Catalytic pyrolysis of waste polypropylene using Ahoko kaolin from Nigeria

Applied Petrochemical Research - Tập 8 Số 4 - Trang 203-210 - 2018
Ibrahim Gbolahan Hakeem1, F. Aberuagba1, Umaru Musa1
1Department of Chemical Engineering, Federal University of Technology, P.M.B. 65, Minna, Nigeria

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Tursunov O (2014) A comparison of catalysts zeolite and calcined dolomite for gas production from pyrolysis of municipal solid waste (MSW). Ecol Eng 69:237–243

Bulushev DA, Ross JR (2011) Catalysis for conversion of biomass to fuels via pyrolysis and gasification: a review. Catal Today 171:1–13

Ates F, Norbert M, Nikolett B (2013) Comparison of real waste (MSW and MPW) pyrolysis in batch reactor over different catalysts. Part I: product yields, gas and pyrolysis oil properties. Biores Technol 133:443–454

Khaing TK, Chaw SS (2015) Effects of various catalysts on fuel oil pyrolysis process of mixed plastic wastes. Int J Adv Eng Technol 8(5):794–802

UNEP (2010) Training module for the assesment of plastic waste. International Environmental Technology Centre, Osaka

Panda AK, Singh RK (2011) Catalytic performances of kaoline and silica alumina in the thermal degradation of polypropylene. J Fuel Chem Technol 39(3):198–202

Satyendra ST, Krishna KK, Suresh PS (2013) Low cost catalyst synthesized from coal fly-ash for regaining liquid fuel from HDPE and its kinetic analysis. Int J Chem Petrochem Technol (IJCPT) 3(2):31–40

Sonawane Y, Shindikar M, Khaladkar M (2015) Use of catalyst in pyrolysis of polypropylene waste into liquid fuel. Int Res J Environ Sci 4(7):24–28

Na J-G, Jeong B-H, Seong-Soo Kion SH (2006) Pyrolysis of low density polyethylene using sunthetic catalyst produced from fly ash. J Mater Cycles Waste Manag 8:126–132

Xiao X, Le D, Li L, Meng XC, Morishita K, Takarada T (2010) Catalytic steam gasification of biomass in fluidized bed at low temperature: conversion from livestock manure compost to hydrogen-reach syngas. Biomass Bioenergy 34:1505–1512

Jung S, Cho M, Kang B, Kim J (2010) Pyrolysis of a fraction of waste polypropylene and polyethylene for the recovery of BTX aromatics using a fluidized bed reactor. Fuel Process Technol 91:277–284

Dimitris S, Achilias LA (2014) Recent advances in the chemical recycling of polymers (PP, PS, LDPE, HDPE, PVC, PC, Nylon, PMMA). Mater Recycl Trends Perspect 3:64

Weibing D, Jing L, Larry LA (2014) Hydrocracking of waste plastics to clean liquid fuels. University of Utah, Department of Chemical and Fuels Engineering. Salt Lake City, UT 841 12: 3290 ME9

Panda AK, Singh RK (2013) Optimization of process parameters by Taguchi method: catalytic degradation of polypropylene to liquid fuel. Int J Multidiscip Curr Res 4:50–54

Kovo AS (2008) Development of zeolite X and Y from Ahoko Nigerian Kaolin. PhD first year report, Chemical Engineering Department, The University of Manchester, United Kingdom

Panda AK, Singh RK (2013) Experimental optimization of process for the thermocatalytic degradation of waste polypropylene to liquid fuel. J Adv Energy Eng 1(3):74–84

Gao F (2010) Pyrolysis of waste plastics into fuels. Canterbury Publisher, University of Canterbury, New Zealand

Sharma BK, Moser BR, Vermillion KE, Doll KM, Rajagopalan N (2014) Production, characterization and fuel properties of alternative diesel fuel from pyrolysis of waste plastic grocery bags. J Fuel Process 122:79–90

Panda AK (2011) Studies on process optimization for production of liquid fuels from waste plastics; a thesis submitted in partial fulfilment for the award of the degree of doctorate of philosophy in chemical engineering. Chemical Engineering Department, National Institute of Technology Rourkela, Rourkela

Mi-Jin J, Suek Joo C, Kyung-Seun Y, Changkook R, Sung Hoon P, Jong M, Jong-Ki J, Young-Kwon P, Seungdo K (2011) Copyrolysis of block polypropylene with waste wood chip. Korean J Chem Eng 28(2):497–501. https://doi.org/10.1007/s11814-010-0497-8

Rui X, Baosheng J, Hongcang Z, Zhaoping Z, Mingyao Z (2006) Air gasification of polypropylene plastic waste in fluidized bed gasifier. Key Laboratory of Clean Coal Power Generation and Combustion Technology 9:778–786

Panda AK, Singh RK, Mishra DK (2010) Thermolysis of waste plastics to liquid fuel: a suitable method for plastic waste management and manufacture of value added products—a world prospective. Renew Sustain Energy Rev 14(1):233–248

Aroke UO, El-Nafty UA (2014) XRF, XRD and FTIR properties and characterization of HDTMA-Br surface modified Organo-Kaolinite clay. Int J Emerg Technol Adv Eng 4(4):817–825

Bilal S, Mohammed-Dabo IA, Nuhu M, Kasim SA, Almustapha I, Yamusa YA (2013) Production of biolubricant from Jatropha curcas seed oil. J Chem Eng Mater Sci 4(6):72–79

Kumar S, Singh R (2013) Thermolysis of high-density polyethylene to petroleum products. J Petrol Eng 2013:987568

Kumar S, Panda AK, Singh RK (2011) A review on tertiary recycling of high density polyethylene to fuel. Resour Conserv Recycl 55:893–910

Musa U, Mohammed IA, Sadiq MM, Aberuagba F, Olurinde AO, Obamina R (2015) Synthesis and characterization of trimethylolpropane-based biolubricants from castor oil. In: Proceedings of the 45th annual conference of NSCHE, Warri, Nigeria, 5–7 November 2015

Kuye A, Ahiekpor J, Achaw OW (2016) Fast pyrolysis of NigerFia Danta Hardwood (Nesogordomna papaverifera) and Obeche Softwood (Triplochiton scleroxylon) Sawdust. Petrol Technol Dev J 6(7):72–81

Ituen E, Ijioma C (2012) Fuel properties of palm oil biodiesel and its blends with diesel. J Mater Resour 7(1&2):38–48

Coates J (2000) In: Meyers R (ed) Interpretation of infrared spectra, a practical approach. John Wiley & Sons Ltd, Chichester

Sarker M, Rashid MM, Molla M, Rahman MS (2012) A new technology proposed to recycle waste plastics into hydrocarbon fuel in USA. Int J Energy Environ (IJEE) 3(5):23–34

Sumitava K, Dignagar HSJ (2015) Institution of Student of Science. http://www.quora.com How do you identify petrol diesel and kereosene if they are kept in three containers. Answered 09 Nov 2015