References
- Anyanwu, E.E. (2004). Review of solid adsorption refrigeration II: An overview of the principles and theory.,, 1279-1295.
- Bonaccorsi, L., Freni, A., Proverbio, E., Restuccia, G., Russo, F. (2006). Zeolite coated copper foams for heat pumping applications.,, 7-14.
- Chang, K.S., Chen, M.T., Chung, T.W. (2005). Effects of the thickness and particle size of silica gel on the heat and mass transfer performance of a silica gel-coated bed for air-conditioning adsorption system.,, 2330-2340.
- Daßler, I., Mittelbach, W. (2012). Solar cooling with adsorption chillers.,, 921-929.
- Demir, H., Mobedi, M., Ulku, S. (2008). A review on adsorption heat pump: Problems and solutions.,, 2381-2403.
- Demir, H., Mobedi, M., Ulku, S. (2011). Microcalorimetric investigation of water vapor adsorption on silica gel.,, 375-382.
- Fan, Y., Luo, L., Souyri, B. (2007). Review of solar sorption refrigeration technologies: Development and applications.,, 1758-1775.
- Freni, A., Bonaccorsi, L., Proverbio, E., Maggio, G., Restuccia, G. (2009). Zeolite synthesised on copper foam for adsorption chillers: A mathematical model.,, 402-409.
- Glueckauf, E. (1955). Theory of chromatography. Part 10. Formulae for diffusion into spheres and their application to chromatography.,, 1540-1551.
- Gwadera, M., Kupiec, K. (2015). Investigation of water vapor adsorption on silica gel grains coated on a metal pipe., in press.
- Ng, K. C., Chua, H. T., Chung, C. Y., Loke, C. H., Kashiwagi, T., Akisawa, A., Saha, B. B. (2001). Experimental investigation of the silica gel-water adsorption isotherm characteristic.,, 1631-1642.
- Rezk, A. (2012)., PhD thesis, The University of Birmingham, United Kingdom.
- Ruthven, D.M. (1984)., John Wiley & Sons, New York, Chichester, Brisbane, Toronto, Singapore. ISBN 0-471-86606-7.
- Seader, J.D., Henley, E.J. (2006).John Wiley & Sons, New York. ISBN 0-471-46480-5.
- Sharafian, A., Bahrami, M. (2014). Assessment of adsorber bed designs in waste-heat driven adsorption cooling systems for vehicle air conditioning and refrigeration.,, 440-451.
- Solmus, I., Rees, D. A. S., Yamali, C., Baker D. (2012). A two-energy equation model for dynamic heat and mass transfer in an adsorbent bed using silica gel/water pair.,, 5275-5288.
- Wang, D.C., Li, Y.H., Li, D., Xia, Y.Z., Zhang, J.P. (2010). A review on adsorption refrigeration technology and adsorption deterioration in physical adsorption systems.,, 334-353.
- Wang, L. W., Wang, R. Z., Oliveira, R. G. (2009). A review on adsorption working pairs for refrigeration.,, 518-534.
- Wu, W. D., Zhang, H., Sun, D. W. (2009). Mathematical simulation and experimental study of a modified zeolite 13X-water adsorption refrigeration module.,, 645-651.
- Wang, L., Zhu, D., Tan, Y. (1999). Heat Transfer Enhancement of the Adsorber of an Adsorption Heat Pump.,, 279-286.
- Yang, R.T. (1997)., Imperial College Press, London (Originally published: Butterworths, Boston, London, 1987). ISBN 978-1-86094-047-7.
DOI: https://doi.org/10.1515/agriceng-2016-0029 | Journal eISSN: 2449-5999 | Journal ISSN: 2083-1587
Language: English
Page range: 81 - 89
Submitted on: Sep 1, 2015
Accepted on: Nov 1, 2015
Published on: Aug 2, 2016
Published by: Polish Society of Agricultural Engineering
In partnership with: Paradigm Publishing Services
Related subjects:
© 2016 Monika Gwadera, published by Polish Society of Agricultural Engineering
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.