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Modeling and optimization of thin-layer drying data of pretreated taro (Colocasia esculenta) corm slices

机译:预处理芋头(Colocasia Esculenta)肠切片薄层干燥数据的建模与优化

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Drying, an important but energy-intensive unit operation, is necessary to ensure that perishable food produce is preserved for diverse industrial uses. Hence, modeling and optimizing this unit operation is vital. This study was carried out with the view of modeling and optimizing the thin-layer drying of pretreatedtarocorm slices using three-level factorial design of response surface methodology. Factors studied included different pretreatments (using either or a combination of sodium metabisulfite at concentrations of 1-4% w/w, steam-blanching for durations of 1-6 min, and varying drying air temperature from 50 to 70 degrees C). Seven responses (total drying time (TDT), specific energy consumption (SEC), final moisture content (FMC), activation energy (E-a), effective moisture diffusivity (D-eff), percentage change in thickness (% increment TH) and percentage of moisture loss (%ML) were investigated. The optimum drying condition was further investigated for model fitness using nine existing drying models. The results showed that responses such as TDT and FMC ranged from 395.6 to 699.9 min and 5.29-12.4% wb, respectively. SEC was between 25.7 and 50.6 kWh/kg. Deff and Ea values ranged from 0.88 x 10(-10)to 2.96 x 10(-10)m(2)/s. and 33.9-40.9 kJ/mol, respectively. However, % increment TH and %ML ranged from 37.5 to 60.9% and 83.9 to 97.5%, respectively. The models generated were reliable and reproducible. Finally, optimization studies showed that pretreatingtaroslices by sulfiting at a concentration of 1.73% and blanching at a time of 2.37 min and drying at a temperature of 57.7 degrees C would be optimum and fit Henderson and Pabis model best. In conclusion, the information provided by this study would be beneficial in designing and analyzing drying systems fortaroproducts. Practical applications Taro(Colocasia esculenta) corm is an underutilized tuber crop with promising potentials for use in different food applications especially in the production oftaroflour.Tarocorm is however perishable, having high moisture content, hence, drying is an important unit operation in the production of flour from the corms. There is a need to establish optimum drying conditions to ensure that the drying process is efficient and economical. This study, therefore, was conducted to generate data that would provide information useful for drying pretreatedtaroslices.
机译:烘干,一个重要但能量密集的单位操作,是必要的,以确保为不同的工业用途保留易腐食品。因此,建模和优化该单元操作至关重要。该研究是在使用响应面方法的三级因子设计的模拟和优化预妥妥·奥尔片切片的薄层干燥的看法进行。所研究的因素包括不同的预处理(使用1-4%W / W的浓度或硫代硫酸钠的组合,蒸汽漂白剂为1-6分钟,并从50至70℃变化的干燥空气温度。七种反应(总干燥时间(TDT),特定能耗(SEC),最终水分含量(FMC),活化能量(EA),有效的水分扩散性(D-EFF),厚度百分比变化(%递增TH)和百分比研究了水分损失(%mL)。进一步研究了最佳的干燥条件,用于使用九种现有的干燥模型进行模型适应性。结果表明,TDT和FMC等响应分别为395.6至699.9分钟和5.29-12.4%WB。 。秒为25.7和50.6千瓦时/千克。DEFF和EA值范围为0.88×10(-10)至2.96×10(-10)m(2)/ s。和33.9-40.9 kJ / mol。然而,%增量Th和%ml分别为37.5%至60.9%和83.9%至97.5%。所产生的模型是可靠和可重复的。最后,优化研究表明,在浓度为1.73%的浓度下持有预发布的研究并在一次浓度下持有预发布。 2.37分钟,57.7摄氏度的温度干燥将是最佳的和T Henderson和Pabis模型最好。总之,本研究提供的信息将有益设计和分析干燥系统营业施工系统。实际应用芋头(Colocasia Esculenta)Corm是一种未充分利用的块茎作物,具有在不同食品应用中使用的有希望的潜力,特别是在塔罗夫尔的生产中,具有高含水量,因此,干燥是生产中的重要单元操作从肝脏面粉。需要建立最佳的干燥条件,以确保干燥过程是有效且经济的。因此,本研究进行了生成数据,该数据将提供用于干燥预补生的信息。

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