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[1] Sarbu, I., Sebarchievici, C. (2018). A comprehensive Review of Thermal Energy Storage. Sustainability. 10 (191), 1-32. https://doi.org/10.3390/su10010191. Search in Google Scholar

[2] Tyagi, V.V., Buddhi, D. (2007). PCM thermal storage in buildings: A state of art. Renewable and Sustainable Energy Reviews. 11, 1146-1166. https://doi.org/10.1016/j.rser.2005.10.002. Search in Google Scholar

[3] Fabiani, C., Pisello, A.L., Barbanera, M., Cabeza, L.F. (2020). Palm oil-based bio-PCM for energy efficient building applications: Multiporpuse thermal investigation and life cycle assessment. Journal of Energy Storage. 28, 101129. https://doi.org/10.1016/j.est.2019.101129 Search in Google Scholar

[4] Saleel, A.C. (2022). A review on the use of coconut oil as an organic phase change material with its melting process, heat transfer, and energy storage characteristics. Journal of Thermal Analysis and Calorimetry. 147, 4451-4472. https://doi.org/10.1007/s10973-021-10839-7 Search in Google Scholar

[5] Khan, Z., Khan, Z., Ghafoor, A. (2016). A review of performance enhancement of PCM based latent heat storage system within the context of materials, thermal stability and compatibility. Energy Conversion and Management. 115, 132-158. https://doi.org/10.1016/j.enconman.2016.02.045 Search in Google Scholar

[6] Ostrý, M., Bantová, S., Struhala, K. (2019). Tests on Material Compatibility of Phase Change Materials and Selected Plastics. Molecules. 24 (7), 1398. https://doi.org/10.3390/molecules24071398 Search in Google Scholar

[7] Lázaro, A., Zalba, B., Bobi, M., Castellón, C., Cabeza, L.F. (2005). Experimental study on phase change materials and plastics compatibility. Environmental and Energy Engineering. 52 (5), 804-808. https://doi.org/10.1002/aic.10643 Search in Google Scholar

[8] Castellón, C., Martorell, I., Cabeza, L.F., Fernández, A.I., Manich, A.M. (2011). Compatibility of plastic with phase change materials (PCM). International Journal of Energy Research. 35, 765-771. https://doi.org/10.1002/er.1723 Search in Google Scholar

[9] Putri, W.A., Fahmi, Z., Sutjahja, I.M., Kurnia, D., Wonorahardjo, S. (2016). Thermophysical parameters of coconut oil and its potential application as the thermal energy storage system in Indonesia. Journal of Physics: Conference Series. 739, 012065. doi:10.1088/1742-6596/739/1/012065 Search in Google Scholar

[10] Wonorahardjo, S., Sutjahja, I.M., Kurnia, D., Fahmi, Z., Putri, W.A. (2018). Potential of Thermal Energy Storage Using Coconut Oil for Air Temperature Control. Buildings. 8, 95. https://doi.org/10.3390/buildings8080095 Search in Google Scholar

[11] ASTM G1 - 03 Standard Practice for Preparing, Cleaning, and Evaluating Corrosion Test Specimens. Available online: http://materialstandard.com/astm-g/ (accessed on September 10th, 2021) Search in Google Scholar

[12] ISO 175 (2010) Plastics - Methods of test for the determination of the effect of immersion in liquid chemicals Search in Google Scholar

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