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Influence of the duration of feeding phase on the genotypic structure of bacterial communities in two sequencing batch reactors treating reject water by partial nitritation and anammox

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Microbial community and physiochemical processes were monitored by means of denaturing gradient gel electrophoresis (PCR-DGGE) in two sequencing batch reactors (SBRs) running for partial nitritation-anammox and differing in the feeding phase durations (6 h 40 min for SBR1 and 40 min for SBR2). Both SBRs were treated with reject water with a high ammonia concentration (>600 mg for over 370 days. The aim of the experiment was to present the influence of this parameter on total bacterial and anammox bacterial community structure. Molecular analysis revealed that a drastic decrease in influent ammonia concentration to the studied communities caused a change of genotypic structure in their composition. The difference in the reactors working scheme can be the reason for divergence in the community structure though having no drastic influence on its performance and biodiversity level. Feeding time has stronger influence on the genotypic composition of the total bacterial community than on anammox biocenosis.
Rocznik
Strony
49--63
Opis fizyczny
Bibliogr. 23 poz., tab., rys.
Twórcy
  • The Silesian University of Technology, Faculty of Energy and Environmental Engineering, Environ-mental Biotechnology Department, ul. Akademicka 2, 44-100 Gliwice, Poland
autor
  • The Silesian University of Technology, Faculty of Energy and Environmental Engineering, Environ-mental Biotechnology Department, ul. Akademicka 2, 44-100 Gliwice, Poland
autor
  • The Silesian University of Technology, Faculty of Energy and Environmental Engineering, Environ-mental Biotechnology Department, ul. Akademicka 2, 44-100 Gliwice, Poland
autor
  • The Silesian University of Technology, Faculty of Energy and Environmental Engineering, Environ-mental Biotechnology Department, ul. Akademicka 2, 44-100 Gliwice, Poland
Bibliografia
  • [1] KAMPSCHREUR M.J., VAN DER STAR W.R.L. WIELDERS H.A., MULDER J.W., JETTEN M.S.M., VAN LOOSDRECHT M.C.M., Dynamics of nitric oxide and nitrous oxide emission during full-scale reject water treatment, Water Res., 2008, 42 (3), 812.
  • [2] VAN HULLE S., VANDEWEYER B.D., MEESSCHAERT P.A., VANROLLEGHEM P., DUMOULIN A., Engineering aspects and practical application of autotrophic nitrogen removal from nitrogen rich streams, Chem. Eng. J., 2010, 162, 1.
  • [3] MULDER J.W., VAN LOOSDRECHT M.C., HELLINGA C., VAN KEMPEN R., Full-scale application of the SHARON process for treatment of rejection water of digested sludge dewatering, Water Sci. Technol., 2001, 43 (11), 127.
  • [4] VAN DONGEN U., JETTEN M.S., VAN LOOSDRECHT M.C., The Sharon-anammox process for treatment of ammonium rich wastewater, Water Sci. Technol., 2001, 44 (1), 153.
  • [5] DONG Z., SUN T., Potential new process for improving nitrogen removal in constructed wetlands – promoting coexistence of partial-nitrification and anammox, Ecol. Eng., 2007, 31, 69.
  • [6] JOSS A., SALZGEBER D., EUGSTER J., KNIG R., ROTTERMANN K., BURGER S., FABIJAN P., LEUMANN S., MOHN J., SIEGRIST H., Full-scale nitrogen removal from digester liquid with partial nitritation and anammox in one SBR, Environ. Sci. Technol., 2009, 43, 53.
  • [7] GALÍ A., DOSTA J., MACÉ S., MATA-ALVAREZ J., Comparison of reject water treatment with nitrification/denitrification via nitrite in SBR and SHARON chemostat process, Environ. Technol., 2007, 28, 173.
  • [8] BÜRGMANN H., JENNI S., VAZQUEZ F., UDERT K.M., Regime shift and microbial dynamics in a sequencing batch reactor for nitrification and anammox treatment of urine, Appl. Environ. Microbiol., 2011, 77, 5897.
