H-USY催化剂在废食用油催化裂化生产生物燃料中的作用

R. Rosmawati, S. Arita, L. Komariah, N. Nazarudin, O. Alfernando
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引用次数: 3

摘要

石油危机是由自然界石油资源供应的减少引起的。这种现象鼓励研究人员继续寻找从其他资源中生产能源的过程和方法。其中一种方法是从废物中生产可利用的能源,包括将废食用油转化为生物燃料。这种方法不仅可以提供可再生能源,而且还有助于解决家庭垃圾问题。废食用油生产生物燃料的工艺是催化裂化,预处理后的废食用油在H-USY催化剂的催化下在流动反应器中转化为生物燃料。本研究选用的反应温度为400℃、450℃、500℃、550℃,反应时间为30、45、60分钟,废食用油用量与催化剂用量的质量比为40:1 (w/w)。液体生物燃料产品收率最高,为60.98%。H-USY催化剂的应用表明,在450℃催化裂解45 min的废食用油过程中,生物燃料组分分布为柴油产物(c17 - c20)的28.02%、汽油(c6 - c12)的23.96%和重油(c20 >)的7.78%。
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The Effect of H-USY Catalyst in Catalytic Cracking of Waste Cooking Oil to Produce Biofuel
The crisis in petroleum is caused by the diminishing supply of petroleum resources from nature. This phenomenon encourages researchers to continue to look for processes and methods to produce energy from other resources. One of these ways is to produce energy that can be utilized from waste, including converting waste cooking oil into biofuel. This method not only could provide a source of renewable energy, but also help resolve the issue of household waste. The process used to produce biofuel from waste cooking oil is by catalytic cracking, where waste cooking oil after pretreatment is converted into biofuel in the flow reactor with H-USY catalyst. In this research, the reaction temperatures used are 400 °C, 450 °C, 500 °C and 550 °C and reaction times are 30, 45 and 60 minutes with the mass ratio of the amount of waste cooking oil to the amount of catalyst used is 40:1 (w/w). The highest yield of liquid biofuel product was obtained at 60.98%. The use of H-USY catalyst shows that the distribution of components contained in biofuel are 28.02% of diesel products (C 17 -C 20 ), 23.96% of gasoline (C 6 –C 12 ) and 7.78% of Heavy oil (C 20 >) in catalytic cracking of waste cooking oil with a reaction time of 45 minutes at a temperature of 450 °C.
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