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托盘干燥器中三叶薯蓣淀粉干燥的能量与㶲分析:参数、建模与优化研究

Energy and exergy analysis of three leaved yam starch drying in a tray dryer: parametric, modelling and optimization studies.

作者信息

Nwosu-Obieogu Kenechi, Oke Emmanuel Olusola, Bright Simeon

机构信息

Department of Chemical Engineering, College of Engineering and Engineering Technology, Michael Okpara University of Agriculture, Umudike, Nigeria.

Department of Mechanical Engineering, College of Engineering and Engineering Technology, Michael Okpara University of Agriculture, Umudike, Nigeria.

出版信息

Heliyon. 2022 Aug 10;8(8):e10124. doi: 10.1016/j.heliyon.2022.e10124. eCollection 2022 Aug.

Abstract

Engineering conservation during the drying process is paramount as it will help in the preservation and cost minimization of food products during processing to avoid spoilage and maximize their utilization in society. Unlike other yam species, three-leaved yam starch (TLYS) contains phytonutrients for the treatment of ailments such as diabetes and rheumatism. This work examined the energy and exergy of TLYS drying. The starch was extracted from the tuber and dried while the temperature, time, air velocity, and sample thickness were varied. TLYS proximate and SEM analysis revealed a significant amount of starch. Energy analysis revealed that energy utilization (EU) and energy utilization ratio (EUR) increased as the temperature rose and decreased as drying time increased; energy efficiency (EE) increased steadily and then reduced as drying time increased. Exergy analysis revealed that drying temperature increased exergetic efficiency and loss; drying time increased exergetic efficiency from 30 min to 4 h. The highest exergy loss was observed when the sample was dried for 4 h and the thickness is 17 mm; as the thickness decreased to 12.75 mm, the exergy loss decreased from 2.471392 J/s to 1.459247 J/s; the highest exergy efficiency of 2.471392 J/s was observed at the thickness of 4.25 mm, and the sustainability index increased as the sample thickness increased and decreased as the drying air temperature decreased. Response surface methodology (RSM) was utilized to model and optimize the effect of the process's inherent operating factors (temperature, time, and air velocity) and maximize the process's energy and exergy efficiency. The (Analysis of Variance) ANOVA revealed a second-order polynomial model with an R (0.9911), Adj R (0.9797) and Pred R (0.8577) for energy efficiency and R (0.9824), Adj R (0.9598), and Pred R (0.7184) for exergy efficiency, indicating a significant correlation between observed and predicted values. At a temperature of 60 °C, a time of 3 h, and an air velocity of 1.5 m/s, the optimal energy efficiency of 75.09 % and exergy efficiency of 99.221% were obtained with desirability of 0.997. The findings of this study can be used to improve the design and development of driers for TLYS preservation.

摘要

干燥过程中的工程节能至关重要,因为它有助于在食品加工过程中保存食品并将成本降至最低,以避免变质并最大限度地提高其在社会中的利用率。与其他山药品种不同,三叶山药淀粉(TLYS)含有用于治疗糖尿病和风湿病等疾病的植物营养素。这项工作研究了TLYS干燥的能量和㶲。从块茎中提取淀粉并进行干燥,同时改变温度、时间、风速和样品厚度。TLYS的近似分析和扫描电子显微镜分析显示含有大量淀粉。能量分析表明,能量利用率(EU)和能量利用率比(EUR)随温度升高而增加,随干燥时间增加而降低;能量效率(EE)稳步增加,然后随干燥时间增加而降低。㶲分析表明,干燥温度提高了㶲效率和损失;干燥时间从30分钟增加到4小时,㶲效率提高。当样品干燥4小时且厚度为17毫米时,观察到最高的㶲损失;当厚度降至12.75毫米时,㶲损失从2.471392焦耳/秒降至1.459247焦耳/秒;在厚度为4.25毫米时,观察到最高的㶲效率为2.471392焦耳/秒,可持续性指数随样品厚度增加而增加,随干燥空气温度降低而降低。采用响应面法(RSM)对该过程的固有操作因素(温度、时间和风速)的影响进行建模和优化,以最大限度地提高该过程的能量和㶲效率。方差分析(ANOVA)显示了一个二阶多项式模型,能量效率的R(0.9911)、调整R(0.9797)和预测R(0.8577),㶲效率的R(0.9824)、调整R(0.9598)和预测R(0.7184),表明观测值和预测值之间存在显著相关性。在温度为60°C、时间为3小时、风速为1.5米/秒的条件下,获得了75.09%的最佳能量效率和99.221%的㶲效率,可取性为0.997。本研究结果可用于改进TLYS保存干燥机的设计和开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28c8/9399952/7f2a0093f03f/gr1.jpg

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