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Research Article

Recovery of Hydrocarbon Fuel from Mixture of Municipal Waste Plastics Using Catalyst

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Pages 252-263 | Received 15 Feb 2018, Accepted 14 May 2020, Published online: 07 Jun 2020

References

  • Achilias, D., C. Roupakias, P. Megalokonomos, A. Lappas, and Ε. Antonakou. 2007. “Chemical Recycling of Plastic Wastes Made from Polyethylene (LDPE and HDPE) and Polypropylene (PP).” Journal of Hazardous Materials 149 (3): 536–542. doi:10.1016/j.jhazmat.2007.06.076.
  • Aguado, J., and D. P. Serrano. 1999. Feedstock Recycling of Plastic Wastes. Royal society of chemistry Vol -1.
  • Ahmad, I., M. I. Khan, H. Khan, M. Ishaq, R. Tariq, K. Gul, and W. Ahmad. 2015. “Pyrolysis Study of Polypropylene and Polyethylene into Premium Oil Products.” International Journal of Green Energy 12 (7): 663–671. doi:10.1080/15435075.2014.880146.
  • Al-Salem, S., A. Antelava, A. Constantinou, G. Manos, and A. Dutta. 2017. “A Review on Thermal and Catalytic Pyrolysis of Plastic Solid Waste (PSW).” Journal of Environmental Management 197: 177–198. doi:10.1016/j.jenvman.2017.03.084.
  • Al-Salem, S., P. Lettieri, and J. Baeyens. 2009. “Recycling and Recovery Routes of Plastic Solid Waste (PSW): A Review.” Waste Management 29 (10): 2625–2643. doi:10.1016/j.wasman.2009.06.004.
  • Anene, A., S. Fredriksen, K. Sætre, and L.-A. Tokheim. 2018. “Experimental Study of Thermal and Catalytic Pyrolysis of Plastic Waste Components.” Sustainability 10 (11): 3979. doi:10.3390/su10113979.
  • Arandes, J. M., I. Abajo, D. Lopez-Valerio, I. Fernández, M. J. Azkoiti, M. Olazar, and J. Bilbao. 1997. “Transformation of Several Plastic Wastes into Fuels by Catalytic Cracking.” Industrial & Engineering Chemistry Research 36 (11): 4523–4529. doi:10.1021/ie970096e.
  • Auxilio, A. R., W.-L. Choo, I. Kohli, S. C. Srivatsa, and S. Bhattacharya. 2017. “An Experimental Study on Thermo-catalytic Pyrolysis of Plastic Waste Using a Continuous Pyrolyser.” Waste Management 67: 143–154. doi:10.1016/j.wasman.2017.05.011.
  • Bajus, M., and E. Hájeková. 2010. “Thermal Cracking of the Model Seven Components Mixed Plastics into Oils/waxes.” Petroleum & Coal 52: 3.
  • Borsodi, N., N. Miskolczi, A. Angyal, L. Bartha, J. Kohán, and A. Lengyel 2011. “Hydrocarbons Obtained by Pyrolysis of Contaminated Waste Plastics.” Paper presented at the 45th International Petroleum Conference. Bratislava, Slovak Republic.
  • Brandrup, J., M. Bittner, and W. Michaeli. 1996. Recycling and Recovery of Plastics. HanserVerlag.Publisher
  • Burger, J. L., J. A. Widegren, T. M. Lovestead, and T. J. Bruno. 2015. “1H and 13C NMR Analysis of Gas Turbine Fuels as Applied to the Advanced Distillation Curve Method.” Energy & Fuels 29 (8): 4874–4885.
  • Das, P., and P. Tiwari. 2018. “Valorization of Packaging Plastic Waste by Slow Pyrolysis.” Resources, Conservation and Recycling 128: 69–77. doi:10.1016/j.resconrec.2017.09.025.
