[1] H. Leion, V. Frick, F. Hildor, Experimental method and setup for laboratory fluidized bed reactor testing, Energies 11(10) (2018) 2505. [2] O. Molerus, K.E. Wirth, Heat Transfer in Fluidized Beds, Chapman Hall Edition, 1997. [3] B. Abdelgawad, Design of a Gas-Solid Fluidized Bed Reactor at High Temperature and High Pressure, PhD Thesis, École Polytechnique de Montréal, Canada, 2013. [4] T. R. Rao, J.V. Ram. Bheemarasetti, Minimum fluidization velocities of mixtures of biomass and sands, Energy 26(6) (2001) 633-644. [5] F. Miccio, B. Piriou, G. Ruoppolo, R. Chirone, Biomass gasification in a catalytic fluidized reactor with beds of different materials, Chem. Eng. J. 154(1-3) (2009) 369-374. [6] M. Jiliang, C. Xiaoping, L. Daoyin, Minimum fluidization velocity of particles with wide size distribution at high temperatures, Powder Technol. 235(2013) 271-278. [7] S. Sanaei, N. Mostoufi, R. Radmanesh, R. Sotudeh-Gharebagh, C. Guy, J. Chaouki, Hydrodynamic characteristics of gas-solid fluidization at high temperature, Can. J. Chem. Eng. 88(1) (2010) 1-11. [8] B. Formisani, R. Girimonte, L. Mancuso, Analysis of the fluidization process of particle beds at high temperature, Chem. Eng. Sci. 53(5) (1998) 951-961. [9] J.A.A. Lucas, J. Casala, L. Puigjanera, High temperature incipient fluidization in mono and polydisperse systems, 41(1-6) (1986) 121-132. [10] A. Mathur, S.C. Saxena, Z.F. Zhang, Hydrodynamic characteristics of gas-fluidized beds over a broad temperature range, Powder Technol. 47(3) (1986) 247-256. [11] B. Formisani, R. Girimonte, G. Pataro, The influence of operating temperature on the dense phase properties of bubbling fluidized beds of solids, Powder Technol. 125(1) (2002) 28-38. [12] J.F. Stubington, D. Barrett, G. Lowry, On the minimum fluidizing velocity of coal-derived chars at elevated temperatures, Chem. Eng. Sci. 39(10) (1984) 1516-1518. [13] S.C. Saxena, A. Mathur, Z.F. Zhang, Incipient fluidization at different temperatures and powder characterization, AICHE J. 33(3) (1987) 500-502. [14] H.J. Subramani, M.B. Mothivel Balaiyya, L.R. Miranda, Minimum fluidization velocity at elevated temperatures for Geldart's group-B powders, Exp. Thermal Fluid Sci. 32(1) (2007) 166-173. [15] P. Lettieri, D. Macrì, Effect of process conditions on fluidization, KONA Powder Part. J. (2016) 2016017. [16] Y.T.J.S.M. Botterill, k.R. Yuregir, The effect of operating temperature on the velocity of minimum fluidization, bed voidage and general behavior, Powder Technol. 31(1982) 101-110. [17] K. Svoboda, M. Hartman, Influence of temperature on incipient fluidization of limestone, lime, coal ash and carborundum, Ind. Eng. Chem. Proc. Des. Dev. 20(1981) 319-326. [18] R.R. Pattipati, C.Y. Wen, Minimum fluidization velocity at high temperatures, Ind. Eng. Chem. Proc. Des. Dev. 20(1981) 705-707. [19] Y.H.Y.C.Y. Wen, Mechanics of fluidization, Chem. Eng. Prog. Symp. Ser. 62(1966) 100. [20] D. Sau, S. Mohanty, K. Biswal, Minimum fluidization velocity at elevated temperature in tapered fluidized bed, Chem. Eng. Process. Process Intensif. 47(12) (2008) 2391-2394. [21] S. Gosavi, N. Kulkarni, C. Mathpati, D. Mandal, CFD modeling to determine the minimum fluidization velocity of particles in gas-solid fluidized bed at different temperatures, Powder Technol. 