• 제목/요약/키워드: Heterotrophic nitrification

검색결과 21건 처리시간 0.021초

분뇨처리장의 질소성 악취물질처리를 위한 생물탈취탑내 종속영양세균의 분포 및 특성 (Distribution and Characterization of Heterotrophic Bacteria Isolated from Deodorizing Biofilters of a Nightsoil Treatment Plant)

  • 정현미;권오영;김동빈;류재근
    • 미생물학회지
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    • 제34권4호
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    • pp.200-206
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    • 1998
  • 암모니아와 아민류가 주된 악취원인 실가동 분뇨처리장의 악취가스를 생물탈취탑에서 처리하기위한 연구의 일환으로 다양한 비율의 소나무 껍질, 분변토, 퇴비로 구성된 생물여재를 적용하는 탈취탑 여재내의 세균 분포 및 특성을 조사하였다. 153일간 사용한 탈취탑내 여재(이하 사용후)와 악취처리에 사용하지 않은(이하 사용전) 여재 각각을 대상으로 하였다. 그 결과 사용전 여재는 질산화한천 배지, 황산화한천 배지, 표준한천 배지 상에서 g당 $10^7{\sim}10^8$ 수준의 세균이 존재하였고 사용후 여재 역시 $10^5{\sim}10^7$에 이르는 다량의 세균이 존재하였다. 또한 질산화한천 배지에서 사용전 여재와 사용후 여재 모두 큰 차이 없이 간균과 구균이 존재하였다. 종속영양 세균 총 45주를 분리하여 동정한 결과 Pseudomonas, Bacillus, Flavobacterium, Alcaligenes속 등이 분리되었으며, 그 중 21주는 질산화한천 배지 상에서 집락을 형성한 것을 표준한천 배지에서 재 분리하여 동정하였는데 표준한천 배지 상에서 직접 분리한 분리주보다 Alcaligenes가 특징적으로 많이 분리되었다. Alcaligenes는 사용후 여재에서 높은 비중으로 검출되었고, 처리가 우수한 분변토 혼합여재에서의 검출비중이 소나무껍질여재보다 높아 생물탈취처리의 기여도가 높은 것으로 사료되었다.

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Measurement of Ordinary Heterotrophic Organism Active Biomass in Activated Sludge Mixed Liquor: Evaluation and Comparison of the Quantifying Techniques

  • Lee, Byung Joon;Wentzel, Mark;Ekama, George;Choi, Yun Young;Choi, Jung Woo
    • Environmental Engineering Research
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    • 제19권1호
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    • pp.91-99
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    • 2014
  • Ordinary heterotrophic organism (OHO) active biomass plays key roles in biological wastewater treatment processes. However, due to the lack of measurement techniques, the OHO active biomass exists hypothetically within the design and simulation of biological wastewater treatment processes. This research was purposed to develop a quick and easy quantifying technique for the OHO active biomass applying a modified batch aerobic growth test. Two nitrification-denitrification activated sludge systems, with 10- and 20-day sludge ages, were operated to provide well-cultured mixed liquor to the batch tests. A steady state design model was firstly applied to quantify the "theoretical" OHO active biomass concentration of the two parent systems. The mixed liquor from the parent systems was then inoculated to a batch growth test and a batch digestion test to estimate the "measured" OHO active biomass concentration in the mixed liquor. The measured OHO active biomass concentrations with the batch growth test and the batch digestion test were compared to the theoretical concentrations of the parent system. The measured concentrations with the batch growth test were generally smaller than the theoretical concentrations. However, the measured concentrations with the batch aerobic digestion tests showed a good correlation to the theoretical concentrations. Thus, a different microbial growth condition (i.e., a higher food/biomass ratio) in the batch growth test, compared to the parent system or the batch digestion test, was found to cause underestimation of the OHO active biomass concentrations.

식종원 및 유기물 농도 변화에 따른 평판형 외기환원전극 미생물 연료전지의 질소 제거 (Nitrogen Removal in Flat-Panel Air-Cathode Microbial Fuel Cell according to Various Inoculum Sources and Organic Concentration)

  • 박영현;유재철;;이태호
    • 대한환경공학회지
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    • 제38권12호
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    • pp.635-640
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    • 2016
  • 미생물연료전지(MFC)는 하 폐수내의 유기물로부터 전기를 생산할 수 있는 획기적인 기술이지만, 실용화를 위해서는 하 폐수 내의 질소를 제거할 수 있어야 한다. 본 연구에서는 두 개의 대면적 SEA (separator electrode assembly)로 구성된 평판형 외기환원전극 미생물연료전지(FA-MFC)를 이용하여 질산화 전배양의 유무와 식종원에 따른 총질소제거율을 평가하였다. 질산화 전배양 단계에서 FA-MFC의 질산화율은 식종원과는 무관하게 99% 이상을 나타냈다. 질산화 및 탈질 단계에서 300 mg-COD/L 이하의 낮은 유기물 농도에서는 전배양을 하지 않은 조건의 총질소제거율이 가장 높았다. 유기물 농도가 증가할수록 더 높은 총질소제거율을 나타냈으며, 유기물제거율은 모든 조건에서 95% 이상을 나타냈지만, 종속영양탈질에만 이용되지는 않은 것으로 판단된다. FA-MFC의 전기 발생량은 매우 낮았지만, 유기물과 질소를 동시에 제거할 수 있다는 장점이 있기 때문에 획기적인 하 폐수처리공법으로 발전시킬 수 있으리라 기대된다.

