Nielsen, Per H.


Publications
15

CitationNamesAbstract
Diversity and abundance of filamentous and non-filamentous “ Leptothrix” in global wastewater treatment plants Seguel Suazo et al. (2025). Applied and Environmental Microbiology 91 (3) “Rubrivivax defluviihabitans”
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Diversity and physiology of abundant Rhodoferax species in global wastewater treatment systems Petersen et al. (2025). Systematic and Applied Microbiology 48 (1) 17 Names
A comprehensive overview of the Chloroflexota community in wastewater treatment plants worldwide Petriglieri et al. (2023). mSystems 8 (6) 49 Names
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CRISPR-Cas phage defense systems and prophages in Candidatus Accumulibacter Deng et al. (2023). Water Research 235 “Accumulibacter”
CRISPR-Cas phage defense systems and prophages inCandidatusAccumulibacter Deng et al. (2022). “Accumulibacter”
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Reevaluation of the Phylogenetic Diversity and Global Distribution of the Genus “CandidatusAccumulibacter” Petriglieri et al. (2022). mSystems 7 (3) 17 Names
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Re-evaluation of the phylogenetic diversity and global distribution of the genusCandidatusAccumulibacter Petriglieri et al. (2021). “Accumulibacter” “Accumulibacter phosphatis”
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Low Global Diversity of Candidatus Microthrix, a Troublesome Filamentous Organism in Full-Scale WWTPs Nierychlo et al. (2021). Frontiers in Microbiology 12 Neomicrothrix “Neomicrothrix subdominans”
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CandidatusDechloromonas phosphatis” and “CandidatusDechloromonas phosphovora”, two novel polyphosphate accumulating organisms abundant in wastewater treatment systems Petriglieri et al. (2020). Ca. Dechloromonas phosphatis Ca. Dechloromonas phosphovora
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Metabolic Traits of Candidatus Accumulibacter clade IIF Strain SCELSE-1 Using Amino Acids As Carbon Sources for Enhanced Biological Phosphorus Removal Qiu et al. (2020). Environmental Science & Technology 54 (4) “Accumulibacter”