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Chemical absorption of CO2 into an aqueous piperazine (PZ) solution: development and validation of a rigorous dynamic rate-based model

机译:CO2中的化学吸收成水性哌嗪(PZ)溶液:基于严格的动态率模型的开发和验证

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摘要

Carbon dioxide (CO2) chemical absorption into reactive solvents, is regarded as a proven technology to mitigate global warming aversive effects. Reliable design, modeling and simulation of the regenerative amine-based chemical absorption/desorption units, are essential in CO2 capture from the flue gas of fossil-fuel fired power plants. For this purpose, non-equilibrium rate-based stage models (NEQ), are recognized as a state-of-the-art approach compared to traditional equilibrium ones (EQ). In this paper, a modified non-equilibrium dynamic rate-based stage model, was developed to model CO2 chemical absorption into an aqueous solution of piperazine (PZ: C4H10N2), a highly reactive cyclic secondary diamine. In the developed rigorous model, the effect of non-ideal flow hydrodynamics, i.e. deviation from ideal plug flow regime, was taken into account via incorporation of the liquid phase axial dispersion/mixing in the absorber packed column. Due to the important role of the kinetics and CO2 mass transfer rate correlations in the prediction ability of the ultimate rat-based model, our newly developed correlations for CO2-PZ-H2O reactive system (Norouzbahari et al., 2015a) were employed, avoiding a non-exact enhancement factor (E) method with a pseudo-first-order (P.F.O) simplifying assumption. The thermodynamic non-idealities in both the liquid and gas phases, were considered via applying a proper (gamma - phi) approach coupled with our proposed model in our recent contribution (Norouzbahari et al., 2015b), as well. The developed model, was successfully evaluated against the experimental data and a close agreement between the simulated results and experimental values, justifies its validity.
机译:二氧化碳(CO2)化学吸收成反应性溶剂,被视为验证技术,以减轻全球变暖的厌恶效应。再生胺类化学吸收/解吸单元的可靠性设计,建模和仿真,在化石燃料发电厂的烟气捕获中,CO 2是必需的。为此目的,与传统的均衡(EQ)相比,基于非平衡率的阶段模型(NEQ)被认为是最先进的方法。本文开发了一种改进的非平衡动态率基阶段模型,以将CO2化学吸收模拟到哌嗪(PZ:C4H10N2)的水溶液中,是一种高反应性环仲二胺。在开发的严格模型中,通过掺入吸收剂填充柱中的液相轴向分散/混合,考虑了非理想流动流体动力学的效果,即与理想的塞流状态偏离。由于动力学和CO2传质率相关的重要作用,在基于终极大鼠模型的预测能力中,采用了CO2-PZ-H2O反应性系统的新关联(Norouzbahari等,2015A),避免了具有伪第一阶(PFO)简化假设的非精确增强因子(e)方法。通过施加适当的(γ - PHI)方法,考虑了液体和气体阶段的热力学非理想,并在我们最近的贡献中加上我们提出的模型(Norouzbahari等,2015b)。开发的模型,成功评估了实验数据,并在模拟结果和实验值之间密切一致,证明了其有效性。

著录项

  • 来源
    《RSC Advances》 |2016年第46期|共16页
  • 作者单位

    Iran Univ Sci &

    Technol Dept Chem Engn Tehran 16765163 Iran;

    Iran Univ Sci &

    Technol Dept Chem Engn Tehran 16765163 Iran;

    Iran Univ Sci &

    Technol Dept Chem Engn Tehran 16765163 Iran;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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