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首页> 外文期刊>Energy Sources >Co-liquefaction of Elbistan Lignite and Biomass. Part I: The Effect of the Process Parameters on the Conversion of Liquefaction Products
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Co-liquefaction of Elbistan Lignite and Biomass. Part I: The Effect of the Process Parameters on the Conversion of Liquefaction Products

机译:Elbistan褐煤和生物质的共液化。第一部分:工艺参数对液化产物转化的影响

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In this study, the liquefaction of Elbistan lignite and the co-liquefaction of Elbistan lignite with the biomass were examined. The biomass type used in this study consists of waste plastic, waste paper, waste mud, and molasses. The dissolution reactions were carried out in tetralin at 350-425℃ under nitrogen atmosphere. Mo(CO)_6, Cr(CO)_6, Fe_2O_3, and MoO_3 were used as the added catalysts. The particle size ranged from 0.25 mm to 1.5 mm, the isothermal extraction periods rangedfrom 30 to 150 min, and the solvent/lignite ratio ranged from 1/1 to 9/1. The results indicated that total conversion and oil + gas conversion obtained during the liquefaction largely changed according to catalyst type, biomass type, and reaction temperature. It is understood that other process parameters, such as particle size and solvent/solid ratio, did not have any important effects. According to the obtained results, optimum process parameters were determined as particle size of 1.5 mm, solvent/solid ratio of 3/1, reaction time of 90 min, and reaction temperature of 400℃. Fe_2O_3 was selected as the most suitable catalyst type and waste paper as biomass type. In order to reduce liquefaction cost in liquefaction operations, results of the experimental studies showed that using coal + biomass instead of coal, nitrogen instead of hydrogen, and recycled solvent instead of fresh solvent would be more suitable.
机译:在这项研究中,检查了Elbistan褐煤的液化以及Elbistan褐煤与生物质的共液化。本研究中使用的生物质类型包括废塑料,废纸,废泥和糖蜜。溶解反应在四氢化萘中在氮气氛下于350-425℃下进行。 Mo(CO)_6,Cr(CO)_6,Fe_2O_3和MoO_3被用作添加的催化剂。粒径为0.25mm至1.5mm,等温萃取时间为30至150min,溶剂/褐煤比为1/1至9/1。结果表明,液化过程中获得的总转化率和油+气转化率随催化剂类型,生物质类型和反应温度的不同而发生很大变化。应当理解,其他工艺参数,例如粒度和溶剂/固体比,没有任何重要影响。根据获得的结果,确定了最佳工艺参数:粒径为1.5 mm,溶剂/固比为3/1,反应时间为90分钟,反应温度为400℃。选择Fe_2O_3作为最合适的催化剂类型,选择废纸作为生物质类型。为了降低液化操作中的液化成本,实验研究结果表明,使用煤+生物质代替煤,用氮气代替氢,并使用循环溶剂代替新鲜溶剂将是更合适的。

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