  • [9] FINLAY B.J., MABERLY S.C., COOPER J.I., Microbial diversity and ecosystem function, Oikos, 1997, 80, 209.
  • [10] ALLISON S.D., MARTINY J.B.H., Resistance, resilience, and redundancy in microbial communities, Proc. Nat. Acad. Sci. U.S.A., 2008, 105, 11512.
  • [11] BOON N., DE WINDT W., VERSTRAETE W., TOM E.M., Evaluation of nested PCR-DGGE (denaturing gradient gel electrophoresis) with group-specific 16S rRNA primers for the analysis of bacterial com-munities from different wastewater treatment plants, FEMS Microbiol. Ecol., 2002, 39, 2, 101.
  • [12] MOURA A., TACAO M., HENRIQUES I., DIAS J., FERREIRA P., CORREIA A., Characterization of bacterial diversity in two aerated lagoons of a wastewater treatment plant using PCR-DGGE analysis, Micro-biol. Res., 2009, 164 (5), 560.
  • [13] GARRIDO L., SÁNCHEZ O., FERRERA I., TOMÀS N., MAS J., Dynamics of microbial diversity profiles in waters of different qualities. Approximation to an ecological quality indicator, Sci. Total Environ., 2014, 468–469, 1154.
  • [14] MUYZER G., DE WAAL E.C., UITIERLINDEN A.G., Profiling of complex microbial populations by denaturing gradient gel electrophoresis analysis of polymerase chain reaction-amplified genes coding for 16S rRNA, Appl. Environ. Microbiol., 1993, 59, 695.
  • [15] INNEREBNER G., INSAM H., FRANKE-WHITTLE I.H., WETT B., Identification of anammox bacteria in a full-scale deammonification plant making use of anaerobic ammonia oxidation, Syst. Appl. Micro-biol., 2007, 30, 408.
  • [16] ZIEMBIŃSKA A., CIESIELSKI S., MIKSCH K., Ammonia oxidizing bacteria community in activated sludge monitored by denaturing gradient gel electrophoresis (DGGE), J. Gen. Appl. Microbiol., 2009, 55, 373.
  • [17] JIN R.-C., YANG G.-F., YU J.-J., ZHENG P., The inhibition of the anammox process. A review, Chem. Eng. J., 2012, 197, 79.
  • [18] GAO F., JIANG Y., XU .,X YE K., ZHOU G., Changes in the composition of the bacterial flora on tray-packaged pork during chilled storage analyzed by PCR-DGGE and real-time PCR, J. Food Sci., 2011, 76, 27.
  • [19] ZIEMBIŃSKA A., CIESIELSKI S., WISZNIOWSKI J., Comparison of PCR-DGGE and nested-PCR-DGGE approach for ammonia oxidizers monitoring in membrane bioreactor activated sludge, Arch. Environ. Prot., 2014, 40 (4), 41.
  • [20] XIA S., LI J., WANG R., Nitrogen removal performance and microbial community structure dynamics response to carbon nitrogen ratio in a compact suspended carrier biofilm reactor, Ecol. Eng., 2008, 32, 256.
  • [21] LIANG Y., LI D., ZHANG X., ZENG Z., CUI S., ZHANG J., Nitrogen removal and microbial characteristics in CANON biofilters fed with different ammonia levels, Bioresour. Technol., 2014, 171, 168
  • [22] ZHANG X., LI D., LIANG Y., HE Y., ZHANG Y., ZHANG J., Autotrophic nitrogen removal from domestic sewage in MBR-CANON system and the biodiversity of functional microbes, Bioresour. Technol., 2013, 150, 113
  • [23] LIU T., LI D., ZENG H., LI X., LIANG Y., CHANG X., ZHANG J., Distribution and genetic diversity of functional microorganisms in different CANON reactors, Bioresour. Technol., 2012, 123, 574.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d443e3bf-9b54-4d58-a935-cde28ed2de72
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