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Three-dimensional Simulation and Experimental Investigation of a Novel Biomass Fast Pyrolysis Reactor

机译:一种新型生物质快速热解反应器的三维模拟与实验研究

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A novel autothermal reactor,named internally interconnected fluidized beds (ⅡFB),was developed for biomass fast pyrolysis to produce liquid fuels and chemicals. The ⅡFB reactor includes a pyrolysis bed and a combustion bed to conduct biomass pyrolysis and char burning,respectively.In this study,numerical simulation and experimental studies on volume fraction of particles,solid circulation rate and pressure distribution of the ⅡFB are reported. The stable flow photographed from the simulations coincides with that in the experiments at the same operating conditions.At the same height, the velocity of gas is twice as larger as the velocity of solid,which is favorable for catalytic reactions. The particles move up unsteadily in the draft tube,and yet they fall down with an almost constant velocity 0.07 m/s in the dlipleg. The pressure in the fluidization region is higher than that in the spouted region at H=10 mm and it shows an opposite pressure distribution.It is also observed that the experimental value of pressure is in well agreement with that obtained from simulations on the bottom,and yet it shows very different characteristics on the two outlets.Simulation results show that solid circulation rate at different cross-sections converged to 110 kg/h which is in well agreement with experimental data of 104.5 kg/h.
机译:开发了一种新型的自热反应器,称为内部互连流化床(ⅡFB),用于生物质快速热解以生产液体燃料和化学品。 ⅡFB反应器分别包括一个热解床和一个燃烧床,分别进行生物质的热解和焦炭燃烧。本文对ⅡFB的颗粒体积分数,固体循环速率和压力分布进行了数值模拟和实验研究。在相同的操作条件下,模拟得到的稳定流量与实验吻合。在相同的高度,气体的速度是固体速度的两倍,这有利于催化反应。颗粒在导流管中不稳定地向上运动,但在滴水管中却以几乎恒定的速度0.07 m / s掉落。在H = 10 mm时,流化区的压力高于喷口区的压力,并且显示出相反的压力分布。还可以观察到,压力的实验值与底部模拟所得的值非常吻合,模拟结果表明,不同截面的固体循环速率收敛于110 kg / h,与104.5 kg / h的实验数据吻合良好。

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