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Catalytic pyrolysis of waste oil into hydrocarbon fuel utilizing cerium oxide catalyst

机译:利用氧化铈催化剂催化废油热解为烃类燃料

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摘要

The depletion of fossil fuels has prompted research into alternative fuels made from regeneration of waste materials. Pyrolysis is a method of converting waste oil into valuable products, such as char, gas, and fuel. This study presents the catalytic pyrolysis of waste oil for producing fuel utilizing cerium oxide, CeO2/Al2O3 and zinc oxide, ZnO/Al2O3 catalyst. The catalyst and oil were characterized using several characterization techniques to find the physicochemical properties of the catalyst and oil. The optimum condition for catalytic pyrolysis was a reaction temperature at 500 degrees C, with the heating rate at 10 degrees C/min, utilizing CeO2/Al2O3 catalyst calcined at 700 degrees C. The catalytic pyrolysis successfully converted the waste oil into fuel and the oil product obtained was 93.01 wt with a high calorific value (54.2 MJ/kg). The pyrolysis oil is comprised of aliphatic hydrocarbon (C-5-C-15 hydrocarbon) that is within the hydrocarbon range for gasoline and diesel. The oil product was also detected to have a low content of oxygen (3.07 wt) and sulfur (0.60 wt), indicating its potential to serve as a cleaner, fuel reducing the sulfur dioxide, SOX formation. The results reveal that pyrolysis reactors have the ability to convert waste oil into hydrocarbon fuel.
机译:化石燃料的枯竭促使人们研究由废料再生制成的替代燃料。热解是一种将废油转化为有价值的产品的方法,例如焦炭、天然气和燃料。本文介绍了利用氧化铈、CeO2/Al2O3和氧化锌、ZnO/Al2O3催化剂催化热解废油生产燃料的方法。采用多种表征技术对催化剂和油进行了表征,以发现催化剂和油的理化性质。催化热解的最佳条件是反应温度为500°C,升温速率为10°C/min,采用CeO2/Al2O3催化剂在700°C煅烧。催化热解成功将废油转化为燃料,得到的油品为93.01 wt%,热值高(54.2 MJ/kg)。热解油由脂肪族烃(C-5-C-15烃)组成,在汽油和柴油的烃类范围内。还检测到该油产品具有低含量的氧(3.07wt%)和硫(0.60wt%),表明其有可能作为减少二氧化硫和SOX形成的清洁燃料。结果表明,热解反应器具有将废油转化为碳氢化合物燃料的能力。

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