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Pyrolysis oil upgrading using supercritical water, with tetralin and 1-methylnaphtalene as a baseline study

机译:使用四氢萘和1-甲基萘作为超临界水进行热解油提质

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The upgrading of pyrolysis oil to bio-fuel in high conversion was investigated using supercritical water (SCW) above 400 degrees C with the 75 mL reactor for 1 h. Tetralin and 1-methylnaphtalene provided a baseline product conversion as a good hydrogen donor and non-hydrogen donor (eventhough with much lower mass to solvent mass ratio). Experiments under SCW indicate that conversions increased with increasing pyrolysis oil to water mass ratio at high water ratio, these giving the highest products conversion of 91 wt.%, with 28 wt.% heavy oil recovered, 23 wt.% gas yield, 27 wt.% water generated and approximately 13-14 wt.% of light oil produced. Tetralin runs gave similar product conversion of 90 wt.% but with lower sample to solvent mass ratio (1:2), and 1-methylnaphtalene yielded much lower conversion 70 wt.% using the same sample to solvent mass ratio. A combination of 1-methylnaphtaleneitetralin gave the same feedstock conversion (90 wt.%), suggesting that only a small amount of hydrogen needed to produce high conversion. The oxygen contents of the heavy oil recovered were 16% for SCW, with H/C atomic ratios of 1.1. The heating value of upgraded oil was increased to 33 MJ/kg compared to 18.5 MJ/kg of initial pyrolysis oil. The heavy oil with similar product conversion (90 wt.%) using tetralin and much lower solvent to oil ratios had slightly lower oxygen content (14%), and the H content was increased from 7.0 wt.% to 7.3 wt.%. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用75毫升反应器在400摄氏度以上的超临界水(SCW)进行了1小时的研究,研究了热解油以高转化率转化为生物燃料的过程。四氢萘和1-甲基萘提供了良好的氢供体和非氢供体的基线产品转化率(尽管质量与溶剂的质量比低得多)。 SCW下的实验表明,在高水比下,转化率随热解油与水质量比的增加而增加,这些转化率最高的产品转化率为91 wt。%,回收的重油为28 wt。%,气体产率为23 wt。%,27 wt%产生0.13%的水,产生约13-14重量%的轻油。 Tetralin运行得到的产物转化率为90%(重量),但是样品与溶剂的质量比较低(1:2),而1-甲基萘在相同的样品与溶剂的质量比下的转化率却低得多(70%)。 1-甲基萘金属钛酸酯的组合给出相同的原料转化率(90wt。%),这表明产生高转化率仅需要少量的氢。对于SCW,回收的重油中的氧含量为16%,H / C原子比为1.1。提纯油的热值从初始热解油的18.5 MJ / kg增至33 MJ / kg。使用四氢化萘且具有低得多的溶剂与油的比率的具有类似产物转化率的重油(90重量%)具有稍低的氧含量(14%),并且H含量从7.0重量%增加至7.3重量%。 (C)2016 Elsevier Ltd.保留所有权利。

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