327(2018) 109-119. [22] Y. Shao, J. Gu, W. Zhong, A. Yu, Determination of minimum fluidization velocity in fluidized bed at elevated pressures and temperatures using CFD simulations, Powder Technol. 350(2019) 81-90. [23] D. Kunii, O. Levenspiel, Fluidization Engineering, Elsevier, 2013. [24] P. a. G. Bourgeois, P, The ratio of terminal velocity to minimum fluidising velocity for spherical particles, Can. J. Chem. Eng., 46(1968)325-328. [25] A. Delebarre, Revisiting the Wen and Yu equations for minimum fluidization velocity prediction, Chem. Eng. Res. Des. 82(5) (2004) 587-590. [26] J.B.J. Ilavsky, Determination of minimum fluidization velocity of polydispersed materials, Chem.Zvesti 21(1967) 877. [27] V. Thonglimp, N. Hiquily, C. Laguerie, Minimum fluidization velocity and expansion of layers of mixtures of particulates solids fluidized by a gas, Powder Technol. 39(1984) 223-239. [29] W.C. Yang, Handbook of Fluidization and Fluid-Particle Systems, CRC Press, 2003. [30] D. Gauthier, S. Zerguerras, G. Flamant, Influence of the particle size distribution of powders on the velocities of minimum and complete fluidization, Chem. Eng. J. 74(3) (1999) 181-196. [31] C.L. Lin, M.Y. Wey, S.D. You, The effect of particle size distribution on minimum fluidization velocity at high temperature, Powder Technol. 126(3) (2002) 297-301. [32] S.B. Sethupathy, E. Natarajan, Hydrodynamic study on gasification of biomass in a fluidized bed gasifier, Int. J. Eng. Sci. Technol. 4(1) (2012) 316-323. [33] K. Svoboda, M. Hartman, Influence of temperature on incipient fluidization of limestone, lime, coal ash, and corundum, Indus. Eng. Chem. Process Design Dev. 20(2) (1981) 319-326. [34] S. Ergun, Fluid flow through packed columns, Chem. Eng. Prog. 48(1958) 89-94. [35] D. Escudero, T.J. Heindel, Bed height and material density effects on fluidized bed hydrodynamics, Chem. Eng. Sci. 66(16) (2011) 3648-3655. [36] J. Botterill, Y. Teoman, Fluid-bed behaviour at elevated temperatures, Fluidization, Springer 1980, pp. 93-100. [37] J. Goo, M. Seo, S.D. Kim, B. Song, Effects of temperature and particle size on minimum fluidization and transport velocities in a dual fluidized bed, Proceedings of the 20th International Conference on Fluidized Bed Combustion, Springer 2009, pp. 305-310. [38] R. Yamazaki, N.S. Han, Z.F. Sun, G. Jimbo, Effect of chemisorbed water on bed voidage of high temperature fluidized bed, Powder Technol. 84(1) (1995) 15-22. [39] H. Krupp, G. Sperling, Theory of adhesion of small particles, J. Appl. Phys. 37(11) (1966) 4176-4180. [40] N.J. Kulkarni, C.S. Mathpati, D. Mandal, V.H. Dalvi, Minimum fluidization velocity of intermediate sized particles in conventional and packed fluidized bed, Int. J. Chem. React. Eng. (2019), https://doi.org/10.1515/ijcre-2018-0321. [41] F. Raganati, R. Chirone, P. Ammendola, Effect of temperature on fluidization of Geldart's group a and C powders:role of interparticle forces, Ind. Eng. Chem. Res. 56(44) (2017) 12811-12821. [42] R.S. Subramanian, Flow Through Packed Beds and Fluidized Beds, PhD Thesis, Clarkson University, USA, 2004. [43] M. Downmore, S.D. Jambgwa, K.P. Kusaziwa, Effect of bed particle size and temperature variation on the minimum fluidisation velocity:a comparison with minimum fluidisation velocity correlations for bubbling fluidised bed designs, Proc. Inst. Mech. Eng. Part E:J. Process Mech. Eng. 233(5) (2019) 1001-1012, https://doi.org/10.1177/0954408918821769(0954408918821769). |