• 제목/요약/키워드: ammonia-oxidizing bacteria

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낙동강에서의 세균군집구조의 역동성 (Dynamics of in situ Bacterial Community Structure in the Nak-Dong River)

  • 박지은;여상민;이영옥
    • 생태와환경
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    • 제37권4호통권109호
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    • pp.363-367
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    • 2004
  • 낙동강 전 수계 8개 정점에서 분자기법인 FISH (Fluorescent in situ Hybridization)법으로 세균군집구조를 비교분석하였다. Eubacteria에 ${\alpha}\;{\cdot}\;{\beta}\;{\cdot}\;{\gamma}-subclasses$ proteobacter CF group 세균의 합이 총세군수에서 차지하는 비율이 9.3-42.5%에서 변화하였고 그 최고치는 히상류, 청량에서 나타났다. 각 세균그룹이 총세균수에서 차지하는 비율이 10% 미만이었으나 최상류에서의 CF그룹이 총세균수에서 차지하는 비율은 23%이었다. 또한 유기물질을 분해해서 빠른 성장을 한다는 ${\gamma}-subclasses$ proteobacteria 세균군이 예상과는 달리 유기오염정도가 높은 하류에 비해 상류에서 더 많이 검출되었다. 아울러 암모니아산화세균은 $2.7-18.0{\times}10^4$ cells $mL^{-1}$의 범위에서 변화하였고 하류에서 최저치를 그리고 최고치는 중류에서 보였다. 반면에 아질산산화세균의 경우, 전수계에 걸쳐 정점간의 별 차이 없이 $5.2-7.7{\times}10^4$ Cells $mL^{-1}$에서 변화하였으며 그들이 총세균수에서 차지하는 비율은 두세균군간의 차이없이 1.0-13.6%에서 변화하였다. 결론적으로 FISH법은 통상적으로 세균군집의 정량적인 분석에 사용되지만 그 결과는 본 연구결과에서 보는 바와 같이 수계 환경의 현황에 관한 좋은 정보를 제공해주기도 한다.

암모니아 산화 세균 Nitrosomonas sp. PK1의 분리 및 특성 (Isolation and Characterization of Ammonia Oxidizing Bacteria, Nitrosomonas sp. PK1)

  • 김대경;김현국;이종석;서근학;김성구;공인수
    • 생명과학회지
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    • 제7권2호
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    • pp.107-111
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    • 1997
  • 양어장에서 어류의 배설물 및 어류에 의해 소비되지 않고 있는 사료에 의한 암모니아성 질소이 제거를 위한 수처리 공법의 하나로써 질산화세균 및 탈질화 세균을 이용한 고정화 방법의 개발을 위해서는 우수한 암모니아 산화능력이 있는 미생물의 분리가 절대적이다. 이를 위하여 여러 곳으로부터 분리한 암모니아 산화 세균 가운데 생유깅 빠르고 $NO_{2}$ 생성이 뛰어난 Nitrosomonas sp. PK1을 선별하였다. 분리된 균의 생육에 따른 $NO_{2}$ 생성은 non-growth asso-ciated pattern을 보여주고 있었다. 또한 생육에 영향을 미치는 탄소원 가운데 glucose가 생유게 가장 좋았으나 농도가 0.1% 이상에서는 오히려 $NO_{2}$생성이 감소되었다. 따라서 고정화 방범에 이용하기 위해서는 생육과 $NO_{2}$생성 능력이 유지를 위한 적절한 생육 배지의 필요성을 보여주었다. Ion 첨가에 의한 영향을 검토한 결과 $ZnCl_{2}$의 첨가가 생육 및 $NO_{2}$ 생성량의 증가를 보여 주었으며 그 농도는 1~10mM로서 제한적임을 나타내었다.

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Detection and Potential Abundances of Anammox Bacteria in the Paddy Soil

  • Khanal, Anamika;Lee, Seul;Lee, Ji-Hoon
    • 한국환경농학회지
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    • 제39권1호
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    • pp.26-35
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    • 2020
  • BACKGROUND: Microbes that govern a unique biochemical process of oxidizing ammonia into dinitrogen gas, such as anaerobic ammonium oxidation (anammox) have been reported to play a pivotal role in agricultural soils and in oceanic environments. However, limited information for anammox bacterial abundance and distribution in the terrestrial habitats has been known. METHODS AND RESULTS: Phylogenetic and next-generation sequencing analyses of bacterial 16S rRNA gene were performed to examine potential anammox bacteria in paddy soils. Through clone libraries constructed by using the anammox bacteria-specific primers, some clones showed sequence similarities with Planctomycetes (87% to 99%) and anammox bacteria (94% to 95%). Microbial community analysis for the paddy soils by using Illumina Miseq sequencing of 16S rRNA gene at phylum level was dominated by unclassified Bacteria at 33.2 ± 7.6%, followed by Chloroflexi at 20.4 ± 2.0% and Acidobacteria at 17.0 ± 6.5%. Planctomycetes that anammox bacteria are belonged to was 1.5% (± 0.3) on average from the two paddy soils. CONCLUSION: We suggest evidence of anammox bacteria in the paddy soil. In addition to the relatively well-known microbial processes for nitrogen-cycle, anammox can be a potential contributor on the cycle in terrestrial environments such as paddy soils.