Heterotrophic nitrification-aerobic denitrification potential of cyanide and thiocyanate degrading microbial communities under cyanogenic conditions

  • Mekuto, Lukhanyo;Kim, Young Mo;Ntwampe, Seteno K.O.;Mewa-Ngongang, Maxwell;Mudumbi, John Baptist N.;Dlangamandla, Nkosikho;Itoba-Tombo, Elie Fereche;Akinpelu, E.A.
    • Environmental Engineering Research
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    • 제24권2호
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    • pp.254-262
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    • 2019
  • The impact of free cyanide ($CN^-$) and thiocyanate ($SCN^-$) on the $CN^-$ (CDO) and $SCN^-$ degraders (TDO) to nitrify and denitrify aerobically was evaluated under alkaline conditions. The CDO's were able to nitrify under cyanogenic conditions, achieving $NH_4{^+}-N$ removal rates above 1.66 mg $NH_4{^+}-N.L^{-1}.h^{-1}$, except when $CN^-$ and $SCN^-$ loading was 15 mg $CN^-/L$ and 50 mg $SCN^-.L^{-1}$, respectively, which slightly inhibited nitrification. The TDO's were able to achieve a nitrification rate of 1.59 mg $NH_4{^+}-N.L^{-1}.h^{-1}$ in the absence of both $CN^-$ and $SCN^-$, while the presence of $CN^-$ and $SCN^-$ was inhibitory, with a nitrification rates of 1.14 mg $NH_4{^+}-N.L^{-1}.h^{-1}$. The CDO's and TDO's were able to denitrify aerobically, with the CDO's obtaining $NO_3{^-}-N$ removal rates above 0.67 mg $NO_3{^-}-N.L^{-1}.h^{-1}$, irrespective of the tested $CN^-$ and $SCN^-$ concentration range. Denitrification by the TDO's was inhibited by $CN^-$, achieving a removal rate of 0.46 mg $NO_3{^-}-N.L^{-1}.h^{-1}$ and 0.22 mg $NO_3{^-}-N.L^{-1}.h^{-1}$ when $CN^-$ concentration was 10 and 15 mg $CN^-.L^{-1}$, respectively. However, when the CDO's and TDO's were co-cultured, the nitrification and aerobic denitrification removal rates were 1.78 mg $NH_4{^+}-N.L^{-1}.h^{-1}$ and 0.63 mg $NO_3{^-}-N.L^{-1}.h^{-1}$ irrespective of $CN^-$ and $SCN^-$ concentrations.

2단 간헐폭기 시스템에서 aeration cycle이 질소 및 인 제거에 미치는 영향 (Influence of Aeration Cycle on Nitrogen and Phosphorus Removal in Two-Stage Intermittent Aeration System)

  • 정명선;이준호;서광범;김영관
    • 산업기술연구
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    • 제23권A호
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    • pp.193-197
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    • 2003
  • This bench-scale research investigated the aeration cycle(on/off) as the controlling factors for nitrogen and phosphorus removal in a 2-stage, intermittent aeration process. At this experiment, the aeration cycle time(air-on/air-off) was 30min/30min, 60min/60min, 90min/90min. Organic matter removal was observed more than 90% regardless of the aeration cycle and phosphorus removal was relatively high when the aeration cycle time was 60min/60min On the other hand. For all of the aeration cycle, TN removal was appeared less than 55%. This result was probably due to the limitation of the external substrate for heterotrophic nitrification and aerobic denitrification.

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암모니아 센서를 이용한 간헐폭기 Membrane bioreactor공정에서의 전력비 저감과 관형막을 이용한 슬러지 농축에 관한 연구 (A study on an intermittent aeration membrane bioreactor system using ammonia sensor to decrease energy consumption and sludge concentration by tubular membrane)

  • 강희석;이의종;김형수;장암
    • 상하수도학회지
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    • 제28권2호
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    • pp.161-170
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    • 2014
  • It is essential to decrease energy consumption and excess sludge to economically operate sewage treatment plant. This becomes more important along with a ban on sea dumping and exhaustion of resource. Therefore, many researchers have been study on energy consumption reduction and strategies for minimization of excess sludge production from the activated sludge process. The aeration cost account for a high proportion of maintenance cost because sufficient air is necessary to keep nitrifying bacteria activity of which the oxygen affinity is inferior to that of heterotrophic bacteria. Also, additional costs are incurred to stabilize excess sludge and decrease the volume of sludge. There were anoxic, aerobic, membrane, deairation and concentration zone in this MBR process. Continuous aeration was provided to prevent membrane fouling in membrane zone and intermittent aeration was provided in aerobic zone through ammonia sensor. So, there was the minimum oxygen to remove $NH_4-N$ below limited quantity that could be eliminated in membrane zone. As the result of this control, energy consumption of aeration system declined by between 10.4 % and 19.1 %. Besides, we could maintain high MLSS concentration in concentration zone and this induced the microorganisms to be in starved condition. Consequentially, the amount of excess sludge decrease by about 15 %.

