首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Particle behavior and parameter optimization in treatment of waste petroleum reforming catalysts based on a compound dry separator
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Particle behavior and parameter optimization in treatment of waste petroleum reforming catalysts based on a compound dry separator

机译:基于复合干燥分离器处理废石油重整催化剂的颗粒行为和参数优化

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In this research, the motion and distribution characteristics of waste palladium catalysts in a compound dry separator were investigated by DEM-CFD. Based on the actual separation experiments, the effects of various process parameters on separation performance were studied. The significance of both single factor and factor combination were analyzed. In addition, parametric majorization and further experimental verification were conducted. The results showed that, in the separation process, the rod-shaped catalysts are mainly distributed in backplane region and move along the backplane with a gradual weakening spiral motion, and the spherical catalysts are distributed in lattice-bar region and directly move to the discharge end. The maximum efficiency E-f is obtained when the amplitude (AM) is 3.0-3.5 mm, frequency (FR) is 32-38 Hz, gas velocity (GV) is around 1 m/s, and lateral-gradient (theta) is 4 degrees-6 degrees. The influence degree of various factors on E-f follows the order: FR > theta > AM > GV. An actual separation efficiency was 99.61% when GV = 0.96 mm, FR = 35.98 Hz, AM = 3.28 mm and theta = 5.64 degrees, indicating a satisfactory separation performance of waste palladium catalysts using a compound dry separator. (C) 2020 The Society of Powder Technology Japan. Published by Elsevier B.V.
机译:在该研究中,通过DEM-CFD研究了化合物干燥分离器中废钯催化剂的运动和分布特性。基于实际分离实验,研究了各种工艺参数对分离性能的影响。分析了单一因素和因子组合的重要性。此外,进行参数化大约和进一步的实验验证。结果表明,在分离过程中,棒状催化剂主要分布在背板区域中,并沿着底板移动,逐渐减弱螺旋运动,并且球形催化剂分布在格子条区域中并直接移动到排出结尾。当振幅(AM)为3.0-3.5mm时,获得最大效率EF,频率(FR)为32-38Hz,气体速度(GV)约为1米/秒,横向梯度(θ)是4度-6度。 E-F上各种因素的影响程度如下:FR>θ>上午> GV。当GV = 0.96mm,FR = 35.98Hz,AM = 3.28mm和θ= 5.64度时,实际分离效率为99.61%,表明使用复合干燥分离器的废钯催化剂的令人满意的分离性能。 (c)2020日本粉末科技会。 elsevier b.v出版。

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