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Pyrolysis of Palm Oil in a Continuous Flow MicroChannel Reactor

机译:连续流动微通道反应器中棕榈油的热解

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Palm oil is considered as a potential feedstock for biofuel production in Thailand due to its property and availability. In recent years, there has been an increased attention on upgrading of palm oil to biofuels using various technologies. One of the most promising technologies is pyrolysis, in which palm oil is heated at the temperature in the range of 400 to 500 °C under oxygen-free atmosphere. In the present study, the uncoated catalyst and coated catalyst pyrolysis processes of palm oil for biofuel production in a continuous flow microchannel reactor were investigated with various catalyst types (MgO, Al_2O_3) at 400-500 °C, 2 ml/hr palm oil flow rate, and 0.1 g of catalysts. Liquid product yield, solid product yield and gaseous product yield were determined. The obtained results revealed that the high triglyceride conversion could be achieved at a short reaction time in microchannel reactor, which attributed to the enhancement of both heat and mass transfer. The pyrolysis liquid products composed of hydrocarbons, free fatty acids, and other oxygenated compounds which are the results of triglyceride cracking. Furthermore, product selectivity of palm oil pyrolysis depended on temperature and catalyst type.
机译:由于其性质和可用性,棕榈油被认为是泰国生物燃料生产的潜在原料。近年来,使用各种技术升级对棕榈油至生物燃料的提高。最有前途的技术是热解之一,其中棕榈油在无氧气氛下在400至500℃的温度下加热。在本研究中,用各种催化剂类型(MgO,Al_2O_3)在400-500℃,2mL / HR棕榈油流动中研究了用于生物燃料中的未涂覆催化剂和涂覆的生物燃料生产催化剂热解过程。速率和0.1g催化剂。确定液体产率,固体产物产率和气态产率。所得结果显示,高甘油三酯转化可以在微通道反应器中的短反应时间内实现,这归因于热量和传质。由碳氢化合物,游离脂肪酸和其他氧化化合物组成的热解液产物,这些氧化物是甘油三酯裂化的结果。此外,棕榈油热解的产品选择性依赖于温度和催化剂型。

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