References

  1. A. Calín-Sánchez, L. Lipan, M. Cano-Lamadrid, A. Kharaghani, K. Masztalerz, Á.A. Carbonell-Barrachina, A. Figiel, Comparison of traditional and novel drying techniques and its effect on quality of fruits, vegetables and aromatic herbs, Foods, 9 (2020) 1261, doi: 10.3390/foods9091261.
  2. K. Obaideen, M.N. AlMallahi, A.H. Alami, M. Ramadan, M.A. Abdelkareem, N. Shehata, A.G. Olabi, On the contribution of solar energy to sustainable developments goals: case study on Mohammed bin Rashid Al Maktoum Solar Park, Int. J. Thermofluids, 12 (2021) 100123, doi: 10.1016/j.ijft.2021.100123.
  3. A. Srivastava, A. Anand, A. Shukla, A. Sharma, Solar Applications for Drying of Agricultural and Marine Products, S. Gorjian, P.E. Campana, Eds., Solar Energy Advancements in Agriculture and Food Production Systems, Elsevier, 2022, pp. 313–350, doi: 10.1016/B978-0-323-89866-9.00003-1.
  4. M.C. Ndukwu, M. Ibeh, B.B. Okon, G. Akpan, C.A. Kalu, I. Ekop, C.C. Nwachukwu, F.I. Abam, B. Lamrani,
    M. Simo-Tagne, A.E. Ben, J. Mbanasor, L. Bennamoun, Progressive review of solar drying studies of agricultural products with exergoeconomics and econo-market participation aspect, Cleaner Environ. Syst., 9 (2023) 100120, doi: 10.1016/j.cesys.2023.100120.
  5. B.V. Suresh, Y. Shireesha, T.S. Kishore, G. Dwivedi, A.T. Haghighi, E.R. Patro, Natural energy materials and storage systems for solar dryers: state of the art, Sol. Energy Mater. Sol. Cells, 255 (2023) 112276, doi: 10.1016/j.solmat.2023.112276.
  6. C. Matavel, H. Hoffmann, C. Rybak, S. Sieber, K. Müller, M. Brüntrup, J. Salavessa, Passive solar dryers as sustainable alternatives for drying agricultural produce in sub-Saharan Africa: advances and challenges, Discover Sustainability, 2 (2021) 40, doi: 10.1007/s43621-021-00049-4.
  7. P. Mehta, S. Samaddar, P. Patel, B. Markam, S. Maiti, Design and performance analysis of a mixed mode tent-type solar dryer for fish-drying in coastal areas, Sol. Energy, 170 (2018) 671–681.
  8. V.M. Swami, A.T. Autee, T.R. Anil, Experimental analysis of solar fish dryer using phase change material, J. Energy Storage, 20 (2018) 310–315.
  9. B.C. Udeinya, O. Ojike, W.I. Okonkwo, U.C. Abada, Performance evaluation of mixed mode passive solar stock fish dryer, Niger. J. Technol., 40 (2022), doi: 10.4314/njt.v40i6.13.
  10. D. Nurba, M. Mustaqimah, R. Fadhil, D. Darmansyah, M. Fajri, Performance test of vertical dryer hybrid for drying Tuna fish, IOP Conf. Ser.: Earth Environ. Sci., 644 (2021) 012035,
    doi: 10.1088/1755-1315/644/1/012035.
  11. A. Fudholi, K. Sopian, B. Bakhtyar, M. Gabbasa, M.Y. Othman, M.H. Ruslan, Review of solar drying systems with air based solar collectors in Malaysia, Renewable Sustainable Energy Rev., 51 (2015) 1191–1204.
  12. K. Kant, A. Shukla, A. Sharma, A. Kumar, A. Jain, Thermal energy storage based solar drying systems: a review, Innovative Food Sci. Emerg. Technol., 34 (2016) 86–99.