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预处理苹果片微波干燥的定性、能量及环境方面

Qualitative, energy and environmental aspects of microwave drying of pre-treated apple slices.

作者信息

Taghinezhad Ebrahim, Kaveh Mohammad, Szumny Antoni, Figiel Adam, Blasco José

机构信息

Department of Agricultural Technology Engineering, Moghan College of Agriculture and Natural Resources, University of Mohaghegh Ardabili, 5619911367, Ardabil, Iran.

Department of Chemistry, Wroclaw University of Environmental and Life Science, CK Norwida 25, 50-375, Wrocław, Poland.

出版信息

Sci Rep. 2023 Sep 26;13(1):16152. doi: 10.1038/s41598-023-43358-6.

Abstract

In the present research, response parameters such as specific energy consumption (SEC), thermal efficiency (TE), energy efficiency (EF), drying time (DT), greenhouse gas (GHG) emission (such as CO and NO), and quality features (color variation and shrinkage) were modeled by response surface methodology (RSM) for apple slices dried in a microwave dryer under ultrasonication (30 ℃-10 min) and blanching (80 °C-2 min) pretreatments. Also, RSM was applied to optimize two independent parameters including microwave power and sample thickness in the levels 100, 200, and 300 W and 2, 4, and 6 mm, respectively. The results indicated the significant influence (P < 0.01) of the independent parameters on the response parameters. The vales of SEC, DT, GHG emission, shrinkage, and color difference were linearly decreased with the declining sample thickness and increasing microwave power, while the energy and thermal efficiencies were increased by a quadratic equation. The use of ultrasonication and blanching pretreatments decreased the SEC, GHG emissions, and DT; while improving the quality of the samples as compared to the non-treated slices. The optimization results showed the optimal drying times (31.55, 82.19, and 50.55 min), SEC (3.42, 10.07, and 4.37 MJ/kg), CO with natural gas (1539.75, 1518.75, and 4585 g), CO with gas oil (3662.53, 2099.25, 2721.25 g), NO with natural gas (10.094, 9.956, and 12.906 g), and NO with gas oil (12.934, 12.758, and 16.538 g) at a microwave power of 300 W and sample thickness of 2 mm with desirability of 0.921, 0.935, and 0.916 for control samples, ultrasonicated, and blanched, respectively.

摘要

在本研究中,采用响应面法(RSM)对超声处理(30℃ - 10分钟)和热烫处理(80℃ - 2分钟)预处理后在微波干燥机中干燥的苹果片的特定能耗(SEC)、热效率(TE)、能源效率(EF)、干燥时间(DT)、温室气体(GHG)排放(如CO和NO)以及品质特性(颜色变化和收缩率)等响应参数进行了建模。此外,应用响应面法分别在100、200和300W以及2、4和6mm的水平下优化包括微波功率和样品厚度在内的两个独立参数。结果表明,独立参数对响应参数有显著影响(P < 0.01)。SEC、DT、GHG排放、收缩率和色差的值随着样品厚度的减小和微波功率的增加而线性下降,而能源效率和热效率则通过二次方程增加。与未处理的切片相比,超声处理和热烫预处理的使用降低了SEC、GHG排放和DT;同时提高了样品的品质。优化结果显示,在微波功率为300W且样品厚度为2mm时,对照样品、超声处理样品和热烫处理样品的最佳干燥时间分别为(31.55、82.19和50.55分钟),SEC分别为(3.42、10.07和4.37 MJ/kg),天然气产生的CO分别为(1539.75、1518.75和4585 g),瓦斯油产生的CO分别为(3662.53、2099.25、2721.25 g),天然气产生的NO分别为(10.094、9.956和12.906 g),瓦斯油产生的NO分别为(12.934、12.758和16.538 g),可取性分别为0.921、0.935和0.916。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55a9/10522627/671194899a20/41598_2023_43358_Fig1_HTML.jpg

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