생물막 반응조에서 아질산염 축적에 미치는 운전인자 영향과 하수슬러지 가용화에 의한 탈질반응의 외부탄소원 공급에 관한 연구 (Influence of Operating Parameters on Nitrite Accumulation in a Biofilm Reactor and Supplement of External Carbon Source for Denitrification by Sewage Sludge Solubilization)

  • 안혜민;이대성
    • 대한환경공학회지
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    • 제35권1호
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    • pp.57-63
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    • 2013
  • 고농도 질소를 함유한 하 폐수를 아질산염 축적 경로를 통하여 처리하고자 생물막공정과 연속혼합반응조의 탈질공정을 결합하여 운전하였다. 생물막 반응조의 폴리에틸렌 담체 표면에 아질산염 산화균에 비해서 암모늄 산화균의 성장을 촉진하여 아질산염을 선택적으로 축적하고자 반응조 온도를 $35^{\circ}C$로 유지하면서 석달 이상 장기간 운전하였음에도 불구하고 유입수 암모늄(500 mg-N/L)의 일부만 아질산염(240 mg-N/L)으로 전환되었다. 하지만 pH를 7.5에서 8.0으로 증가시켰을 때, 아질산염 산화균들이 높은 암모니아 농도에 성장 저해를 받아 생물막 공정에서 아질산염 축적을 성공적으로 이끌어낼 수 있었다. 생물막 공정의 수리학적 체류시간을 12시간으로 운전하였을 때, 반응조의 성능이 급격하게 저하되어 유입수의 암모늄이 완전히 산화되지 않았다. 하수슬러지의 생분해성을 높이기 위해서 다양한 가용화 기술을 적용한 결과, 알칼리와 초음파 처리를 순차적으로 병합하였을 때, 가장 높은 가용화율(58%)을 얻을 수 있었으며, 이를 탈질반응조의 외부탄소으로 사용하였다. FISH 분석결과로부터 담체표면에 암모늄 산화균인 Nitrosomonas와 Nitrospirar계열의 미생물들이 우점종이었으며 일부 아질산염 산화균인 Nitrobacter 계열의 미생물도 소량이지만 관찰되었다.

Analysis and Quantification of Ammonia-Oxidizing Bacteria Community with amoA Gene in Sewage Treatment Plants

  • Hong, Sun Hwa;Jeong, Hyun Duck;Jung, Bongjin;Lee, Eun Young
    • Journal of Microbiology and Biotechnology
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    • 제22권9호
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    • pp.1193-1201
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    • 2012
  • The analysis and quantification of ammonia-oxidizing bacteria (AOB) is crucial, as they initiate the biological removal of ammonia-nitrogen from sewage. Previous methods for analyzing the microbial community structure, which involve the plating of samples or culture media over agar plates, have been inadequate because many microorganisms found in a sewage plant are unculturable. In this study, to exclusively detect AOB, the analysis was carried out via denaturing gradient gel electrophoresis using a primer specific to the amoA gene, which is one of the functional genes known as ammonia monooxygenase. An AOB consortium (S1 sample) that could oxidize an unprecedented 100% of ammonia in 24 h was obtained from sewage sludge. In addition, real-time PCR was used to quantify the AOB. Results of the microbial community analysis in terms of carbon utilization ability of samples showed that the aeration tank water sample (S2), influent water sample (S3), and effluent water sample (S4) used all the 31 substrates considered, whereas the AOB consortium (S1) used only Tween 80, D-galacturonic acid, itaconic acid, D-malic acid, and $_L$-serine after 192 h. The largest concentration of AOB was detected in S1 ($7.6{\times}10^6copies/{\mu}l$), followed by S2 ($3.2{\times}10^6copies/{\mu}l$), S4 ($2.8{\times}10^6copies/{\mu}l$), and S3 ($2.4{\times}10^6copies/{\mu}l$).

