Microbiota profile in mesophilic biodigestion of sugarcane vinasse in batch reactors

Author:

Iltchenco Janaina1ORCID,Peruzzo Vanessa2,Eva Magrini Flaviane1,Marconatto Letícia3,Paula Torres Ana4,Luiz Beal Lademir2,Paesi Suelen1

Affiliation:

1. University of Caxias do Sul, Molecular Diagnostic Laboratory, Caxias do Sul, Brazil

2. University of Caxias do Sul, Environmental Technologies Laboratory, Caxias do Sul, Brazil

3. Pontifical Catholic University of Rio Grande do Sul, Institute of Petroleum and Natural Resources, Porto Alegre, Brazil

4. PETROBRAS, Research and Development Center Leopoldo Américo Miguez de Mello – CENPES, Rio de Janeiro, Brazil

Abstract

Abstract The vinasse is a residue of ethanol production with the potential for methane production, requiring an allochthonous inoculum. Several microorganisms act in the different phases of anaerobic digestion, and the identification of these microbial communities is essential to optimize the process. The characterization of the microbiota involved in the biodigestion of vinasse was observed in the initial stage (IS), at the peak of methane production (MS) and the end of the process (FS) of the best performance assay by high-throughput sequencing. The highest methane production was 0.78 mmolCH4.gVS.h−1 at 243.7 h in the substrate/inoculum ratio of 1.7, with consumption partial of acetic, propionic and isobutyric acids and an 82% reduction of chemical oxygen demand. High microbial diversity was found. The genera Clostridium, Acinetobacter, Candidatus Cloacamonas, Bacteroides, Syntrophomonas, Kosmotoga, the family Porphyromonadaceae and the class Bacteroidia were the most abundant in the maximum methane production. Methane production was driven by Methanobacterium and Methanosaeta, suggesting the metabolic pathways used were hydrogenotrophic and acetoclastic.

Funder

Petrobras

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference60 articles.

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