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cognitis nomina
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Waste Management and Disposal
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Waste Management and Disposal
Publications
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Novel Geobacter species and diverse methanogens contribute to enhanced methane production in media-added methanogenic reactors
Citation
Mei et al.
(2018).
Water Research
147
Names
“Geobacter eutrophicus”
Abstract
Corrigendum to “Candidatus Accumulibacter phosphatis clades enriched under cyclic anaerobic and microaerobic conditions simultaneously use different electron acceptors” [Water Res. 102 (2016) 125–137]
Citation
Camejo et al.
(2017).
Water Research
127
Names
“Accumulibacter phosphatis”
Abstract
Corrigendum to “High-temperature EBPR process: The performance, analysis of PAOs and GAOs and the fine-scale population study of Candidatus “Accumulibacter phosphatis”” [Water Res. 64 (2014) 102–112]
Citation
Ong et al.
(2017).
Water Research
125
Names
Abstract
Enrichment and characterization of a psychrophilic ‘Candidatus Accumulibacter phosphatis’ culture
Citation
Tian et al.
(2017).
International Biodeterioration & Biodegradation
124
Names
“Accumulibacter phosphatis”
Abstract
Cooperation between Candidatus Competibacter and Candidatus Accumulibacter clade I, in denitrification and phosphate removal processes
Citation
Rubio-Rincón et al.
(2017).
Water Research
120
Names
“Accumulibacter”
Abstract
Role of c-di-GMP in anammox aggregation and systematic analysis of its turnover protein in Candidatus Jettenia caeni
Citation
Guo et al.
(2017).
Water Research
113
Names
Ca.
Jettenia caeni
Abstract
Discovery and metagenomic analysis of an anammox bacterial enrichment related to Candidatus “Brocadia caroliniensis” in a full-scale glycerol-fed nitritation-denitritation separate centrate treatment process
Citation
Park et al.
(2017).
Water Research
111
Names
Abstract
Denitrification of nitrate and nitrite by ‘Candidatus Accumulibacter phosphatis’ clade IC
Citation
Saad et al.
(2016).
Water Research
105
Names
“Accumulibacter phosphatis”
Abstract
Candidatus Accumulibacter phosphatis clades enriched under cyclic anaerobic and microaerobic conditions simultaneously use different electron acceptors
Citation
Camejo et al.
(2016).
Water Research
102
Names
“Accumulibacter phosphatis”
Abstract
Denitrifying phosphorus removal from municipal wastewater and dynamics of “Candidatus Accumulibacter” and denitrifying bacteria based on genes of ppk1, narG, nirS and nirK
Citation
Zeng et al.
(2016).
Bioresource Technology
207
Names
“Accumulibacter”
Abstract
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