ASBF 생물반응기를 이용한 COD 및 질소 제거특성 (Removal Characteristics of COD and Nitrogen by Aerated Submerged Bio-film(ASBF) Reactor)

  • 최영익;정병길;손희종;성낙창
    • 대한환경공학회지
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    • 제29권9호
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    • pp.997-1002
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    • 2007
  • 본 연구의 목적은 pilot scale ASBF(호기성 침지형 생물막) 반응기를 이용하여 용해성 유기물과 질소화합물의 제거실험을 하였으며, 고정생물막 내에서의 용해성 유기물과 질소화합물 제거를 통한 종속영양미생물 및 독립영양미생물의 동적관계를 이해하고 개선하고자 하였다. 또한, 침지형 생물막 표면에 질산화 박테리아의 성장을 촉진시키기 위해 특별하게 설계한 구조를 라군에 추가하여 폐수처리 효과의 강화 가능성을 조사하였다. 침지형 생물막에 공기 기포가 직접적으로 접촉할 수 있도록 하였으며, 특히 낮은 온도에서 ASBF 실험장치의 용해성 유기물과 암모니아성질소 제거효과를 살펴보기 위해 회분식으로 운전하였다. 본 연구의 ASBF 반응조는 향후 용해성 유기물과 질소화합물의 제거를 위해 기존 폐수처리장 뿐만 아니라 신설 폐수처리장에도 확대 적용될 수 있을 것으로 기대 된다.

황입자를 이용한 T. denitrificans에 의한 질소제거 최적화 연구 (A Study on characteristics analysis of autotrophic denitrification microbial community using sulfur granule)

  • 유수철;주재영;남덕현;박철휘
    • 상하수도학회지
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    • 제22권2호
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    • pp.259-265
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    • 2008
  • Generally speaking, there are two widely used methods of Nitrogen removal from waste water: 1) nitrification using autotrophic microorganisms, and 2) denitrification using heterotrophic microorganisms. The C/N ratio is an important factor of the denitrification process. In this case, if methanol is added to increase the lacking organic matter, a high economic cost is incurred and methanol is left in the processed water. In an effort to fix these issues, autotrophic denitrification through the use of Hydrogen, Iron and Sulfur is being studied, and among those Sulfur is cheaper and carries out denitrification effectively, and therefore is being studied the most. In this study, after cultivating T. denitrificans, the presence of T. denitrificans was determined and the effectiveness of denitirification via T. denitrificans was studied. In order to find out about the inhibition of T. denitrificans from the loading of organic matter, this shows that the greater the loading of organic matter, the more the denitrification ability of T. denitrificans is hindered. In order to research the hindrance of T. denitrificans resulting from the loading of $NO_3{^-}-N$, these results show that concentrations less than 100mg/L per 100mL of gel volume do not hinder T. denitrificans. In order to research the optimization of denitrification resulting from T. denitrificans, three 500mL samples of Sulfur granules were prepared: 1) one with only T. denitrificans attached (Mode I), 2) one with both T. denitrificans and active sludge attached (Mode II), and 3) one with only active sludge attached (Mode III). The results showed that autotrophic denitrification using S from Mode I was the most active.

Cu2+, Al3+, Zn2+이 활성슬러지에 미치는 저해영향 평가 (Evaluation of the Inhibitory Effect of Cu2+, Al3+ and Zn2+ on the Activated Sludge)

  • 김창규;김요용;박익범;송진호;남우경;한송희;김복준;오조교
    • 한국물환경학회지
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    • 제31권2호
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    • pp.87-93
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    • 2015
  • In this study, the inhibitory effect of toxic metals was investigated on the activated sludge of the municipal sewage treatment plant. The allowable concentration of toxic metals was also estimated for the stable operation of the biological treatment process. The single and mixture toxicity of $Cu^{2+}$, $Al^{3+}$ and $Zn^{2+}$ were evaluated for the activated sludge microorganisms. As a result, nitrifying microorganisms were more susceptible than heterotrophic microorganisms. $IC_{10}$ (Inhibition Concentration of 10%) of $Cu^{2+}$, $Al^{3+}$ and $Zn^{2+}$ for the nitrifying microorganisms was 3 mg/L, 7 mg/L and 25 mg/L, respectively. The mixture toxicity showed three times more sensitive than the single toxicity. The concentrations of $Cu^{2+}$, $Al^{3+}$ and $Zn^{2+}$ to minimize the inhibitory effect on organic matter removal and nitrification in batch experiments were found to be 1.3 mg/L, 2.5 mg/L and 6.3 mg/L.

Dominance of Endospore-forming Bacteria on a Rotating Activated Bacillus Contactor Biofilm for Advanced Wastewater Treatment

  • