Effect of biofilm thickness on the activity and community composition of phosphorus accumulating bacteria in a moving bed biofilm reactor
Author:
Publisher
Elsevier BV
Subject
Pollution,Waste Management and Disposal,Water Science and Technology,Ecological Modeling,Environmental Engineering,Civil and Structural Engineering
Reference70 articles.
1. Transformation of phosphorus and relevant intracellular compounds by a phosphorus-accumulating enrichment culture in the presence of both the electron acceptor and electron donor;Ahn;Biotechnol. Bioeng.,2002
2. ampvis2: an R package to analyse and visualise 16S rRNA amplicon data;Andersen;Biorxiv,2018
3. The impact of biofilm thickness-restraint and carrier type on attached growth system performance, solids characteristics and settleability;Arabgol;Environ. Sci.,2020
4. Influence of MBBR carrier geometrical properties and biofilm thickness restraint on biofilm properties, effluent particle size distribution, settling velocity distribution, and settling behaviour;Arabgol;J. Environ. Sci.,2022
5. Contribution of Pseudomonas spp. to phosphorus uptake in the anoxic zone of an anaerobic-anoxic-aerobic continuous activated sludge system;Atkinson;Water Sci. Technol.,2001
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