Experimental Approaches to Improve Thermal Stability of Organic Phase Change Properties
- 1 Faculty of Engineering, Materials Department, AlBalq’a Applied University (BAU), Salt, Jordan
Abstract
This study investigates the thermal behavior of Polyolefin containing Paraffin and Nano Hydrated aluminum silicate Al2Si2O5 (OH) 4 (Kaolin) particles to enhance store energy at ambient temperature. The hybrid Nano composite is based on polyolefin PE as a matrix, whereby paraffin wax and Kaolin were hot blended at varying concentrations. In addition Carbon Nanotube (CNTs) was added in different relative low concentrations to improve the thermal transition among the polymer matrix, since polymer domains are considered as isolator. The composite was prepared by melt mixing using a Brabender Plasrograph and a Two Role Mill. Thermal properties of the composite were determined using DSC and Melt flow Index. Because TES materials are subjected to melting and freezing during life time, multiple extrusion tests to simulate the degradation process of the composite were carried out. FTIR was applied to determine the degradation effect and investigate microstructure changes of the composite. The results obtained demonstrate that the blend shows a tendency to be thermally active at low temperatures. DSC tests evidenced a decrease in melt tempera-ture as a result of increasing Kaolin content and some changes in the latent heat of the compound.
- Zalba, B., Marin, J.M., Cabeza, L.F. and Mehling, H. (2003) Review on Thermal Energy Storage with Phase Change: Materials, Heat Transfer Analysis and Applications. Applied Thermal Engineering, 23, 251. https://doi.org/10.1016/S1359-4311(02)00192-8
- Farid, M.M., Khudhair, A.M., Razack, S.A. and Al-Hallaj, S. (2004) A Review on Phase Change Energy Storage: Materials and Applications. Energy Conversion and Management, 45, 1597. https://doi.org/10.1016/j.enconman.2003.09.015
- Zhang, P., Xia, L. and Wang, R.Z. (2011) The Thermal Response of Heat Storage System with Paraffin and Paraffin/Expanded Graphite Composite for Hot Water Supply. World Renewable Energy Congress—Electronic Conference Proceedings, Linkoping, 8-13 May 2011, 57. https://doi.org/10.3384/ecp11057756
- Baylin, F. (1979) Low Temperature Thermal Energy Storage: A State of the Art Survey. Report No. SERI/RR/-54-164. Solar Energy Research Institute, Golden.
- Dorigato, A., Canclini, P., Unterberger, S.H. and Pegoretti, A. (2017) Phase Changing Nanocomposites for Low Temperature Thermal Energy Storage and Release. eXPRESS Polymer Letters, 11, 738-752. https://doi.org/10.3144/expresspolymlett.2017.71
- Shankar Narayanan, S. (2017) Development of Sunlight-Driven Eutectic Phase Change Material Nanocomposite for Applications in Solar Water Heating. Resource-Efficient Technologies, 3, 272-279.
- Fredi, G. and Dorigato, A. (2017) Wax Confinement with Carbon Nanotubes for Phase Changing Epoxy Blends. Polymers, 9, 405. https://doi.org/10.3390/polym9090405
- Al Rolaid, A., Anagreha, N., A-L Addousb, M. and Massadeha, S. (2013) Crystallization Behavior of iPP/LLDPE Blend Filled with Nano Kaolin Particles. Jordan Journal of Mechanical and Industrial Engineering, 7, 35-39.
- Al Rolaid, A. (2009) Synergistic Effect of TNPP and Carbon Black in Weathered XLPE Low and Medium Voltage Cable. European Polymer (EPF09) Conference, Graz, July 2009.
- Kosny, J., Shukla, N. and Fallahi, A. (2013) Report; Energy Efficiency and Renewable Energy. US Departement of Energy, Washington DC.
- Lingayat, A.B. and Suple, Y.R. (2013) A Review on Phase Change Material in Thermal Energy Storage Medium. International Journal of Engineering Research and Applications (IJERA), 3, 916-921.
- Kohl, M., Meir, M.G., Papillon, P., Wallner, G.M. and Saile, S. (2012) Polymeric Materials for Solar Thermal Applications, First Edition. Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim. https://doi.org/10.1002/9783527659609