  • Del Remedio Hernandez, M., A. Gómez, Á. N. García, J. Agulló, and A. Marcilla. 2007. “Effect of the Temperature in the Nature and Extension of the Primary and Secondary Reactions in the Thermal and HZSM-5 Catalytic Pyrolysis of HDPE.”.” Applied Catalysis A: General 317 (2): 183–194. doi:10.1016/j.apcata.2006.10.017.
  • Fernández, Y., A. Arenillas, and J. Á. Menéndez. 2011. Microwave Heating Applied to Pyrolysis. INTECH Open Access Publisher, Intech 72(2), 723-752
  • Hoornweg, D., and P. Bhada-Tata. 2012. What a Waste: A Global Review of Solid Waste Management. Vol. 15. Washington, DC: World Bank.
  • Kaminsky, W., H. Schmidt, and C. Simon 2000. “Recycling of Mixed Plastics by Pyrolysis in a Fluidised Bed.” Paper presented at the Macromolecular Symposia.
  • Kumar, P. S., M. Bharathikumar, C. Prabhakaran, S. Vijayan, and K. Ramakrishnan. 2017. “Conversion of Waste Plastics into Low-emissive Hydrocarbon Fuels through Catalytic Depolymerization in a New Laboratory Scale Batch Reactor.” International Journal of Energy and Environmental Engineering 8 (2): 167–173. doi:10.1007/s40095-015-0167-z.
  • Kwak, T.-H., S. Maken, S. Lee, J.-W. Park, B.-R. Min, and Y. D. Yoo. 2006. “Environmental Aspects of Gasification of Korean Municipal Solid Waste in a Pilot Plant.” Fuel 85 (14–15): 2012–2017. doi:10.1016/j.fuel.2006.03.012.
  • Lee, K.-H. 2009. “Thermal and Catalytic Degradation of Pyrolytic Oil from Pyrolysis of Municipal Plastic Wastes.” Journal of Analytical and Applied Pyrolysis” 85 (1–2): 372–379. doi:10.1016/j.jaap.2008.11.032.
  • Lee, K.-H. 2012. “Effects of the Types of Zeolites on Catalytic Upgrading of Pyrolysis Wax Oil.”.” Journal of Analytical and Applied Pyrolysis 94: 209–214. doi:10.1016/j.jaap.2011.12.015.
  • López, A., I. De Marco, B. Caballero, M. Laresgoiti, A. Adrados, and A. Aranzabal. 2011. “Catalytic Pyrolysis of Plastic Wastes with Two Different Types of Catalysts: ZSM-5 Zeolite and Red Mud.” Applied Catalysis B: Environmental 104 (3–4): 211–219. doi:10.1016/j.apcatb.2011.03.030.
  • Luo, G., T. Suto, S. Yasu, and K. Kato. 2000. “Catalytic Degradation of High Density Polyethylene and Polypropylene into Liquid Fuel in a Powder-particle Fluidized Bed.” Polymer Degradation and Stability 70 (1): 97–102. doi:10.1016/S0141-3910(00)00095-1.
  • Mastral, F., E. Esperanza, P. Garcıa, and M. Juste. 2002. “Pyrolysis of High-density Polyethylene in a Fluidised Bed Reactor. Influence of the Temperature and Residence Time.” Journal of Analytical and Applied Pyrolysis 63 (1): 1–15. doi:10.1016/S0165-2370(01)00137-1.
  • Miskolczi, N., L. Bartha, G. Deák, B. Jover, and D. Kallo. 2004. “Thermal and Thermo-catalytic Degradation of High-density Polyethylene Waste.” Journal of Analytical and Applied Pyrolysis 72 (2): 235–242. doi:10.1016/j.jaap.2004.07.002.
  • Onu, P., C. Vasile, S. Ciocılteu, E. Iojoiu, and H. Darie. 1999. “Thermal and Catalytic Decomposition of Polyethylene and Polypropylene.”.” Journal of Analytical and Applied Pyrolysis 49 (1–2): 145–153. doi:10.1016/S0165-2370(98)00109-0.
  • Panda, A. K., and R. Singh. 2013. “Experimental Optimization of Process for the Thermo-catalytic Degradation of Waste Polypropylene to Liquid Fuel.” Advances in Energy Engineering (AEE): 1: 3.
