Co-Occurrence and Cooperation between Comammox and Anammox Bacteria in a Full-Scale Attached Growth Municipal Wastewater Treatment Process.


Journal

Environmental science & technology
ISSN: 1520-5851
Titre abrégé: Environ Sci Technol
Pays: United States
ID NLM: 0213155

Informations de publication

Date de publication:
28 03 2023
Historique:
medline: 29 3 2023
pubmed: 14 3 2023
entrez: 13 3 2023
Statut: ppublish

Résumé

Cooperation between comammox and anammox bacteria for nitrogen removal has been recently reported in laboratory-scale systems, including synthetic community constructs; however, there are no reports of full-scale municipal wastewater treatment systems with such cooperation. Here, we report intrinsic and extant kinetics as well as genome-resolved community characterization of a full-scale integrated fixed film activated sludge (IFAS) system where comammox and anammox bacteria co-occur and appear to drive nitrogen loss. Intrinsic batch kinetic assays indicated that majority of the aerobic ammonia oxidation was driven by comammox bacteria (1.75 ± 0.08 mg-N/g TS-h) in the attached growth phase, with minimal contribution by ammonia-oxidizing bacteria. Interestingly, a portion of total inorganic nitrogen (∼8%) was consistently lost during these aerobic assays. Aerobic nitrite oxidation assays eliminated the possibility of denitrification as a cause of nitrogen loss, while anaerobic ammonia oxidation assays resulted in rates consistent with anammox stoichiometry. Full-scale experiments at different dissolved oxygen (DO = 2 - 6 mg/L) setpoints indicated persistent nitrogen loss that was partly sensitive to DO concentrations. Genome-resolved metagenomics confirmed the high abundance (relative abundance 6.53 ± 0.34%) of two

Identifiants

pubmed: 36913533
doi: 10.1021/acs.est.2c09223
pmc: PMC10061930
doi:

Substances chimiques

Ammonia 7664-41-7
Sewage 0
Nitrogen N762921K75

Types de publication

Journal Article Research Support, U.S. Gov't, Non-P.H.S.

Langues

eng

Sous-ensembles de citation

IM

Pagination

5013-5023

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Auteurs

Katherine Vilardi (K)

Department of Civil and Environmental Engineering, Northeastern University, 360 Huntington Avenue, Boston, Massachusetts 02115, United States.

Irmarie Cotto (I)

School of Civil and Environmental Engineering, Georgia Institute of Technology, 311 Ferst Drive, Atlanta, Georgia 30318, United States.

Megan Bachmann (M)

Hampton Roads Sanitation District, 1434 Air Rail Avenue, Virginia Beach, Virginia 23455, United States.

Mike Parsons (M)

Hampton Roads Sanitation District, 1434 Air Rail Avenue, Virginia Beach, Virginia 23455, United States.

Stephanie Klaus (S)

Hampton Roads Sanitation District, 1434 Air Rail Avenue, Virginia Beach, Virginia 23455, United States.

Christopher Wilson (C)

Hampton Roads Sanitation District, 1434 Air Rail Avenue, Virginia Beach, Virginia 23455, United States.

Charles B Bott (CB)

Hampton Roads Sanitation District, 1434 Air Rail Avenue, Virginia Beach, Virginia 23455, United States.

Kelsey J Pieper (KJ)

Department of Civil and Environmental Engineering, Northeastern University, 360 Huntington Avenue, Boston, Massachusetts 02115, United States.

Ameet J Pinto (AJ)

School of Civil and Environmental Engineering, Georgia Institute of Technology, 311 Ferst Drive, Atlanta, Georgia 30318, United States.

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Classifications MeSH