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Articles

Startup of a large height-diameter ratio bioreactor by alternate feeding: performance of partial nitrification and enrichment of ammonia-oxidizing bacteria (AOB)

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Pages 2171-2179 | Received 19 Sep 2022, Accepted 31 Dec 2022, Published online: 17 Jan 2023

References

  • Bai J, Cao W, Xiong J, et al. Integrated application of February Orchid (Orychophragmus violaceus) as green manure with chemical fertilizer for improving grain yield and reducing nitrogen losses in spring maize system in northern China. J Integr Agr. 2015;14(12):2490–2499.
  • Mng’ong’o M, Munishi LK, Blake W, et al. Towards sustainability: threat of water quality degradation and eutrophication in Usangu agro-ecosystem Tanzania. Mar Pollut Bull. 2022;181:113909.
  • Down C, Comber S. The impact of diet on wastewater treatment works phosphorus loading. Environ Technol. 2022;20:1–12.
  • Sun C, Wang S, Wang H, et al. Internal nitrogen and phosphorus loading in a seasonally stratified reservoir: implications for eutrophication management of deep-water ecosystems. J Environ Manage. 2022;319:115681.
  • Zekker I, Rikmann E, Tenno T, et al. Start-up of low-temperature anammox in UASB from mesophilic yeast factory anaerobic tank inoculum. Environ Technol. 2015;36(2):214–225.
  • Zekker I, Rikmann E, Tenno T, et al. Nitritating-anammox biomass tolerant to high dissolved oxygen concentration and C/N ratio in treatment of yeast factory wastewater. Environ Technol. 2014;35(12):1565–1576.
  • Zhang X, Zhang H, Chen Z, et al. Achieving biogas production and efficient pollutants removal from nitrogenous fertilizer wastewater using combined anaerobic digestion and autotrophic nitrogen removal process. Bioresour Technol. 2021;339:125659.
  • Kosari SF, Rezania B, Lo KV, et al. Operational strategy for nitrogen removal from centrate in a two-stage partial nitrification–anammox process. Environ Technol. 2014;35(9-12):1110–1120.
  • Zhang C, Wang C, Lv Z, et al. Relationships of pulsed frequency and anammox bacteria growth rate, at low temperatures. Environ Technol. 2022: 1–13.
  • Wan X, Laureni M, Jia M, et al. Impact of organics, aeration and flocs on N2O emissions during granular-based partial nitritation-anammox. Sci Total Environ. 2021;797:149092.
  • Liu T, Hu S, Yuan Z, et al. High-level nitrogen removal by simultaneous partial nitritation, anammox and nitrite/nitrate-dependent anaerobic methane oxidation. Water Res. 2019;166:115057.
  • Wu J, He C, van Loosdrecht MCM, et al. Selection of ammonium oxidizing bacteria (AOB) over nitrite oxidizing bacteria (NOB) based on conversion rates. Chem Eng J. 2016;304:953–961.
  • Pourbavarsad MS, Jalalieh BJ, Landes N, et al. Impact of free ammonia and free nitrous acid on nitritation in membrane aerated bioreactors fed with high strength nitrogen urine dominated wastewater. J Environ Chem Eng. 2022;10(1):107001.
  • Duan H, Ye L, Lu X, et al. Overcoming nitrite oxidizing bacteria adaptation through alternating sludge treatment with free nitrous acid and free ammonia. Environ Sci Technol. 2019;53(4):1937–1946.
  • Ciudad G, Gonzalez R, Bornhardt C, et al. Modes of operation and pH control as enhancement factors for partial nitrification with oxygen transport limitation. Water Res. 2007;41(20):4621–4629.
  • Chen R, Cao S, Zhang L, et al. NOB suppression strategies in a mainstream membrane aerated biofilm reactor under exceptionally low lumen pressure. Chemosphere. 2021;133386.
  • Miao Y, Zhang L, Yu D, et al. Application of intermittent aeration in nitrogen removal process: development, advantages and mechanisms. Chem Eng J. 2022;430.
  • Rodriguez-Sanchez A, Gonzalez-Martinez A, Martinez-Toledo M, et al. The effect of influent characteristics and operational conditions over the performance and microbial community structure of partial nitritation reactors. Water (Basel). 2014;6(7):1905–1924.
  • Duan Y, Liu Y, Zhang M, et al. Start-up and operational performance of the partial nitrification process in a sequencing batch reactor (SBR) coupled with a micro-aeration system. Bioresour Technol. 2020;296:122311.
  • Bunse P, Orschler L, Agrawal S, et al. Membrane aerated biofilm reactors for mainstream partial nitritation/anammox: experiences using real municipal wastewater. Water Res X. 2020;9:100066.
  • Li M, Li Y, Wang N, et al. Achieving efficient nitrogen removal in a single-stage partial nitrification-anammox-partial denitrification (PN/A/PD) membrane aerated biofilm reactor (MABR). J Water Process Eng. 2022;49.
  • Li D, Tao X, Li Z, et al. Factors of the rapid startup for nitrosation in sequencing batch reactor. Huan jing ke xue= Huanjing kexue. 2011;32(8):2317–2322.
  • Li S, Li J, Yang S, et al. Rapid achieving partial nitrification in domestic wastewater: controlling aeration time to selectively enrich ammonium oxidizing bacteria (AOB) after simultaneously eliminating AOB and nitrite oxidizing bacteria (NOB). Bioresour Technol. 2021;328:124810.