SOB(Sulfur Oxidizing Bacteria) Media가 정화조의 수중황화수소 제거에 미치는 영향에 관한 연구 (A study on the Effect of SOB(Sulfur-Oxidizing Bacteria) Media on the Removal of Hydrogen Sulfide in Water of Septic Tank)

  • 송호면;조정일;김택수;권수철;유형식
    • 상하수도학회지
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    • 제27권1호
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    • pp.59-67
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    • 2013
  • The odor occurring in the sewage system induces the displeasure, the disgust such as the headache, the vomit, etc. and increases the spiritual stress and disturbs the pleasant life of residents. These odors occur mainly in the area of combined sewage system treatment, being created in the personal sewage treatment plant such as septic tank and are incoming to sewage pipes and emitted to the outside through the manhole and the receiver, etc.; and this causes odors to the people. The Hydrogen Sulfide, the Methyl Mercaptan, the Ammonia, etc. are materials causing the odor, the more serious issue of odor is occurring since the septic tank of degradation process is being applied. The primary cause of odor is the decomposition of human feces in the septic tanks and sewage disposal facilities. The purpose of this study is reduction of hydrogen sulfide using air supplying and SOB(Sulfur-Oxidizing Bacteria). As a result of this study of the air supply system and the SOB media equipment by air supply, in case the air is injected to SOB media compared to the injection of air only, the removal efficiency the hydrogen sulfide was average 3.4 times higher.

Stability of Partial Nitrification and Microbial Population Dynamics in a Bioaugmented Membrane Bioreactor

  • Zhang, Yunxia;Xu, Yanli;Jia, Ming;Zhou, Jiti;Yuan, Shouzhi;Zhang, Jinsong;Zhang, Zhen-Peng
    • Journal of Microbiology and Biotechnology
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    • 제19권12호
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    • pp.1656-1664
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    • 2009
  • Bioaugmentation of bioreactors focuses on the removal of numerous organics, with little attention typically paid to the maintenance of high and stable nitrite accumulation in partial nitrification. In this study, a bioaugmented membrane bioreactor (MBR) inoculated with enriched ammonia-oxidizing bacteria (AOB) was developed, and the effects of dissolved oxygen (DO) and temperature on the stability of partial nitrification and microbial community structure, in particular on the nitrifying community, were evaluated. The results showed that DO and temperature played the most important roles in the stability of partial nitrification in the bioaugmented MBR. The optimal operation conditions were found at 2-3 mgDO/l and $30^{\circ}C$, achieving 95% ammonia oxidization efficiency and nitrite ratio ($NO_2^-/{NO_x}^-$) of 0.95. High DO (5-6 mg/l) and low temperature ($20^{\circ}C$) had negative impacts on nitrite accumulation, leading to nitrite ratio drop to 0.6. However, the nitrite ratio achieved in the bioaugmented MBR was higher than that in most previous literatures. Denaturing gradient gel electrophoresis (DGGE) and fluorescence in situ hybridization (FISH) were used to provide an insight into the microbial community. It showed that Nitrosomonas-like species as the only detected AOB remained predominant in the bioaugmented MBR all the time, and coexisted with numerous heterotrophic bacteria. The heterotrophic bacteria responsible for mineralizing soluble microbial products (SMP) produced by nitrifiers belonged to the Cytophaga-Flavobacterium-Bacteroides (CFB) group, and $\alpha$-, $\beta$-, and $\gamma$- Proteobacteria. The fraction of AOB ranging from 77% to 54% was much higher than that of nitrite-oxidizing bacteria (0.4-0.9%), which might be the primary cause for the high and stable nitrite accumulation in the bioaugmented MBR.

Importance of culture history on 17α-ethinylestradiol cometabolism by nitrifying sludge

  • Jantanaprasartporn, Angkana;Maneerat, Suppasil;Rongsayamanont, Chaiwat
    • Environmental Engineering Research
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    • 제23권1호
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    • pp.28-35
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    • 2018
  • $17{\alpha}-ethinylestradiol$ (EE2), a synthetic estrogen which interfere the endocrine and reproductive function in living organisms, has been found extensively to be deposited into municipal wastewater treatment plants and the environment via human excretion. EE2 has long been known to be efficiently cometabolized by ammonia-oxidizing bacteria (AOB) during ammonia ($NH_3$) oxidation. Current study aims to investigate the effect of culture history on the biotransformation of EE2 by nitrifying sludge which was enriched under different ammonia loading rates in continuous flow reactors. Result showed that past growth condition largely affected not only the metabolic rate of $NH_3$ oxidation but also EE2 cometabolism. Sludge previously acclimated with higher $NH_3$ loads as well as sludge dominated with AOB belong to high growth cluster (Nitrosomonas europaea-Nitrosococcus mobilis) showed higher rate of EE2 biotransformation than those one being acclimated with lower $NH_3$ loads because of its ability to provide more reducing power from $NH_3$ oxidation. Moreover, the correlation between the degradation rates of $NH_3$ and EE2 was higher in sludge being acclimated with higher load of $NH_3$ in comparison with other sludge. Implication of the findings emphasized the role of volumetric $NH_3$ loading rate in determining EE2 removal in wastewater treatment system.

