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2025 | OriginalPaper | Chapter

Scale-Up of Bubble Column Reactor for Carbon Mineralization with Precipitated CaCO3 Product

Authors : Suci Madhania, Lailatul Alawiyah, Azriel Iqbal Hamayaputra, Kusdianto, Sugeng Winardi

Published in: Smart Innovation in Mechanical Engineering

Publisher: Springer Nature Singapore

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Abstract

The chapter delves into the critical process of scaling up bubble column reactors for carbon mineralization, a process essential for mitigating CO2 emissions. It highlights the importance of hydrodynamic similarity and reaction outputs in achieving successful scale-up, providing a detailed experimental framework using two bubble column reactors of different sizes. The study examines key parameters such as the height-to-diameter ratio (H/D), gas hold-up, and Ca(OH)2 conversion, offering a nuanced understanding of how these factors influence the carbonation process. The results demonstrate that maintaining geometric, kinematic, and dynamic similarities is crucial for consistent reaction outputs, including the production of precipitated CaCO3. The chapter also explores the morphological characteristics of the precipitated CaCO3, providing insights into the stability and efficiency of the carbonation process. This comprehensive analysis not only advances the technical understanding of bubble column reactors but also underscores the practical implications for large-scale carbon capture and utilization technologies.

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Metadata
Title
Scale-Up of Bubble Column Reactor for Carbon Mineralization with Precipitated CaCO3 Product
Authors
Suci Madhania
Lailatul Alawiyah
Azriel Iqbal Hamayaputra
Kusdianto
Sugeng Winardi
Copyright Year
2025
Publisher
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-97-7898-0_23

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