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Kinetics and Performance of Raw and Torrefied Biomass in a Continuous Bubbling Fluidized Bed Gasifier

机译:连续鼓泡流化床气化炉中原料和烘焙生物质的动力学和性能

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This paper is an experimental study of the kinetics of gasification of olive kernel by using a thermogravimetric fluidized bed reactor technique. Gasification of 'as received' and torrefied olive kernels were investigated in a lab-scale bubbling fluidized bed gasifier, operating at up to 3.2 kg/h. The effect of bed temperature between 550 and 750 degrees C in 50 degrees C increments on the gasification product gas at mass-based equivalence ratios of 0.15 and 0.2 was studied. To explore the potential of torrefied biomass, the gasification results were compared to that of the 'as received' biomass. The product gas from torrefied biomass produced higher H-2, CO and CH4 concentrations at identical oxidant flow rates in addition to higher cold gas efficiency and higher product gas heating value. The influence of equivalence ratio in gasification was also investigated at reactor temperatures of 750 degrees C and five equivalence ratios (0.15, 0.2, 0.25, 0.3, and 0.35). The results revealed that the torrefied biomass has the highest HHV at an equivalence ratio of 0.2 with a value of 6.09 MJ/Nm(3), while 'as received' biomass 4.72 MJ/Nm(3). Kinetic experiments under isothermal conditions were performed for the gasification of the materials in continuous mode. A mass balance model was successfully used to provide the capability of separately determining the rate constant of the reactions taking place. The kinetic parameters were calculated by a first order reaction model giving activation energies for 'as received' olive kernels of 84 kJ/mol and for torrefied olive kernels of 106 kJ/mol.
机译:本文是利用热重流化床反应器技术对橄榄核气化动力学进行实验研究。在实验室规模的鼓泡流化床气化炉中研究了“原样”和焙烤过的橄榄仁的气化,该气化炉的运行速度高达3.2 kg / h。研究了以质量为基础的当量比为0.15和0.2时,床温在550至750摄氏度之间(以50摄氏度为增量)对气化产物气的影响。为了探索烘焙生物质的潜力,将气化结果与“原样”生物质的气化结果进行了比较。除更高的冷气效率和更高的产气热值外,来自焙烤生物质的产气在相同的氧化剂流速下产生更高的H-2,CO和CH4浓度。在反应器温度为750摄氏度和五个当量比(0.15、0.2、0.25、0.3和0.35)下,还研究了当量比对气化的影响。结果表明,焙干的生物量具有最高的HHV,当量比为0.2,值为6.09 MJ / Nm(3),而“原样”生物量为4.72 MJ / Nm(3)。在等温条件下进行动力学实验,以连续模式气化材料。质量平衡模型已成功用于提供单独确定发生的反应速率常数的能力。通过一级反应模型计算动力学参数,给出“接收”的橄榄核的活化能为84 kJ / mol,烘焙的橄榄核的活化能为106 kJ / mol。

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