Evaluation of N <sub>2</sub>O Formation in Aerobic Granular Sludge Treating Different Types of Carbon Substrates in a (Denitrifying) Enhanced Biological Phosphorus Removal Process
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Distinctive denitrifying capabilities lead to differences in N2O production by denitrifying polyphosphate accumulating organisms and denitrifying glycogen accumulating organisms
The link between the microbial ecology, gene expression, and biokinetics of denitrifying polyphosphate-accumulating systems under different electron acceptor combinations
Integrated omics analyses reveal differential gene expression and potential for cooperation between denitrifying polyphosphate and glycogen accumulating organisms
The 11 references without a DOI — listed, not checked
no DOI — not checkedanaerobic-aerobic sequencing batch reactor
no DOI — not checkedA Review of Phosphorus Removal Technologies and Their Applicability to Small-Scale Domestic Wastewater Treatment Systems
no DOI — not checkedImpact of the substrate composition on enhanced biological phosphorus removal during formation of aerobic granular sludge
no DOI — not checkedEffect of different carbon sources on performance of an A2N-MBR process and its microbial community structure
no DOI — not checkedref9
no DOI — not checkedSimultaneous nitrification and denitrification in microbial community-based polyhydroxyalkanoate production
no DOI — not checkedOrganic substrate diffusibility governs microbial community composition, nutrient removal performance and kinetics of granulation of aerobic granular sludge
no DOI — not checkedref24
no DOI — not checkedDenitrification kinetics indicates nitrous oxide uptake is unaffected by electron competition in Accumulibacter
no DOI — not checkedA Critical Assessment of the Microorganisms Proposed to be Important to Enhanced Biological Phosphorus Removal in Full
no DOI — not checkedref37
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