The sustainable application of partial denitrification/anammox (PD/A) under mainstream wastewater conditions depends critically on relieving the strong competition between heterotrophic and autotrophic microorganisms for substrates and ecological space. In this study, ferrous sulfide (FeS) was employed as a biofilm carrier to establish a mixotrophic PD/A (MPD/A), which maintained a total nitrogen removal efficiency of 90.25% under fluctuating organic carbon conditions in mainstream wastewater. To elucidate how niche differentiation between suspended sludge and biofilms supports synergistic nitrogen removal, community composition and predicted functional genes were analyzed to resolve the coexistence and division of labor of key microorganisms. The results showed that FeS, protein-like EPS, and multiple functional microbial populations jointly supported biofilm establishment and stability, enabling the preferential retention and enrichment of anammox bacteria (AnAOB) (14.09%), autotrophic denitrifiers, and other microorganisms involved in synergistic nitrogen removal. Together with suspended sludge, biofilms formed a cooperative nitrogen removal network integrating autotrophic and heterotrophic partial denitrification, complete denitrification, and anammox. Functional gene responses further revealed that autotrophic and heterotrophic partial denitrification within the biofilm sustained NO2--N supply, while FeS strengthened electron transfer and growth metabolism in AnAOB, thereby enhancing nitrogen removal kinetics and process stability. These findings provide a new strategy for expanding the ecological niche of anammox in mainstream denitrification tanks and a practical basis for the stable retention, enrichment, and sustained functional expression of AnAOB.
Operational instability of partial nitrification (PN) remains a major barrier to mainstream energy-efficient wastewater treatment. Here, a stable simultaneous denitrification-anammox system driven by alkaline sludge fermentation liquor (ASFL) under varying nitrification levels (PN, complete nitrification, and their coe...
Xiaodi Li, Bo Wang, Wei Zeng et al.· Bioresource Technology· 0 citations
Nitrification-denitrification sludge is widely used as the seed sludge for anammox bacteria enrichment, yet little is known about which microorganisms it harbors can metabolically support the growth of anammox bacteria. This study focused on exploring the above-mentioned issue during the enrichment of anammox bacteria...
Microalgae-based bioremediation of wastewater enables simultaneous nutrient removal and production of value-added biomass. This study systematically evaluated three geographically distinct Chlorella sp. strains for semi-continuous treatment of food wastewater, addressing critical challenges that hinder practical applic...
Lin Zhao, Shu-Jie Wei, Yi-Fan Zhang et al.· Environmental Research· 0 citations
Microalgae-bacteria consortia (MBC) integrated with polyphosphate-accumulating organisms (PAOs) treat wastewater sustainably, but face excess sludge and light-dark mismatch issues. This study developed in situ fermentation-coupled photo simultaneous nitrification-denitrification phosphorus removal (F/P-SNDPR) systems b...
Qingan Meng, Yan Xia, Feng Liu et al.· Bioresource Technology· 0 citations
This study evaluates an air-lift multistage integrated reactor designed for township wastewater treatment. Under controlled aeration, the reactor established distinct dissolved oxygen zones (1.06, 1.46, and 1.89 mg/L from bottom to top) and maintained high mixed liquor suspended solids (MLSS), which together promoted...
Fan Wang, Yuying Fan, Haigang Zhang et al.· ACS ES&T Water· 0 citations
The operational stability of continuous-flow partial denitrification-anammox (PD/A) systems is frequently constrained by insufficient nitrite supply and temperature sensitivity of anammox bacteria, particularly under low-temperature stress. In such conditions, filamentous bacteria often proliferate excessively, and the...
Jiarui Fan, Shen-Bin Cao, Rui Du et al.· Bioresource Technology· 0 citations
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