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Bio-oils from vacuum ablative pyrolysis of torrefied tobacco residues

机译:来自真空烧伤烟草残留物的生物油

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Fast pyrolysis, in combination with torrefaction pretreatment, was used to convert tobacco residues to value-added bio-fuels and chemicals. Tobacco plant residues were torrefied at 220, 260, and 300 °C, before being pyrolyzed at 450, 500, 550, and 600 °C in a rotating blade ablative reactor under vacuum conditions to test the effects on product yields. With torrefaction, tobacco residues thermally decomposed 20–25% w/w at low temperatures. Torrefaction and pyrolysis temperatures were found to markedly affect pyrolytic product yields of bio-chars and bio-oils, while having no effect on gas-phase products. Bio-oil yields exhibited a direct relation with pyrolysis temperature and an inverse relation with torrefaction temperature. Bio-oils produced were separated into light and heavy oils and analyzed by GC-MS, and ~(1) H and ~(13) C NMR. Nicotine was found to be the main compound in the light and heavy oils along with several phenols and cresols in the heavy oil.
机译:快速热解,结合烘焙预处理,用于将烟草残留物转化为增值的生物燃料和化学品。在220,260和300℃下,烟草植物残留物在450,500,550和600℃下在真空条件下在450,500,550和600℃下热解,以测试对产物产率的影响。用烘焙,在低温下热分解烟草残留物20-25%w / w。发现烘焙和热解温度明显影响生物镰刀和生物油的热解产物产率,同时对气相产物没有影响。生物油产率与热解温度和与烘焙温度的反向关系表现出直接关系。产生的生物油分离成轻重和重油,并通过GC-MS分析,〜(1)H和〜(13)C NMR分析。发现尼古丁是光和重油中的主要化合物,以及重油中的几种酚和甲酚。

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