The Bioaugmentation of Electroactive Microorganisms Enhances Anaerobic Digestion

Author:

An Zheng-Kai12ORCID,Song Young-Chae12ORCID,Kim Keug-Tae3ORCID,Lee Chae-Young4,Jang Seong-Ho5ORCID,Bae Byung-Uk6

Affiliation:

1. Department of Environmental Engineering, Korea Maritime and Ocean University, Busan 49112, Republic of Korea

2. Interdisciplinary Major of Ocean Renewable Energy Engineering, Busan 49112, Republic of Korea

3. Department of Biological and Environmental Science, Dongguk University, Gyeonggi 10326, Republic of Korea

4. Division of Civil, Environmental and Energy Engineering, The University of Suwon, Gyeonggi 18323, Republic of Korea

5. Department of Bioenvironmental Energy, Pusan National University, Miryang 50463, Republic of Korea

6. Department of Civil and Environmental Engineering, Daejeon University, Daejeon 34520, Republic of Korea

Abstract

Direct interspecies electron transfer (DIET) between electroactive microorganisms (EAMs) offers significant potential to enhance methane production, necessitating research for its practical implementation. This study investigated enhanced methane production through DIET in an anaerobic digester bio-augmented with EAMs. A horizontal anaerobic digester (HAD) operated for 430 days as a testbed to validate the benefits of bioaugmentation with EAMs. Anaerobic digestate slurry, discharged from the HAD, was enriched with EAMs in a bioelectrochemical auxiliary reactor (BEAR) under an electric field. This slurry enriched with EAMs was then recirculated into the HAD. Results showed bio-augmentation with EAMs led to an increase in volatile solids removal from 56.2% to 77.5%, methane production rate from 0.59 to 1.00 L/L.d, methane yield from 0.26 to 0.34 L/g CODr, and biogas methane content from 59.9% to 71.6%. It suggests that bio-augmentation enhances DIET, promoting the conversion of volatile fatty acids to methane and enhancing resilience against kinetic imbalances. The enrichment of EAMs reached optimal efficacy under an electric field intensity of 2.07 V/cm with a mean exposure time of 2.53 days to the electric field in the BEAR. Bio-augmentation with externally enriched EAMs is a feasible and effective strategy to optimize anaerobic digestion processes.

Funder

National Research Foundation of Korea

Korea government

Ministry of Land, Infrastructure, and Transport of the Korea government

Publisher

MDPI AG

Subject

Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Food Science

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