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不同螺旋环间距对同心圆形膜接触器中胺溶液吸收CO的影响

Effects of Varying Spiral-Ring Pitches on CO Absorption by Amine Solution in Concentric Circular Membrane Contactors.

作者信息

Ho Chii-Dong, Ke Jui-Wei, Lim Jun-Wei

机构信息

Department of Chemical and Materials Engineering, Tamkang University, Tamsui, New Taipei 251301, Taiwan.

HICoE-Centre for Biofuel and Biochemical Research, Department of Fundamental and Applied Sciences, Institute of Self-Sustainable Building, Universiti Teknologi PETRONAS, Seri Iskandar 32610, Malaysia.

出版信息

Membranes (Basel). 2024 Jun 27;14(7):147. doi: 10.3390/membranes14070147.

Abstract

The CO absorption flux while using monoethanolamide (MEA) solution in a spiral-wired channel was significantly enhanced by optimizing both the descending and ascending spiral ring pitch configurations within the filled channel. In this study, two distinct spiral ring pitch configurations were integrated into concentric circular membrane contactors to augment CO absorption flux. Spiral rods were strategically inserted to mitigate concentration polarization effects, thereby reducing mass transfer boundary layers and increasing turbulence intensity. A theoretical one-dimensional model was developed to predict absorption flux and concentration distributions across varying MEA absorbent flow rates, CO feed flow rates, and inlet CO concentrations in the gas feed. Theoretical predictions of absorption flux improvement were validated against experimental results, demonstrating favorable agreement for both ascending and descending spiral ring pitch operations. Interestingly, the results indicated that descending spiral ring pitch operations achieved higher turbulent intensity compared to ascending configurations, thereby alleviating concentration polarization resistance and enhancing CO absorption flux with reduced polarization effects. Specifically, under conditions of a 40% inlet CO concentration and 5 cm/s MEA feed flow rate, a notable 83.69% enhancement in absorption flux was achieved compared to using an empty channel configuration. Moreover, a generalized expression for the Sherwood number was derived to predict the mass transfer coefficient for CO absorption in concentric circular membrane contactors, providing a practical tool for performance estimation. The economic feasibility of the spiral-wired module was also assessed by evaluating both absorption flux improvement and incremental power consumption. Overall, these findings underscore the effectiveness of optimizing spiral ring pitch configurations in enhancing CO absorption flux, offering insights into improving the efficiency and economic viability of CO capture technologies.

摘要

在螺旋线通道中使用单乙醇胺(MEA)溶液时,通过优化填充通道内的下降和上升螺旋环间距配置,显著提高了CO吸收通量。在本研究中,将两种不同的螺旋环间距配置集成到同心圆形膜接触器中,以提高CO吸收通量。策略性地插入螺旋棒以减轻浓度极化效应,从而减少传质边界层并增加湍流强度。建立了一个理论一维模型,以预测不同MEA吸收剂流速、CO进料流速和气体进料中入口CO浓度下的吸收通量和浓度分布。针对实验结果验证了吸收通量改善的理论预测,结果表明上升和下降螺旋环间距操作均具有良好的一致性。有趣的是,结果表明,与上升配置相比,下降螺旋环间距操作实现了更高的湍流强度,从而减轻了浓度极化阻力,并在降低极化效应的情况下提高了CO吸收通量。具体而言,在入口CO浓度为40%且MEA进料流速为5 cm/s的条件下,与使用空通道配置相比,吸收通量显著提高了83.69%。此外,还推导了Sherwood数的广义表达式,以预测同心圆形膜接触器中CO吸收的传质系数,为性能评估提供了实用工具。还通过评估吸收通量的提高和增量功耗来评估螺旋线模块的经济可行性。总体而言,这些发现强调了优化螺旋环间距配置在提高CO吸收通量方面的有效性,为提高CO捕集技术的效率和经济可行性提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/234d/11279012/cf56caf8bc32/membranes-14-00147-g001a.jpg

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