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Dual-reflux pressure swing adsorption in biogas upgrading—a parametric optimization

  • 19-03-2025
  • Original Article
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Abstract

The article delves into the optimization of dual-reflux pressure swing adsorption (DR-PSA) for biogas upgrading, a critical process in enhancing the purity of methane (CH4) and carbon dioxide (CO2) from raw biogas. It begins by highlighting the global urgency to increase the share of renewable energy sources and the role of biogas in achieving sustainable development goals. The study employs rigorous numerical simulations using Aspen Adsorption and response surface methodology (RSM) to identify and optimize key parameters influencing the DR-PSA process. The research reveals that factors such as feed/light reflux time, light reflux ratio, and bed column height significantly impact the purity and recovery of CH4 and CO2. Through systematic experimental design and statistical analysis, the study determines optimal operational conditions that maximize product purity and bed productivity while minimizing cycle work. The findings demonstrate that DR-PSA can achieve high-purity CH4 and CO2 in a single train without vacuum action, making it a viable alternative for small- to medium-scale biogas applications. The article also compares the performance of DR-PSA with other PSA systems, showcasing its potential for efficient and scalable biogas upgrading. Additionally, it discusses prospects for future research, including experimental validation, exploration of alternative adsorbents, and comprehensive techno-economic and life cycle assessments. The study concludes by emphasizing the importance of DR-PSA in advancing sustainable biogas utilization strategies and contributing to the global transition towards cleaner energy systems.

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Title
Dual-reflux pressure swing adsorption in biogas upgrading—a parametric optimization
Authors
Mohd Hardyianto Vai Bahrun
Awang Bono
Norasikin Othman
Muhammad Abbas Ahmad Zaini
Publication date
19-03-2025
Publisher
Springer Berlin Heidelberg
Published in
Biomass Conversion and Biorefinery / Issue 16/2025
Print ISSN: 2190-6815
Electronic ISSN: 2190-6823
DOI
https://doi.org/10.1007/s13399-025-06727-x
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