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CFD Simulation of CO_2 Adsorption onto Activated Carbon for Gas Separation and Storage Applications

机译:CFD模拟CO_2吸附在气体分离和储存应用中的活性炭上

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The increase in global energy demand, the scarcity of fossil fuels resources, climate change and global warming are undeniable realities. In this energy context, the implementation of concrete measures in favor of greater energy efficiency systems becomes urgent. Among these systems, the integration of environmental friendly, low energy adsorption technologies is gaining more interest in many chemical, residential and industrial applications such as adsorption refrigeration systems, quality treatment and energy storage processes. Pressure swing adsorption and temperature swing adsorption are among the promising techniques for CO_2 capturing and separation from exhaust gases. In this study, corrected adsorption rates of CO_2 onto activated carbon powder were investigated using computational fluid dynamics simulation. The modified linear driving force (mLDF) model was used as the adsorption kinetics equation by fitting of experimental data with isothermal assumption. Then the adsorbent layer temperature was estimated with CFD simulation which allowed to adjust the diffusion time constants for accurate performance investigation of CO_2 adsorption cooling, storage and separation applications.
机译:全球能源需求的增加,化石燃料资源的稀缺,气候变化和全球变暖是不可否认的现实。在这种能量背景下,迫切需要实施具体措施的具体措施变得迫切。在这些系统中,环境友好,低能量吸附技术的整合正在增加许多化学,住宅和工业应用,如吸附制冷系统,质量处理和储能过程。压力波浪吸附和温度波浪吸附是CO_2捕获和与废气分离的有希望的技术。在该研究中,使用计算流体动力学模拟研究了CO_2上CO_2上的校正吸附速率。通过使用等温假设的实验数据拟合,使用改进的线性驱动力(MLDF)模型作为吸附动力学方程。然后用CFD模拟估计吸附层温度,其允许调节扩散时间常数,以便精确地进行CO_2吸附冷却,储存和分离应用。

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