  • Psomopoulos, C. S., N. Chatziaras, G. C. Ioannidis, and P. Karaisas. 2014. “The Role of the New Commission’s Proposal to Minimize the Climate Impacts of Biofuel Production in Energy and Transport Sectors.”.” Fresenius Environ. Bull 23: 2687–2694.
  • Regnier, N., and B. Mortaigne. 1995. “Analysis by Pyrolysis/gas Chromatography/mass Spectrometry of Glass Fibre/vinylester Thermal Degradation Products.” Polymer Degradation and Stability 49 (3): 419–428. doi:10.1016/0141-3910(95)00129-A.
  • Sadef, Y., A. Nizami, S. Batool, M. Chaudary, O. Ouda, Z. Asam, A. Demirbas, M. Rehan, and A. Demirbas. 2016. “Waste-to-energy and Recycling Value for Developing Integrated Solid Waste Management Plan in Lahore.” Energy Sources, Part B: Economics, Planning, and Policy 11 (7): 569–579. doi:10.1080/15567249.2015.1052595.
  • Sarker, M., and M. M. Rashid. 2013. ““Waste Plastics Mixture of Polystyrene and Polypropylene into Light Grade Fuel Using Fe2O3 Catalyst.” Int. J. Renew.” Energy Technol. Res 2 (1): 17–28.
  • Sharuddin, S., F. Abnisa, W. Daud, and M. Aroua 2018 “Pyrolysis of Plastic Waste for Liquid Fuel Production as Prospective Energy Resource.” Paper presented at the IOP Conference Series: Materials Science and Engineering. Indonesia.
  • Sharuddin, S. D. A., F. Abnisa, W. M. A. W. Daud, and M. K. Aroua. 2016. “A Review on Pyrolysis of Plastic Wastes.” Energy Conversion and Management 115: 308–326. doi:10.1016/j.enconman.2016.02.037.
  • Sriningsih, W., M. G. Saerodji, W. Trisunaryanti, R. Armunanto, and I. I. Falah. 2014. “Fuel Production from LDPE Plastic Waste over Natural Zeolite Supported Ni, Ni-Mo, Co and Co-Mo Metals.” Procedia Environmental Sciences 20: 215–224. doi:10.1016/j.proenv.2014.03.028.
  • Stelmachowski, M., and K. Słowiński. 2012. “Thermal and Thermo-catalytic Conversion of Waste Polyolefins to Fuel-like Mixture of Hydrocarbons.” Chemical and Process Engineering 33 (1): 185–198. doi:10.2478/v10176-012-0016-z.
  • Syamsiro, M., H. Saptoadi, T. Norsujianto, P. Noviasri, S. Cheng, Z. Alimuddin, and K. Yoshikawa. 2014. “Fuel Oil Production from Municipal Plastic Wastes in Sequential Pyrolysis and Catalytic Reforming Reactors.” Energy Procedia 47: 180–188. doi:10.1016/j.egypro.2014.01.212.
  • Wang, J. L., and -L.-L. Wang. 2011. “Catalytic Pyrolysis of Municipal Plastic Waste to Fuel with Nickel-loaded Silica-alumina Catalysts.” Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 33 (21): 1940–1948. doi:10.1080/15567030903436814.
  • Williams, P. T., and E. A. Williams. 1999. “Fluidised Bed Pyrolysis of Low Density Polyethylene to Produce Petrochemical Feedstock.” Journal of Analytical and Applied Pyrolysis 51 (1–2): 107–126. doi:10.1016/S0165-2370(99)00011-X.
  • Wong, S., N. Ngadi, T. Abdullah, and I. Inuwa. 2015. “Current State and Future Prospects of Plastic Waste as Source of Fuel: A Review.” Renewable and Sustainable Energy Reviews 50: 1167–1180. doi:10.1016/j.rser.2015.04.063.

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