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Rapid liquefaction of giant miscanthus feedstock in ethanol-water system for production of biofuels

机译:巨型水莲属原料在乙醇-水系统中快速液化以生产生物燃料

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摘要

Energy issues nowadays are one of the critical priorities for the United States. There is a strong desire and tremendous efforts employed towards replacing fossil fuels with sustainable alternative sources of energy. In this study, hydrothermal liquefaction with ethanol and water as co-solvents was applied on giant miscanthus (Miscanthus giganteus) perennial biomass feedstock. Four temperatures and six ethanol ratios were chosen for the study. The optimum combination of temperature and water/ethanol ratio was 280 ℃ and 50%, respectively. The effect of time, biomass to solvent ratio and catalyst type was studied as well. The best liquefaction results without applying catalysts (53% oil yield and 8% solid residue) were obtained after 15 min. When zinc chloride was used as catalyst, more than 52% of oil yield with 1% solid residue was obtained after 5 min. The crude bio-oil chemical composition was identified by using gas chromatography/mass spectrometry (GC/MS).
机译:如今,能源问题是美国的重要优先事项之一。在用可持续的替代能源替代化石燃料方面有着强烈的愿望和巨大的努力。在这项研究中,将乙醇和水作为助溶剂的水热液化技术用于巨型芒草(Miscanthus giganteus)多年生生物质原料。选择四个温度和六个乙醇比率进行研究。温度和水/乙醇比的最佳组合分别为280℃和50%。还研究了时间,生物量与溶剂的比例以及催化剂类型的影响。 15分钟后获得最佳的不使用催化剂的液化结果(53%的油收率和8%的固体残留物)。当使用氯化锌作为催化剂时,在5分钟后可获得超过52%的油产率和1%的固体残留物。通过使用气相色谱/质谱(GC / MS)鉴定粗生物油的化学成分。

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