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Thermal Energy Storage using Phase Change Material Derived from Waste Cooking Oil:
A Case Study



Volume 5, Issue 4
Paolo Yves L. De Silos, Angelli A. Ocampo, Alyssa Mae E. Remarim

Published online:26 August 2019

Article Views: 38

Abstract

This study aims to carry out a behavioral analysis of Trickbot and propose a machine learning technique for Trickbot detection. In the current study, an analysis is conducted to reveal Trickbot behavior while its code is injected into official banking websites. Trickbot is a banking trojan designed to steal users private information. Static and dynamic analyses using different tools were performed to identify TrickBot-associated streams and detect TrickBot infection. As a result of the analysis, it is found out that its authors use web injections to banking websites to steal and access login information. In addition, the analysis revealed that Trickbot targets many international banks in many countries via web injections. It is discovered that Trickbot uses different interfaces and files to replicate itself. The findings of this study could be used to deal with these attacks efficiently and prevent them in the future.

Reference

  1. G. P. Berera. (2016) Thermal energy storage systems stearic/lauric acid mixtures as phase change materials. [Online]. Available: https://bit.ly/2zhrTyT
  2. IRENA. (2016) Thermal energy storage: Technology brief. [Online]. Available: https://bit.ly/2We6vUn
  3. S. Sarkar and V. Ilango, “Improvement of fuel cell performance by application of carbon nanotubes,” International Journal of Technology and Engineering Studies, vol. 2, no. 6, pp. 180–184, 2016. doi: https://doi.org/10.20469/ijtes.2.40003-6
  4. Cryopak. (2016) Phase change materials. [Online]. Available: https://bit.ly/2YKorYu
  5. T. Hasenohrl. (2009) An introduction to phase change materials as heat storage mediums. [Online]. Available: https://bit.ly/3fudyQf
  6. S. W. Adkins, M. Foale, and Y. Samosir, Eds., Coconut revival – new possibilities for the tree of life, Cairns, Australia, 2005.
  7. Malaysian Palm Oil Council. (2012) Oils & fats scenario in the Philippines. [Online]. Available: https://bit.ly/35HBRWE
  8. Global Industry Analysts, “Advanced phase change materials (pcm): A global strategic business report,” Tech. Rep., 2015. [Online]. Available: https://bit.ly/3drjJ5I
  9. J. Kosny, N. Shukla, and A. Fallahi, “Cost analysisof simple phase change material-enhanced building envelopes in southern US climates,” US Department of Energy, Cambridge, MA, Report no. DOE/GO-102013-36926076, 2013.
  10. E. S. Mettawee and A. Ead, “Energy saving in building with latent heat storage,” International Journal of Thermal & Environmental Engineering, vol. 5, no. 1, pp. 21–30, 2013.
  11. A. Kacharia. (2012) Bleaching and bleaching processes. [Online]. Available: https://bit.ly/3fwOR5S
  12. S. M. Silva, K. A. Sampaio, R. Ceriani, R. Verhé,C. Stevens, W. D. Greyt, and A. J. Meirelles, “Adsorption of carotenes and phosphorus from palm oil onto acid activated bleaching earth: Equilibrium, kinetics and thermodynamics,” Journal of Food Engineering, vol. 118, no. 4, pp. 341–349, 2013. doi: https://doi.org/10.1016/j.jfoodeng.2013.04.026
  13. R. Berbesi, D. Brooks, and A. S. Hodgson. Optimization of bleaching process. [Online]. Available: https://bit.ly/2YLEqoP
  14. W. Greyt. (2014) Deodorization. [Online]. Available: https://bit.ly/2WfiHEn
  15. Ecology and Combustion. (2016) Deodorizing equipment. [Online]. Available: https://bit.ly/2YLbsWq
  16. Y. Wong and H. Hartina, “Virgin coconut oil production by centrifugation method,” Oriental Journal of Chemistry, vol. 30, no. 1, pp. 237–245, 2014. doi: https://doi.org/10.13005/ojc/300129
  17. N. T. Nguyen, “Optimization of biodiesel production plants chemical and biomolecular engineering,” University of Nebraska, Lincoln, USA, Unpublished doctoral dissertation, 2012.
  18. F. O. Nitbani, Jumina, D. Siswanta, and E. N. Solikhah, “Isolation and antibacterial activity test of lauric acid from crude coconut oil (cocos nucifera l.),” Procedia Chemistry, vol. 18, pp. 132–140, 2016. doi: https://doi.org/10.1016/j.proche.2016.01.021
  19. European Biofuels Technology Platform. (2011) Fatty acid methyl esters. [Online]. Available: https://bit.ly/3bcaxRq
  20. P. C. Narvaez, S. M. Rincon, L. Z. Castaneda, and F. J. Sanchez, “Determination of some physical and transport properties of palm oil and of its methyl esters,” Latin American Applied Research, vol. 38, no. 1, pp. 1–10, 2008.
  21. M. J. Pratas, S. Freitas, M. B. Oliveira, S. C. Monteiro, A. S. Lima, and J. A. Coutinho, “Densities and viscosities of fatty acid methyl and ethyl esters,” Journal of Chemical & Engineering Data, vol. 55, no. 9, pp. 3983–3990, 2010.
  22. R. A. Perkins and M. L. Huber, “Measurement and correlation of the thermal conductivities of biodiesel constituent fluids: Methyl oleate and methyl linoleate,” Energy & Fuels, vol. 25, no. 5, pp. 2383–2388, 2011. doi: https://doi.org/10.1021/ef200417x
  23. M. H. Joshipura and R. J. Patel, “Modeling vapor pressure of fatty acid and fatty acid methyl esters using cubic equations of state,” Asia-Pacific Journal of Chemical Engineering, vol. 10, no. 2, pp. 170–177, 2014. doi: https://doi.org/10.1002/apj.1859
  24. D. R. Lide, CRC handbook of Chemistry and Physics. Boca Raton, FL: CRC Press, 2005.
  25. L. Holmes and S. Krupnick. (2012) Advanced phase change materials (PCMs): Maintain product integrity while increasing performance, operational efficiency and sustainability. [Online]. Available: https://bit.ly/2La7SNl
  26. Philippine Economic Zone Authority. (2016) Fiscal incentives to PEZA-registered economic zone enterprises. [Online]. Available: https://bit.ly/2LbPfJa

To Cite this article

P. Y. L. De Silos, A. A. Ocampo, and A. M. E. Remarim, “Thermal energy storage using phase change material derived from waste cooking oil: A case study,” International Journal of Technology and Engineering Studies, vol. 5, no. 4, pp. 129–138, 2019.



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