ree&pqj2

 
Design and Implementation of a Biogas Pilot Plant for Bioaugmentation Strategies in a rural municipality

D. Dasí-Crespo(1), A. Carcerller-Toselli(2), C. Roldán-Blay(1), G. Escrivá-Escrivá(1), C. Roldán-Porta(1)

1. Institute for Energy Engineering, Universitat Politècnica de València. Valencia
2. Ayuntamiento de Aras de los Olmos, Valencia

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2026-01-20


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Abstract

The transition towards renewable energy sources isimperative for achieving sustainability and mitigating climate change impacts. Among various renewable energies, biogas stands out for its dual role in waste management and energy production. This study introduces the design and implementation of a biogas pilot plant aimed at exploring bioaugmentation strategies to enhance biogas yield and quality. The pilot plant, located at Aras de los Olmos, features two independent 3.4m3 digesters, allowing for parallel comparison between standard anaerobic digestion and digestion with microbial enhancements. The plant is equipped with monitoring and control systems for precise regulation of environmental conditions, such as temperature, and for real-time measurement of biogas composition. Some initial experiments using a mix of agricultural wastes demonstrated the plant's capability to adapt to varied feedstock. Despite suboptimal temperature conditions, preliminary results indicated a high methane content, suggesting significant potential for bioaugmentation to improve biogas production efficiency. The study highlights the importance of controlled environmental conditions and introduces a novel bioaugmented digestion approach using selected microbial consortia. This research contributes to the broader goal of enhancing biogas technology's efficiency and sustainability, offering insights into the practical application of bioaugmentation in biogas production.

Key words: Biogas production, bioaugmentation, pilot plant design, renewable energy, microbial consortia.

Published in: Renewable Energies, Environment & Power Quality Journal (REE&PQJ)
ISSUE: Vol. 24. No. 2 Pages: 149-154
E-ISSN: 3020-531 X Date of Current Version: 2026-01-02
REF: 125 Issue Date: 2026-01-26
DOI:10.24084/reepqj24-125 Publisher: AEDERMACP/ EA4EPQ

References

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[2] Sieborg, M. U., Oliveira, J. M. S., Ottosen, L. D. M., & Kofoed, M. V. W. (2024). Flue-to-fuel: Bio-integrated carbon capture and utilization of dilute carbon dioxide gas streams to renewable methane. Energy Conversion and Management, 302, 118090.

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[4] Natural and Synthetic Microbial Communities for Sustainable Production of Optimised Biogas (Micro4Biogas) https://micro4biogas.eu/

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[7] Roldán-Porta, C., Roldán-Blay, C., Dasí-Crespo, D., & Escrivá-Escrivá, G. (2023). Optimising a Biogas and Photovoltaic Hybrid System for Sustainable Power Supply in Rural Areas. Applied Sciences, 13(4), 2155.

 
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