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首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Agglomerate behavior in a recirculating fluidized bed with sheds: Effect of sheds
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Agglomerate behavior in a recirculating fluidized bed with sheds: Effect of sheds

机译:夹持棚的再循环流化床中的凝聚行为:棚屋的影响

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A Radioactive Particle Tracking (RPT) technique was used to study the effects of the internal baffles in the stripping section of the Fluid Coker (TM), called sheds, have on the behavior of wet agglomerates that are formed when residual oil is injected into the Coker. Vapor emitted by reacting wet agglomerates below the sheds rises and causes shed fouling. The release of vapor from agglomerates can be estimated by combining the RPT results with a coking reaction model. The study found that the sheds reduce the time agglomerates spend in the shed zone, which in turn reduces the amount of organic vapor that reaches the sheds, but at the same time increase the wetness of the agglomerates that exit to the recirculation line, which results in the loss of valuable liquid. The research also found that the best type of shed, from the point of view of agglomerate motion, is the mesh-shed. Finally, experimental data indicate that reducing the cross sectional area of the sheds from 50% to 30% increases the time that the agglomerates spend above the shed zone, and thus reduces the flow of vapor emitted below the sheds. (C) 2018 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:使用放射性粒子跟踪(RPT)技术来研究流体克洛克(TM)的剥离部分中的内部挡板的效果,称为血管,对湿聚集物的行为进行了在将残留的油注入时形成的湿聚集体焦克。通过在棚屋下方的湿聚集体上升而发出的蒸气升高并导致脱落污垢。可以通过将RPT结果与焦化反应模型组合来估计来自附聚物的蒸汽释放。该研究发现,棚子减少了棚区中花费的时间消化,这反过来减少了到达棚的有机蒸汽的量,但同时增加了向再循环管线出来的附聚物的湿度,这是结果在损失有价值的液体中。研究还发现,从聚集运动的角度来看,最佳类型的棚子是网眼棚。最后,实验数据表明,从50%到30%的棚子的横截面积减小了棚屋上方的附聚的时间,从而减少了棚下方发出的蒸汽的流动。 (c)2018年日本粉末科技学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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