study. The results demonstrated that the initial moisture of rice was 28.3% dry basis (db). Compared to the sun-dried or reference purple rice samples, the influence of drying at temperatures ranging from 100 to 150°C did not affect the quality of color, anthocyanin content, total phenolic content, or antioxidant activity. At this initial moisture level, samples should be dried at 150°C air because such temperatures yield the highest drying rate. Drying at this temperature also causes an increase in the head purple rice yield because of the gelatinization of starch. In the case of an initial moisture content of 33.3% (db), the drying temperature should not exceed 130°C. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Increasing energy efficiency of the Cissus quadrangularis drying by hot air fluidization technique(2017-01-01) ;Promnuch, Jutamas ;Junka, Nittaya ;Wongs-Aree, Chalermchai ;Soponronnarit, SomchartThe aim of this paper is to increase energy efficiency by reducing specific energy consumption (SEC) during Cissus quadrangularis drying. The fresh sample, with a high moisture content of 90 ± 2 % wet basis (w.b.), was dried by hot air Fluidized bed technique at temperatures of 90, 110, 130 and 150°C to a final moisture content of 5 % (w.b.) and then was compared to the results of tray drying at a low temperature of 50°C, following a method by Tha Sae Hospital in Chumphon province, Thailand. The drying kinetic result revealed that fluidization drying had a higher rate of water removal than the tray drying method. That rate directly correlated with the drying temperature; it increased with an increase of drying temperature. With the increasing of the rate, it resulted in a decreasing of SEC. Although using a drying temperature of 150°C had the highest rate of water removal and subsequently had the lowest SEC, it negatively affected the antioxidant activity of the sample. To dry Cissus quadrangularis with the lowest SEC as possible, it should be dried by hot air fluidization at a drying temperature of 110°C. At this drying condition, there is still a high rate of water removal and a low effect of the desired qualities of the sample.
