关于在滴流床反应器中应用支柱式和新型片式周期性开放细胞结构 (POCS) 强化气液传质的概念研究

IF 3.8 3区 工程技术 Q3 ENERGY & FUELS Chemical Engineering and Processing - Process Intensification Pub Date : 2024-08-10 DOI:10.1016/j.cep.2024.109930
Hendrik Held, Hannsjörg Freund
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引用次数: 0

摘要

快速成型制造技术的发展使复杂几何形状的结构化反应器内件的生产成为可能。涓流床反应器(TBR)是最常用于异相催化多相反应的反应器,为解决质量传输的限制,结构化内件可用于涓流床反应器。由于作为反应器内构件的周期性开放式蜂窝结构(POCS)尚未涉及气液传质问题,因此本研究首次提供了不同类型 POCS 的气液传质数据。因此,我们测量了氮气对水中溶解氧的解吸以及两相压降。将基于支柱的开尔文单元池和金刚石单元池 POCS 与作为基准的球形随机填料床进行了比较。开发的新型片基单元池实现了蜿蜒通道,与基准相比,体积传质系数提高了五倍。为了将该装置的性能与文献数据进行比较,使用了最先进的神经网络相关性进行比较。这一概念验证凸显了添加式制造的 POCS 在滴流床反应器强化工艺中的潜力,并证明了其应用的多样性。
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Conceptual study on the intensification of gas–liquid mass transfer in trickle bed reactors by the application of strut-based and novel sheet-based periodic open cellular structures (POCS)

Rapid progress in the development of additive manufacturing technology enables the production of structured reactor internals of complex geometry. To address mass transport limitations structured internals can be used in trickle bed reactors (TBRs) as the most frequently used reactor for heterogeneously catalyzed multiphase reactions. However, reactions in TBRs are frequently limited by gas–liquid mass transfer.

As periodic open cellular structures (POCS) as reactor internals were not addressed regarding g–l mass transfer yet, this contribution provides first data on gas–liquid mass transfer for different types of POCS. Therefore, desorption of dissolved oxygen in water with nitrogen gas and the two-phase pressure drop were measured. Strut-based Kelvin and diamond unit cell POCS were compared to a sphere random packed bed as a benchmark. A novel sheet-based unit cell was developed realizing meandering channels demonstrating a fivefold increase in volumetric mass transfer coefficient compared to the benchmark. To compare the performance of the setup with literature data, state of the art neural network correlations were used for comparison. This proof of concept highlights the potential of additively manufactured POCS for intensified processes in trickle bed reactors, and demonstrates their versatility in application.

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来源期刊
CiteScore
7.80
自引率
9.30%
发文量
408
审稿时长
49 days
期刊介绍: Chemical Engineering and Processing: Process Intensification is intended for practicing researchers in industry and academia, working in the field of Process Engineering and related to the subject of Process Intensification.Articles published in the Journal demonstrate how novel discoveries, developments and theories in the field of Process Engineering and in particular Process Intensification may be used for analysis and design of innovative equipment and processing methods with substantially improved sustainability, efficiency and environmental performance.
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