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Original Articles

Gasoline-like Fuel from Waste Engine Oil via Catalytic Pyrolysis

Pages 1433-1441 | Published online: 17 Jun 2008

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (6)

Seyed Emadeddin Alavi, Mohammad Ali Abdoli, Farhad Khorasheh, Farzad Nezhadbahadori & Abdolmajid Bayandori Moghaddam. (2020) Nanomaterial-assisted pyrolysis of used lubricating oil and fuel recovery. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 0:0, pages 1-15.
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Sharmiladevi Nagenderan, Prabhu Rajamamundi, Mohanraj Chandran & K. P. Gopinath. (2020) Bioethanol from moringa olefira and pithecellobium dulce leafs: Production and characterization. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 42:1, pages 66-72.
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Wei Long, Liguang Zheng & Wei Chan Xie. (2019) Pyrolysis of used motor oil for production of diesel fuel. Petroleum Science and Technology 37:4, pages 369-373.
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Ayhan Demirbas, Basil Omar Al-Sasi & Abdul-Sattar Nizami. (2016) Conversion of waste tires to liquid products via sodium carbonate catalytic pyrolysis. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 38:16, pages 2487-2493.
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A. Demirbas. (2015) Recovery of Gasoline and Diesel Range Hydrocarbons From Waste Vegetable Oils. Petroleum Science and Technology 33:19, pages 1703-1711.
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H. F. Öztop, Y. Varol, Ş. Altun & M. Firat. (2014) Using Gasoline-like Fuel Obtained from Waste Automobile Tires in a Spark-ignited Engine. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 36:13, pages 1468-1475.
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Articles from other publishers (21)

Rakesh Narayana Sarma & Ravikrishnan Vinu. (2023) An assessment of sustainability metrics for waste-to-liquid fuel pathways for a low carbon circular economy. Energy Nexus 12, pages 100254.
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Deodatus Kazawadi, Justin Ntalikwa & Godlisten Kombe. (2023) Co-production of organic oil phase (OP) and adsorption biochar from cashew nut shells: modeling and optimization of intermediate pyrolysis process. Biomass Conversion and Biorefinery.
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A. Nissar, M. Hanief & F. Q. Mir. (2023) Critical retrospection and evaluation of waste engine oil recycling methods. International Journal of Energy and Water Resources.
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Linlin Xu, Jie Yu, Gan Wan & Lushi Sun. (2023) Pahs emission characteristics and the mitigation in the valuable products from used mineral oil thermolysis recycling. Fuel 332, pages 126134.
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Pramod N. Belkhode, Vinod N. Ganvir, Anand C. Shende & Sagar D. Shelare. (2022) Utilization of waste transformer oil as a fuel in diesel engine. Materials Today: Proceedings 49, pages 262-268.
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Asmita Mishra, Hammad Siddiqi, Usha Kumari, Ipsita Dipamitra Behera, Subhrajit Mukherjee & B.C. Meikap. (2021) Pyrolysis of waste lubricating oil/waste motor oil to generate high-grade fuel oil: A comprehensive review. Renewable and Sustainable Energy Reviews 150, pages 111446.
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Sajid Muhbat, Muhammad Tufail & Saud Hashmi. (2021) Production of diesel-like fuel by co-pyrolysis of waste lubricating oil and waste cooking oil. Biomass Conversion and Biorefinery.
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A. Santhoshkumar, R. Muthu Dinesh Kumar, D. Babu, Vinoth Thangarasu & R. Anand. 2019. Pollutants from Energy Sources. Pollutants from Energy Sources 189 251 .
Bülent Özdalyan & Recep Orman. (2018) Experimental Investigation of the Use of Waste Mineral Oils as a Fuel with Organic-Based Mn Additive. Energies 11:6, pages 1512.
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Imtiaz Ahmad, Sayed Muhammad Sohail, Hizbullah Khan, Waqas Ahmad, Kashif Gul, Razia Khan & Aftab Yasin. (2018) Study on Atmospheric Distillation of Some Plain and Chemically Dispersed Crude Oils: Comparison of Yields and Fuel Quality of Distillate Fractions. Energy & Fuels 32:1, pages 181-190.
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Imtiaz Ahmad, Razia Khan, Mohammad Ishaq, Hizbullah Khan, M. Ismail, Kashif Gul & Waqas Ahmad. (2016) Valorization of spent lubricant engine oil via catalytic pyrolysis: Influence of barium-strontium ferrite on product distribution and composition. Journal of Analytical and Applied Pyrolysis 122, pages 131-141.
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Jing-Yuan WangLei ZhaoXiaolong SunZhonghui WangLin WangShengxuan Lin. 2016. Sustainable Solid Waste Management. Sustainable Solid Waste Management 95 126 .
Razia Khan, Imtiaz Ahmad, Hizbullah Khan, Mohammad Ismail, Kashif Gul, Aftab Yasin & Waqas Ahmad. (2016) Production of diesel-like fuel from spent engine oil by catalytic pyrolysis over natural magnetite. Journal of Analytical and Applied Pyrolysis 120, pages 493-500.
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Imtiaz Ahmad, Razia Khan, Mohammad Ishaq, Hizbullah Khan, Mohammad Ismail, Kashif Gul & Waqas Ahmad. (2016) Production of Lighter Fuels from Spent Lubricating Oil via Pyrolysis over Barium-Substituted Spinel Ferrite. Energy & Fuels 30:6, pages 4781-4789.
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. 2016. Thermochemical Waste Treatment. Thermochemical Waste Treatment 221 256 .
Imtiaz Ahmad, Razia Khan, Mohammad Ishaq, Hizbullah Khan, M. Ismail, Kashif Gul & Waqas Ahmad. (2015) Catalytic Pyrolysis of Used Engine Oil over Coal Ash into Fuel-like Products. Energy & Fuels 30:1, pages 204-218.
Crossref
Su Shiung Lam, Rock Keey Liew, Ahmad Jusoh, Cheng Tung Chong, Farid Nasir Ani & Howard A. Chase. (2016) Progress in waste oil to sustainable energy, with emphasis on pyrolysis techniques. Renewable and Sustainable Energy Reviews 53, pages 741-753.
Crossref
Anand Kumar Tripathi, Deepak K. Ojha & R. Vinu. (2015) Selective production of valuable hydrocarbons from waste motorbike engine oils via catalytic fast pyrolysis using zeolites. Journal of Analytical and Applied Pyrolysis 114, pages 281-292.
Crossref
Su Shiung Lam & Howard A. Chase. (2012) A Review on Waste to Energy Processes Using Microwave Pyrolysis. Energies 5:10, pages 4209-4232.
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Su Shiung Lam, Alan D. Russell, Chern Leing Lee & Howard A. Chase. (2012) Microwave-heated pyrolysis of waste automotive engine oil: Influence of operation parameters on the yield, composition, and fuel properties of pyrolysis oil. Fuel 92:1, pages 327-339.
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Ejae John & Kamel Singh. 2011. The Biofuels Handbook. The Biofuels Handbook 337 407 .

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