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Palmemptyfruitbunch gasificationsimulationin circulating fluidized bed gasifier

机译:循环流化床气化炉中棕榈空果气化的模拟

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Biomass from EFB is considered as potential renewable energy sources to be developed in Indonesia. EFB can be efficiently converted into valuable and useful gaseous products through gasification. Research about EFB gasification in various gasifier has been done, though little research about EFB simulation on CFB bed gasifier. The aim of this research is to simulate gasification of EFB on CFB gasifier by assuming that the gasification reaction isunder equilibrium condition. Method encompasses biomass feedstock, simulation basis manager, process description, simulation description, model validation, and sensitivity analysis. The model predicts H2 and CO fraction on syngas product in agreement with published real CFB gasification operation. The result shows that CFB gasifier performance is improving at high temperature above 800°C., and syngas conversion is higher under high temperature.The highest H_(2)yield achieved at 800°C.Impact of S/B has been investigated, and it is found that when value of S/B is increasing, the more H_(2)produced. The value of ER below 1 is desired since the focus is to get CO together with H_(2). The lower ER value the higher syngas yield obtained. The model will be used as a basis for further chemical production simulation from EFB gasification.
机译:来自EFB的生物质被认为是印度尼西亚将开发的潜在可再生能源。通过气化,EFB可以有效地转化为有价值的有用气态产物。尽管在CFB床气化炉上进行EFB模拟的研究很少,但已经进行了各种气化炉中EFB气化的研究。这项研究的目的是通过假设气化反应处于平衡条件下来模拟CFB气化炉上EFB的气化。方法包括生物质原料,模拟基础管理器,过程描述,模拟描述,模型验证和敏感性分析。该模型与已发布的实际CFB气化操作一致,可预测合成气产品中的H2和CO分数。结果表明,CFB气化炉在800°C以上的高温下性能有所提高,并且在高温下合成气的转化率更高.800°C时H_(2)的产率最高。研究了S / B的影响,以及发现当S / B的值增加时,产生更多的H_(2)。期望ER的值小于1,因为重点是使CO与H_(2)在一起。 ER值越低,获得的合成气产率越高。该模型将用作EFB气化进一步化学生产模拟的基础。

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