Impact of Temperature and Alkalinity on Nitrogen Removal in the Start-up Period of Partial Nitrification in a Sequence Batch Reactor

  • Nguyen Van Tuyen;Tran Hung Thuan;Chu Xuan, Quang;Nhat Minh Dang
    • 공업화학
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    • 제34권5호
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    • pp.541-547
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    • 2023
  • The effect of temperature and influent alkalinity/ammonia (K/A) ratio on the start-up of the partial nitrification (PN) process for an activated sludge-based domestic wastewater treatment was studied. Two different sequence batch reactors (SBR) were operated at 26 ℃ and 32 ℃. The relationship between temperature and the concentration of free ammonia (FA) and free acid nitrite (FNA) was investigated. A stable PN process was achieved in the 32 ℃ reactor when the influent ammonium concentration was lower than 150 mg-N/L. In contrast, the PN process in the 26 ℃ reactor had a higher nitrite accumulation rate (NAR) and ammonium removal efficiency (ARE) when the influent ammonia concentration was increased to more than 150 mg-N/L. Then three different ranges of the K/A ratio were applied to an SBR reactor. In the K/A range of 2.48~1.65, the SBR reactor achieved the highest NAR ratio (75.78%). This ratio helps to achieve the appropriate level of alkalinity to maintain a stable pH and provide a sufficient amount of inorganic carbon source for the activity of microorganisms. At the same time, FA and FNA values also reached the threshold to inhibit nitrite-oxidizing bacteria (NOB) without a significant effect on ammonia-oxidizing bacteria (AOB). Results showed that the control of temperature and K/A ratio during the start-up period may be important in establishing a stable and steady PN process for the treatment of domestic wastewater.

실규모 하수처리 생물반응기에서 발견되는 암모니아산화균 군집조성 및 특징 (Characterization and Composition of Ammonia-Oxidizing Bacterial Community in Full- Scale Wastewater Treatment Bioreactors)

  • 박희등
    • 미생물학회지
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    • 제45권2호
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    • pp.112-118
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    • 2009
  • 질소제거 하수고도처리공정에서 암모니아산화균은 질소제거에 핵심 역할을 하는 독립영양세균이다. 하수처리 생물반응기에는 다양한 암모니아산화균이 서식하며 군집조성도 시간에 따라 변화한다. 본 연구에서는 생물반응기의 운전인자 및 환경조건이 암모니아산화균 군집구조의 조성과 다양성에 영향을 미친다는 가설을 설정하였다. 이 가설을 검증하기 위해 질산화 반응이 활발한 포항, Palo Alto, Nine Springs, Marshall 하수처리장 활성슬러지 생물반응기로부터 암모니아산화균의 ammonia monooxygenase subunit A 유전자 clone library를 제작하였다. 하수처리 생물반응기에는 Nitrosomonas europaea, N. oligotropha, N.-like, Nitrosospira lineage에 속하는 암모니아산화균이 주로 발견되었으며, N. communis, N. marina, N. cryotolerans lineage에 속하는 암모니아산화균은 주종을 이루지 못했다. 암모니아산화균 군집조성은 하수처리장별로 차이를 보였는데, 포항, Palo Alto, Marshall 하수처리장에서는 N. oligotropha lineage에 속하는 암모니아산화균이 가장 빈번히 발견되었고, Nine Springs 하수처리장에서는 N. europaea lineage에 속하는 암모니아산화균이 주종을 이루었다. 한편, 암모니아산화균 군집조성과 생물반응기 운전인자(HRT, SRT, MLSS) 및 환경조건(온도, pH, COD, $NH_3$, $NO_3{^-}$)의 연관성은 다변수 통계분석법인 Redundancy Analysis 방법을 이용하여 분석하였다. 그 결과, 생물반응조의 COD와 $NO_3{^-}$ 농도가 하수처리 생물반응기에서 암모니아산화균 군집구조를 결정하는 통계학적으로 유의한 변수로 나타났다.