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Concentrating solar thermochemical hydrogen production by biomass gasification in supercritical water

机译:通过在超临界水中的生物质气化集中太阳能热化学氢生产

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Solar receiver reactor is the key component of supercritical water gasification of biomass using concentrating solar energy, and its thermal performance directly affects the thermal efficiency and biomass gasification results. The temperature distributions of solar receiver reactor and reactant fluid are presented. The results showed that direct normal solar irradiation (DNI) have prominent effect on the temperature of cavity type solar receiver reactor, thus affecting the SCWG reaction behaviors and gasification results. A series of on-sun experiments were carried out, temperature is relatively stable with DNI small fluctuations, and the nominal fluid temperatures at the outlet of reactor varied in the range 500-650°C, which could completely meet the need of the temperature for biomass gasification in supercritical water. Model compounds of biomass (ethylene glycol, ethanol, glycerin and glucose) were continuously gasified under SCW conditions to generate hydrogen-rich fuel gas in the apparatus. Gas yields, carbon gasification efficiency and the total gasification efficiency increase with increasing DNI. The range of GE and CE is 48.5-105.8%, 37.5-95.6%, respectively. Good thermal performance and gasification results show that solar receiver/reactor used in this study is one of the good configurations that can be used for SCWG of biomass using concentrating solar energy.
机译:太阳能接收器反应器是使用浓缩太阳能的生物质超临界水域气化的关键分量,其热性能直接影响热效率和生物质气化结果。提出了太阳能接收器反应器和反应物流体的温度分布。结果表明,直接正常的太阳能照射(DNI)对腔型太阳能接收器反应器的温度具有突出的影响,从而影响了SCWG反应行为和气化结果。进行了一系列的ON-SUN实验,对DNI小波动进行温度相对稳定,并且反应器出口处的标称流体温度在500-650℃的范围内变化,这可以完全满足温度的需要超临界水中的生物质气化。在SCW条件下连续气化生物质(乙二醇,乙醇,甘油和葡萄糖)的模型化合物,以在该装置中产生富含氢的燃料气体。随着DNI的增加,气体产量,碳气化效率和总气化效率增加。 GE和CE的范围分别为48.5-105.8%,37.5-95.6%。良好的热性能和气化结果表明,本研究中使用的太阳能接收器/反应器是使用集中的太阳能用于生物量的SCG的良好配置之一。

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