A thermodynamic and kinetic study of the de- and rehydration of Ca(OH)2 at high H2O partial pressures for thermo-chemical heat storage
暂无分享,去创建一个
Hans Müller-Steinhagen | Antje Wörner | H. Müller-Steinhagen | A. Wörner | Franziska Schaube | Franziska Schaube | Lisa Koch | Lisa K. Koch
[1] Pijolat Michele,et al. From the drawbacks of the Arrhenius-f(α) rate equation towards a more general formalism and new models for the kinetic analysis of solid–gas reactions , 2011 .
[2] R. Tamme,et al. High Temperature Thermochemical Heat Storage for Concentrated Solar Power Using Gas–Solid Reactions , 2011 .
[3] Alan K. Burnham,et al. ICTAC Kinetics Committee recommendations for performing kinetic computations on thermal analysis data , 2011 .
[4] Michel Soustelle,et al. Experimental tests to validate the rate-limiting step assumption used in the kinetic analysis of solid-state reactions , 2008 .
[5] B. V. L’vov. Thermal Decomposition of Solids and Melts: New Thermochemical Approach to the Mechanism, Kinetics and Methodology , 2007 .
[6] B. E. Evans,et al. Thermal dissociation of Ca(OH)2 at elevated pressures , 2007 .
[7] H. L. Friedman,et al. Kinetics of thermal degradation of char-forming plastics from thermogravimetry. Application to a phenolic plastic , 2007 .
[8] M. Pijolat,et al. Experimental test to validate the rate equation "dα/dt = kf (α)" used in the kinetic analysis of solid state reactions , 2005 .
[9] B. V. L’vov,et al. Kinetics and mechanism of free-surface decomposition of Group IIA and IIB hydroxides analyzed thermogravimetrically by the third-law method , 2004 .
[10] Marco J. Starink,et al. The determination of activation energy from linear heating rate experiments: a comparison of the accuracy of isoconversion methods , 2003 .
[11] M. N. Azpiazu,et al. Heat recovery from a thermal energy storage based on the Ca(OH) 2 /CaO cycle , 2003 .
[12] Arun S. Mujumdar,et al. Effects of heat exchange condition on hot air production by a chemical heat pump dryer using CaO/H2O/Ca(OH)2 reaction , 2002 .
[13] Arun S. Mujumdar,et al. SIMULATION OF HYDRATION/DEHYDRATION OF CaO/Ca(OH)2 CHEMICAL HEAT PUMP REACTOR FOR COLD/HOT HEAT GENERATION , 1999 .
[14] K Darkwa,et al. Thermochemical energy storage in inorganic oxides: An experimental evaluation , 1998 .
[15] A. Galwey,et al. A kinetic and mechanistic study of the dehydroxylation of calcium hydroxide , 1993 .
[16] D. Dollimore,et al. The application of non-isothermal methods of kinetic analysis to the decomposition of calcium hydroxide , 1993 .
[17] G. E. Spanner,et al. Chemical energy storage system for SEGS solar thermal power plant , 1992 .
[18] Á. Irabien,et al. Thermal Dehydration of Calcium Hydroxide. 1. Kinetic Model and Parameters , 1990 .
[19] Á. Irabien,et al. Kinetic behaviour of non-isothermal lime hydration , 1989 .
[20] O. Chaix-Pluchery,et al. Thermal transformation of calcium hydroxide: Bulk prereactional effects and thermodynamics , 1988 .
[21] 仁樹 松田,et al. Ca(OH) 2 /CaO可逆熱化学反応を利用した化学蓄熱に関する化学速度論的研究 , 1985 .
[22] J. Bouillot,et al. Calcium hydroxide dehydration early precursor states , 1983 .
[23] D. Beruto,et al. Vapor‐Phase Hydration of Submicrometer CaO Particles , 1981 .
[24] D. Beruto,et al. Characterization of the Porous CaO Particles Formed by Decomposition of CaCO3 and Ca(OH)2 in Vacuum , 1980 .
[25] J. K. Rosemary,et al. Solar Energy Storage Using Reversible Hydration-Dehydration of CaO-Ca(OH)2 , 1979 .
[26] Guy Ervin,et al. Solar heat storage using chemical reactions , 1977 .
[27] T. Shirai,et al. Kinetics of drying and decomposition of calcium hydroxide , 1974 .
[28] N. Brett. An X-ray investigation of the thermal decomposition of portlandite , 1969, Mineralogical magazine.
[29] S. Brunauer,et al. Kinetics of the thermal decomposition of calcium hydroxide , 1966 .
[30] J. J. Lander. Experimental Heat Contents of SrO, BaO, CaO, BaCO3 and SrCO3 at High Temperatures. Dissociation Pressures of BaCO3 and SrCO3 , 1951 .
[31] M. E. Brown,et al. Thermal decomposition of ionic solids , 1999 .
[32] I. Barin. Thermochemical data of pure substances , 1989 .
[33] S. Sriram,et al. Thermal decomposition of doped calcium hydroxide for chemical energy storage , 1986 .
[34] I. Fujii,et al. Studies of an energy storage system by use of the reversible chemical reaction: CaO+H2O⇄Ca(OH)2 , 1985 .
[35] T. Shirai,et al. 27 Experimental investigation on a fast and exothermic solid-liquid reaction system , 1980 .
[36] P. E. Halstead,et al. 769. The thermal dissociation of calcium hydroxide , 1957 .