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Energetic, ecologic and fluid-dynamic analysis of a fluidized bed gasifier operating with sugar cane bagasse

机译:使用甘蔗渣处理流化床气化炉的能量,生态和流体动力学分析

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摘要

This work aims to study the thermodynamic, ecological and fluid-dynamic aspects of a circulating fluidized bed gasifier using sugar cane bagasse as biomass, in order to estimate a model of its normal operation. In the initial stage was analysed the composition of biomass selected (sugar cane bagasse) and its lower heating value (LHV) was calculated. The energy balance of the gasifier was done, being the volumetric flow of air, synthesis gas and biomass estimated. Also the power produced by this gasifier was theoretically estimated. Then the circulating fluidized bed gasifier was designed for operation with approximately 100 kg/h of processed biomass. Cross-sectional area of the reactor, feeder size, diameter of the exit zone of the gases and minimum height of the expanded bed were selected. Some bed gasifier hydrodynamic factors were also studied. The minimum fluidization velocity, fluidization terminal velocity, and average fluidizing velocity were calculated, in order to understand the fluid-dynamic behaviour of gasification of this fuel. It was obtained a theoretical model that can support a possible prototype of circulating fluidized bed gasifier biomass. Finally, there were studied the ecological aspects of the gasifier, through an overall methodology. Ecological efficiencies were estimated for two scenarios: first considering the carbon cycle and thereafter disregarding the carbon cycle. In both cases, it can be proved the ecological viability of the project.
机译:这项工作旨在研究以甘蔗渣为生物质的循环流化床气化炉的热力学,生态学和流体动力学方面,以估算其正常运行的模型。在初始阶段,分析所选生物质(甘蔗渣)的组成,并计算其较低的发热量(LHV)。完成气化炉的能量平衡,即估算空气,合成气和生物质的体积流量。从理论上也估计了该气化炉产生的功率。然后将循环流化床气化炉设计为以约100 kg / h的处理后生物量运行。选择反应器的横截面积,进料器尺寸,气体出口区域的直径和膨胀床的最小高度。还研究了一些床气化炉的流体动力因素。计算了最小流化速度,流化终了速度和平均流化速度,以了解这种燃料气化的流体动力学行为。获得的理论模型可以支持循环流化床气化炉生物质的可能原型。最后,通过整体方法研究了气化炉的生态方面。在两种情况下估算了生态效率:首先考虑碳循环,其次不考虑碳循环。在这两种情况下,都可以证明该项目的生态可行性。

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