共 10 条
- [1] Chernysh Y, Yakhnenko O, Chubur V, Roubik H., Phosphogypsum recycling: A review of environmental issues, current trends, and prospects, Appl Sci, 11, 4, (2021)
- [2] Parthkumar P, Srivastava SK, Nimit D., Drying of chemical gypsum, Int J Trend Res Develop, 3, (2016)
- [3] Lopez-Delgado A, Lopez-Andres S, Padilla I, Alvarez M, Galindo R, Jose Vazquez A., Dehydration of gypsum rock by solar energy: Preliminary study, Geomaterials, 4, 3, pp. 82-91, (2014)
- [4] Ettahi K, Chaanaoui M, Sebastien V, Abderafi S, Bounahmidi T., Modeling and design of a solar rotary dryer bench test for phosphate sludge, Model Simul Eng, 2022, pp. 1-11, (2022)
- [5] Fadhel A, Eddhibi F, Charfi K, Balghouthi M., Investigation of a Linear Fresnel solar collector (LFSC) prototype for phosphate drying, Energy Nexus, 10, (2023)
- [6] Men J, Li Y, Cheng P, Zhang Z., Recycling phosphogypsum in road construction materials and associated environmental considerations: A review, Heliyon, 8, 11, (2022)
- [7] Tarigan E., Mathematical modeling and simulation of a solar agricultural dryer with back-up biomass burner and thermal storage, Case Stud Therm Eng, 12, pp. 149-165, (2018)
- [8] Ren K, Cui N, Zhao S, Et al., Low-carbon sustainable composites from waste phosphogypsum and their environmental impacts, Crystals, 11, 7, (2021)
- [9] El-Sebaii AA, Aboul-Enein S, Ramadan MRI, El-Gohary HG., Empirical correlations for drying kinetics of some fruits and vegetables, Energy, 27, 9, pp. 845-859, (2002)
- [10] Om Prakash, Anil Kumar, Solar drying technology, Concept, Design, Testing, Modeling, Economics, and Environment, (2017)