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Optimization of stage numbers in a multistage fluidized bed temperature swing adsorption system for CO2 capture

机译:多级流化床温度摆吸吸附系统中阶段数的优化

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A dual loop multi stage fluidized bed process for continuous temperature swing adsorption (TSA) of CO2 is investigated using a thermodynamic process model. The operating case is chosen in accordance with a typical post-combustion CO2 capture process, i.e. 90% CO2 capture rate from a gas stream with 10 vol% CO2 content. Steam is used as the stripping agent on the desorber side. Adsorption thermodynamic data for an amine functionalized sorbent material are employed based on adsorption isotherm data from the literature using the Langmuir model. The optimum stage number on both adsorber and desorber side are investigated with respect to achieve high energy efficiency of the separation process. This means that a low stripping steam demand and a low solids circulation rate are desired. The results show that both solids circulation rate and stripping steam demand are low for configurations with multiple stages for both the adsorber and the desorber. The effect of additional stages is high at the beginning (especially up to three stages) and fades with the number of stages. It can be concluded for the chosen separation task and sorbent that a system with five stages on each side could represent a good compromise between effort and efficiency. Further work will focus on more detailed modeling and on experimental evaluation of the discussed process.
机译:一个双环路多级流化床处理对于CO2的连续的温度摆动吸附(TSA)是使用热力学过程模型中研究。操作的情况下被选择,根据一个典型的燃烧后CO 2捕获过程中,即90%的CO 2捕集率从与10体积%的CO 2含量的气体流。蒸汽被用作上解吸器侧的汽提剂。用于胺吸附热力学数据官能吸着剂材料是基于来自使用Langmuir模型文献吸附等温线的数据使用。在两个吸附器和解吸器侧的最佳阶段数相对于进行了研究,以实现分离过程的能量效率高。这意味着,具有低汽提蒸汽需求和低固体循环速率是期望的。结果表明,无论是固体循环率与汽提蒸汽需求低与用于吸附和解吸都多级配置。附加级的效果是高在开始时(尤其是至多三个阶段),并与级的数目变淡。由此可以得出结论为所选择的分离任务和吸附剂与每侧五个阶段的系统可以代表之间的努力和效率的良好平衡。进一步的工作将集中在更详细的建模并在所讨论的过程的实验评价。

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