  • Wang B, Wang Z, Wang S, et al. Recovering partial nitritation in a PN/A system during mainstream wastewater treatment by reviving AOB activity after thoroughly inhibiting AOB and NOB with free nitrous acid. Environ Int. 2020;139:105684.
  • Chuang HP, Ohashi A, Imachi H, et al. Effective partial nitrification to nitrite by down-flow hanging sponge reactor under limited oxygen condition. Water Res. 2007;41(2):295–302.
  • Wang S, Yu J, Liu Y, et al. Achieving and maintaining of short-cut nitrification in a cyclic activated sludge system. Water SCI Technol. 2011;64(10):2016–2022.
  • Soliman M, Eldyasti A. Ammonia-Oxidizing Bacteria (AOB): opportunities and applications-a review. Rev Environ Sci Bio. 2018;17(2):285–321.
  • Hoekstra M, de Weerd FA, Kleerebezem R, et al. Deterioration of the anammox process at decreasing temperatures and long SRTs. Environ Technol. 2018;39(5):658–668.
  • Li J, Elliott D, Nielsen M, et al. Long-term partial nitrification in an intermittently aerated sequencing batch reactor (SBR) treating ammonium-rich wastewater under controlled oxygen-limited conditions. Biochem Eng J. 2011;55(3):215–222.
  • Zhao Y, Zhang Q, Peng Y, et al. Advanced nitrogen elimination from domestic sewage through two stage partial nitrification and denitrification (PND) coupled with simultaneous anaerobic ammonia oxidation and denitrification (SAD). Bioresour Technol. 2022;343:125986.
  • Zhang L, Lin Y, Zhu Z, et al. Rapidly recovering and maintaining simultaneous partial nitrification: denitrification and anammox process through hydroxylamine addition to advance nitrogen removal from domestic sewage. Bioresour Technol. 2022;127645.
  • Wang S, Li Q, Zhang P, et al. Start-up a novel coupling process with partial nitritation, partial denitrification and anaerobic ammonia oxidation in a single sequencing batch reactor. J Water Process Eng. 2022;45.
  • Chao A, Yang MCK. Stopping rules and estimation for recapture debugging with unequal failure rates. Biometrika. 1993;80:193–201.
  • Harini N. Opposite trends in response for the Shannon and Simpson indices of landscape diversity. Appl Geogr. 2002;22(2):175–186.
  • Choi J, Ahn Y. Comparative performance of air-lift partial nitritation processes with attached growth and suspended growth without biomass retention. Environ Technol. 2014;35(11):1328–1337.
  • Li S, Mu J, Du Y, et al. Study and application of real-time control strategy based on DO and ORP in nitritation-denitrification SBR start-up. Environ Technol. 2021;42(1):114–125.
  • Zhang X, Zhou Y, Ma Y, et al. Effect of inorganic carbon concentration on the stability and nitrite-oxidizing bacteria community structure of the CANON process in a membrane bioreactor. Environ Technol. 2018;39(4):457–463.
  • Shi Y, Hu Y, Liang D, et al. Enhanced denitrification of sewage via bio-microcapsules embedding heterotrophic nitrification-aerobic denitrification bacteria Acinetobacter pittii SY9 and corn cob. Bioresour Technol. 2022;358:127260.
  • Zhao Y, Gao J, Zhang W, et al. Robustness of the partial nitrification-anammox system exposing to triclosan wastewater: stress relieved by extracellular polymeric substances and resistance genes. Environ Res. 2021;206:112606.
  • Weng R, He Y, Wang J, et al. Quantitative characterization and genetic diversity associated with N-cycle pathways in urban rivers with different remediation techniques. Sci Total Environ. 2022;804:150235.
  • Pornkulwat P, Khan E, Powtongsook S, et al. Influence of ammonia and NaCl on nitrifying community and activity: implications for formulating nitrifying culture augmentation. Sci Total Environ. 2022;833:155132.
  • Han P, Yu Y, Zhou L, et al. Specific micropollutant biotransformation pattern by the comammox bacterium nitrospira inopinata. Environ Sci Technol. 2019;53(15):8695–8705.
  • Langille MGI, Zaneveld J, Caporaso JG, et al. Predictive functional profiling of microbial communities using 16S rRNA marker gene sequences. Nat Biotechnol. 2013;31:814–821.
  • Yin Y, Wang J. Predictive functional profiling of microbial communities in fermentative hydrogen production system using PICRUSt. Int J Hydrogen Energ. 2021;46(5):3716–3725.
  • Ma S, Qiao L, Liu X, et al. Microbial community succession in soils under long-term heavy metal stress from community diversity-structure to KEGG function pathways. Environ Res. 2022;214:113822.
  • Zhang Y, Qiao Y, Fu Z. Shifts of bacterial community and predictive functional profiling of denitrifying phosphorus removal – Partial nitrification – Anammox three-stage nitrogen and phosphorus removal before and after coupling for treating simulated wastewater with low C/N. Chem Eng J. 2023;451.
  • Zhang L, Lan S, Dou Q, et al. Metagenomic insights into responses of microbial population and key functional genes to fulvic acid during partial nitritation. J Environ Sci. 2023;124:952–962.
  • Moreira VA, Cravo-Laureau C, Borges de Carvalho AC, et al. Microbial community metabolic alterations and resistance to metals and antibiotics driven by chronic exposition to multiple pollutants in a highly impacted tropical coastal bay. Chemosphere. 2022;135928.

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