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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Design and proof of concept of a continuous pressurized multi-stage fluidized bed setup for deep sour gas removal using adsorption
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Design and proof of concept of a continuous pressurized multi-stage fluidized bed setup for deep sour gas removal using adsorption

机译:使用吸附深加压多级流化床设置概念的设计和证明

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Pressure swing adsorption (PSA) processes are frequently used in the (petro)chemical industry, but they suffer from ineffective use of the sorbent and slow heat transfer. A pressurized multi-stage fluidized bed (MSFB) for continuous PSA is proposed in this work to overcome these drawbacks. A one stage fluidized bed adsorber was used to determine minimum fluidization velocities of the used amine sorbent at various pressures up to 10 bara. The design of a pilot scale experimental setup is described, together with supporting experiments to show the proof of concept. Removal from 37,000 mol ppm CO2 to <10 mol ppm CO2 in a few seconds was demonstrated in the pressurized MSFB adsorber. The tray efficiencies were high: often larger than 0.85. Using a numerical particle model, it was concluded that the CO2 adsorption rate is controlled via intraparticle mass transfer. (C) 2020 Elsevier B.V. All rights reserved.
机译:压力摆幅吸附(PSA)工艺经常用于(Petro)化学工业中,但它们患有吸附剂的使用和缓慢的传热效果。 在这项工作中提出了一种用于连续PSA的加压的多级流化床(MSFB),以克服这些缺点。 用于在高达10巴拉的各种压力下确定二手胺吸附剂的最小流化速度的一个阶段流化床吸附剂。 将描述导频规模实验设置的设计以及支持实验,以显示概念证明。 在加压MSFB吸附器中证明了在几秒钟内从37,000mol ppm CO 2中除去<10mol ppm CO 2。 托盘效率高:通常大于0.85。 使用数值粒子模型,得出结论是通过椎间内部传质控制CO 2吸附速率。 (c)2020 Elsevier B.V.保留所有权利。

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