Drying kinetics of nectarine slices in a heat pump drying system

被引:2
作者
Tunckal, Cuneyt [1 ]
Direk, Mehmet [2 ]
Doymaz, Ibrahim [3 ]
机构
[1] Yalova Univ, Elect & Energy Dept, Yalova, Turkiye
[2] Yalova Univ, Energy Syst Engn Dept, TR-77200 Yalova, Turkiye
[3] Yildiz Tech Univ, Chem Engn Dept, Istanbul, Turkiye
关键词
Activation; COP; drying kinetics; energy; exergy; moisture diffusion; HOT-AIR; EXERGY ANALYSIS; PERFORMANCE; MICROWAVE; QUALITY; DRYER;
D O I
10.1080/15567036.2023.2298009
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This study focused on investigating the drying behaviors of nectarine slices under varying drying temperatures (Tdrying) through the utilization of energy and exergy analysis methodologies, alongside an exploration of the drying kinetics employing diverse mathematical models. The drying process was carried out using a closed-type heat pump drying (HPD) system. The findings revealed a reduction in drying time with an increase in temperature. Notably, the condenser, compressor, and drying cabinet exhibited their highest exergy efficiencies at a Tdrying of 45 degrees C, while the evaporator demonstrated its highest exergy efficiency at 35 degrees C. The highest exergy efficiencies were achieved at a Tdrying of 45 degrees C and calculated as 65.94%, 77.95% and 80.53% for the condenser, dryer and compressor, respectively. Among the considered models, Aghbashlo et al. demonstrated the most optimal fit for moisture ratio. The Deff values ranged from 5.476 x 10-10 to 1.095 x 10-9 m2/s within the Tdrying range of 35 to 45 degrees C. As the Tdrying elevated, the Deff also raised. Using an Arrhenius-type equation, the expression for the temperature dependence of Deff was established. The determined activation energy value for moisture diffusion was 56.50 kJ/mol.
引用
收藏
页码:1686 / 1700
页数:15
相关论文
共 34 条
[1]  
Aghbashlo M, 2009, INT AGROPHYS, V23, P313
[2]   Heat pump drying of grape pomace: Performance and product quality analysis [J].
Aktas, Mustafa ;
Taseri, Levent ;
Sevik, Seyfi ;
Gulcu, Mehmet ;
Seckin, Gamze Uysal ;
Dolgun, Ekin Can .
DRYING TECHNOLOGY, 2019, 37 (14) :1766-1779
[3]   Drying Characteristics of Pomegranate Arils Under Near Infrared-Vacuum Conditions [J].
Alaei, Behnam ;
Chayjan, Reza Amiri .
JOURNAL OF FOOD PROCESSING AND PRESERVATION, 2015, 39 (05) :469-479
[4]   The microbiological quality of various foods dried by applying different drying methods: a review [J].
Alp, Duygu ;
Bulantekin, Ozcan .
EUROPEAN FOOD RESEARCH AND TECHNOLOGY, 2021, 247 (06) :1333-1343
[5]   Effects of hot-air and hybrid hot air-microwave drying on drying kinetics and textural quality of nectarine slices [J].
Ashtiani, Seyed-Hassan Miraei ;
Sturm, Barbara ;
Nasirahmadi, Abozar .
HEAT AND MASS TRANSFER, 2018, 54 (04) :915-927
[6]  
Barroca M. J., 2012, INT C AGR ENG, P8
[7]   Investigation of drying kinetics of tomato slices dried by using a closed loop heat pump dryer [J].
Coskun, Salih ;
Doymaz, Ibrahim ;
Tunckal, Cuneyt ;
Erdogan, Secil .
HEAT AND MASS TRANSFER, 2017, 53 (06) :1863-1871
[8]  
Crank J., 1979, The mathematics of diffusion
[9]   Ultrasound-assisted vacuum drying of nectarine [J].
da Silva, Edilene Souza ;
Rupert Brandao, Shirley Clyde ;
da Silva, Amanda Lopes ;
Fernandes da Silva, Joao Henrique ;
Duarte Coelho, Antonio Carlos ;
Azoubel, Patricia Moreira .
JOURNAL OF FOOD ENGINEERING, 2019, 246 :119-124
[10]   Modeling and comparative analysis of solar drying behavior of potatoes [J].
Djebli, Ahmed ;
Hanini, Salah ;
Badaoui, Ouassila ;
Haddad, Brahim ;
Benhamou, Amina .
RENEWABLE ENERGY, 2020, 145 :1494-1506