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首页> 外文期刊>Journal of Cleaner Production >Nano-CeO2/SiO2 as an efficient catalytic conversion of waste engine oil into liquid fuel
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Nano-CeO2/SiO2 as an efficient catalytic conversion of waste engine oil into liquid fuel

机译:纳米CeO2 / SiO2可有效地将废机油催化转化为液体燃料

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Nowadays, discard of 24 million tons used diesel engine oil per year is a significant challenge for human health and environment. Thus, waste conversion into more valuable products like fuel can be the best solution. This work covered catalytic converting the waste engine oil into fuel, gas, and char products of pyrolysis, based on multivariate experimental design. Hence, nano-CeO2/SiO2, as a catalyst, was synthesized and characterized by different analytical methods. As the main aim of this work, this efficient catalyst is used to achieve low-level sulfur fuel from inexpensive, not eco-friendly and available waste engine oil. Thus, the ability of liquid product as a successfully applicable substitute for diesel fuel was also assessed. Furthermore, the modeling and optimization of pyrolytic fuel production based on the process factors, including operating temperature, the flow rate of argon, catalyst amount and time, were conducted. The properties of pyrolytic fuel produced in the optimizing conditions (554 degrees C, 128 mL min(-1) Ar, 8.8 wt% nano-CeO2/SiO2, and 95.0 min) were compared with commercial diesel fuels as represented flash point of 49.0 2.9 degrees C, the cetane number of 42.0 1.8, and gross calorific value of 44.9 3.2 MJ kg(-1). Moreover, application of nano-CeO2/SiO2 as the catalyst caused the reduction of sulfur level contained in pyrolytic fuel from 0.9 to 0.02 wt%. As the result of this research, catalytic pyrolysis of waste engine oil by nano-CeO2/SiO2 concluded rich liquid fuel product (60.7 wt%) with low sulfur (0.02 wt%) and inorganic pollutants (0.01 wt%) as diesel fuel. (C) 2017 Elsevier Ltd. All rights reserved.
机译:如今,每年丢弃2400万吨废柴油机油是对人类健康和环境的重大挑战。因此,将废物转化成更有价值的产品(例如燃料)可能是最好的解决方案。这项工作基于多变量实验设计,涉及将废机油催化转化为热解的燃料,气体和焦炭产物。因此,合成了纳米CeO2 / SiO2作为催化剂,并通过不同的分析方法对其进行了表征。这项工作的主要目的是,使用这种高效的催化剂从廉价,不环保,可利用的废机油中获得低含量的硫燃料。因此,还评估了液体产品作为柴油的成功适用替代品的能力。此外,基于工艺因素,包括操作温度,氩气流量,催化剂数量和时间,对热解燃料生产进行了建模和优化。在优化条件下(554℃,128 mL min(-1)Ar,8.8 wt%的纳米CeO2 / SiO2和95.0 min)生产的热解燃料的性质与商用柴油进行了比较,其闪点表示为49.0 2.9摄氏度,十六烷值42.0 1.8和总热值44.9 3.2 MJ kg(-1)。此外,使用纳米CeO2 / SiO2作为催化剂导致热解燃料中所含的硫含量从0.9重量%降低至0.02重量%。这项研究的结果是,纳米CeO2 / SiO2催化热解废机油得出了丰富的液体燃料产品(60.7 wt%),其中低硫(0.02 wt%)和无机污染物(0.01 wt%)作为柴油。 (C)2017 Elsevier Ltd.保留所有权利。

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