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  5. Direct interspecies electron transfer mechanisms of a biochar-amended anaerobic digestion: a review

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Article
en
2023

Direct interspecies electron transfer mechanisms of a biochar-amended anaerobic digestion: a review

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en
2023
Vol 16 (1)
Vol. 16
DOI: 10.1186/s13068-023-02391-3

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Andrzej Bialowiec
Andrzej Bialowiec

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Marvin T. Valentin
Gang Luo
Shicheng Zhang
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Abstract

Abstract This paper explores the mechanisms of biochar that facilitate direct interspecies electron transfer (DIET) among syntrophic microorganisms leading to improved anaerobic digestion. Properties such as specific surface area (SSA), cation exchange capacity (CEC), presence of functional groups (FG), and electrical conductivity (EC) were found favorable for increased methane production, reduction of lag phase, and adsorption of inhibitors. It is revealed that these properties can be modified and are greatly affected by the synthesizing temperature, biomass types, and residence time. Additionally, suitable biochar concentration has to be observed since dosage beyond the optimal range can create inhibitions. High organic loading rate (OLR), pH shocks, quick accumulation and relatively low degradation of VFAs, and the presence of heavy metals and toxins are the major inhibitors identified. Summaries of microbial community analysis show fermentative bacteria and methanogens that are known to participate in DIET. These are Methanosaeta , Methanobacterium , Methanospirillum , and Methanosarcina for the archaeal community; whereas, Firmicutes , Proteobacteria , Synergistetes , Spirochetes , and Bacteroidetes are relatively for bacterial analyses. However, the number of defined cocultures promoting DIET is very limited, and there is still a large percentage of unknown bacteria that are believed to support DIET. Moreover, the instantaneous growth of participating microorganisms has to be validated throughout the process. Graphical abstract

How to cite this publication

Marvin T. Valentin, Gang Luo, Shicheng Zhang, Andrzej Bialowiec (2023). Direct interspecies electron transfer mechanisms of a biochar-amended anaerobic digestion: a review. , 16(1), DOI: https://doi.org/10.1186/s13068-023-02391-3.

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Publication Details

Type

Article

Year

2023

Authors

4

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1186/s13068-023-02391-3

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