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Steam gasification of rapeseed, wood, sewage sludge and miscanthus biochars for the production of a hydrogen-rich syngas

机译:菜籽油,木材,污水污泥和猕猴桃生物炭的蒸汽气化,用于生产富氢合成气

摘要

Steam gasification of biochars has emerged as a promising method for generating syngas that is rich in hydrogen. In this study four biochars formed via intermediate pyrolysis (wood pellet, sewage sludge, rapeseed and miscanthus) were gasified in a quartz tubular reactor using steam. The dynamic behaviour of the process and effects of temperature, steam flow and particle size were studied. The results show that increases in both steam flow and temperature significantly increase the dry gas yield and carbon conversion, but hydrogen volume fraction decreases at higher temperatures whilst particle size has little effect on gaseous composition. The highest volume fraction of hydrogen, 58.7%, was obtained at 750 °C from the rapeseed biochar.
机译:生物炭的蒸汽气化已经成为产生富含氢的合成气的有前途的方法。在这项研究中,通过中间热解形成的四种生物炭(木材颗粒,污水污泥,油菜籽和猕猴桃)在石英管式反应器中使用蒸汽气化。研究了该过程的动态行为以及温度,蒸汽流量和粒径的影响。结果表明,蒸汽流量和温度的增加均显着提高了干燥气体的产率和碳转化率,但在较高温度下氢体积分数降低,而粒径对气态组成影响很小。在750°C下,从菜籽生物炭中获得的氢的体积分数最高,为58.7%。

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