Catalytic pyrolysis of waste polypropylene using Ahoko kaolin from Nigeria

Ibrahim Gbolahan Hakeem, Folorunsho Aberuagba, Umaru Musa
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引用次数: 44

Abstract

The aim of this study is to convert polypropylene waste into usable liquid fuel via pyrolysis technique using kaolin as a low-cost catalyst. Waste polypropylene was thermally and catalytically degraded in a chemical vapour deposition (CVD) horizontal glass reactor at a temperature of 450?°C, residence time of 30?min, and heating rate of 30?°C/min. The kaolin clay was characterized by XRF analysis while the ultimate and proximate analysis of the polypropylene feed carried out gave combustible materials content of 93.77?wt%, fixed carbon of 1.62?wt%, calorific value of 45.20?MJ/kg and elemental composition with carbon (83.65%), hydrogen (14.27%), oxygen (0.15%), sulphur (0.1%), chlorine (1.16%), and nitrogen (0.67%). Thermal cracking was carried out in the absence of catalyst and the process gave a yield of liquid, gaseous, and solid products of 67.48, 8.85, and 23.67?wt%, respectively. Furthermore, kaolin clay was employed as a catalyst in catalytic pyrolysis of the same feedstock for catalyst-to-plastic ratio of 1:1, 1:2, 1:3, and 1:4 at the same operating parameters as in thermal cracking. Optimum yield was obtained at a catalyst-to-plastic ratio of 1:3 with a yield of 79.85, 1.48, and 18.67?wt% for liquid, gaseous, and solid products, respectively. The liquid products obtained for both thermal and catalytic cracking at optimum conditions were characterized for their suitability as fuel. The properties determined were density, viscosity, flash point, fire point, pour point, and calorific value. The results suggest that catalytic pyrolysis produced liquid products, whose properties are comparable to conventional fuels (gasoline and diesel oil) than that produced through thermal pyrolysis. FTIR analysis of the liquid product from catalytic pyrolysis also shows that it contains hydrocarbons with different functional groups such as aromatics, olefins, carbonyl, amines, sulphides, and hydroxyl.

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利用尼日利亚Ahoko高岭土催化热解废聚丙烯
本研究的目的是利用高岭土作为低成本催化剂,通过热解技术将聚丙烯废料转化为可用的液体燃料。用化学气相沉积(CVD)卧式玻璃反应器在450℃的温度下对废旧聚丙烯进行了热催化降解。°C,停留时间30?加热速率为30°C/min。用XRF分析对高岭土进行了表征,对聚丙烯原料进行了极限和近似分析,得出可燃物含量为93.77?Wt %,固定碳1.62?Wt %,热值45.20?MJ/kg,元素组成为碳(83.65%)、氢(14.27%)、氧(0.15%)、硫(0.1%)、氯(1.16%)和氮(0.67%)。在没有催化剂的情况下进行热裂解,该过程的液体、气体和固体产物的产率分别为67.48、8.85和23.67?分别wt %。此外,在与热裂解相同的操作参数下,以高岭土为催化剂,以1:1、1:2、1:3、1:4的催化剂比进行了相同原料的催化热解。当催化剂与塑料的比例为1:3时,产率分别为79.85、1.48和18.67?分别为液体、气体和固体产物Wt %。在最佳条件下,热裂解和催化裂解得到的液体产物都适合用作燃料。测定的性能包括密度、粘度、闪点、燃点、倾点和热值。结果表明,与热热解相比,催化热解产生的液体产物的性质与常规燃料(汽油和柴油)相当。催化热解液体产物的FTIR分析也表明,它含有不同官能团的碳氢化合物,如芳烃、烯烃、羰基、胺、硫化物和羟基。
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来源期刊
Applied Petrochemical Research
Applied Petrochemical Research ENGINEERING, CHEMICAL-
自引率
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审稿时长
13 weeks
期刊介绍: Applied Petrochemical Research is a quarterly Open Access journal supported by King Abdulaziz City for Science and Technology and all the manuscripts are single-blind peer-reviewed for scientific quality and acceptance. The article-processing charge (APC) for all authors is covered by KACST. Publication of original applied research on all aspects of the petrochemical industry focusing on new and smart technologies that allow the production of value-added end products in a cost-effective way. Topics of interest include: • Review of Petrochemical Processes • Reaction Engineering • Design • Catalysis • Pilot Plant and Production Studies • Synthesis As Applied to any of the following aspects of Petrochemical Research: -Feedstock Petrochemicals: Ethylene Production, Propylene Production, Butylene Production, Aromatics Production (Benzene, Toluene, Xylene etc...), Oxygenate Production (Methanol, Ethanol, Propanol etc…), Paraffins and Waxes. -Petrochemical Refining Processes: Cracking (Steam Cracking, Hydrocracking, Fluid Catalytic Cracking), Reforming and Aromatisation, Isomerisation Processes, Dimerization and Polymerization, Aromatic Alkylation, Oxidation Processes, Hydrogenation and Dehydrogenation. -Products: Polymers and Plastics, Lubricants, Speciality and Fine Chemicals (Adhesives, Fragrances, Flavours etc...), Fibres, Pharmaceuticals.
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