AI summary

70% confidence

Microbial fuel cells (MFCs) were used to treat anaerobic digester effluents (ADEs) from food waste treatment, reducing organics, nitrogen, and phosphorus by 50% at a hydraulic residence time of 10 days.

Generated by MESSAI extraction pipeline · review against source PDF

Generic MFCRepresentative model
Click to animate flow
loading 3D model…

Representative MFC — matched on the paper’s system type only, not its reactor or geometry.

Extraction

Reported parameters

7 extracted values

View extracted values

Open in lab for full controls, parameter editing, and template overlays.

Open in lab →

What they did

System
MFC

What worked

No outcome metrics extracted yet.

Abstract

One of practical challenges in anaerobic-digestion (AD) technology is the cost-effective treatment of residue effluents containing high concentrations of organics, nitrogen and phosphorus (CNP). In order to evaluate the utility of microbial fuel cells (MFCs) for treating anaerobic-digester effluents (ADEs) and generating power from them, laboratory-scale single-chamber MFCs were filled with ADE obtained from a commercial AD plant treating food wastes and thereafter operated by routinely supplying ADE at different hydraulic residence times (HRTs, 5 to 20 days). It is shown that MFCs were able to reduce not only organics in ADE but also nitrogen and phosphorus. For instance, data demonstrated that over 50% of CNP was removed in MFCs operated at an HRT of 10 days, at which the maximum power density reached over 200 mW m⁻² (based on the projected area of anode). Metabarcoding of 16S rRNA genes showed that some bacteria were specifically enriched in anode biofilms, suggesting their involvement in power generation. Our study suggests that MFCs are applicable to reducing CNP in ADEs at reasonable rates, and provides subsequent work with fundamental data useful for setting targets for further developments.

Key findings

  • MFCs were able to reduce organics, nitrogen, and phosphorus in ADEs
  • Maximum power density reached over 200 mW m⁻² at an HRT of 10 days
  • Some bacteria were specifically enriched in anode biofilms, suggesting their involvement in power generation

Keywords

Waste managementEffluentFood wasteResidue (chemistry)Anaerobic exerciseAnaerobic digestion

Identifiers

Journal
Microorganisms
Year
2023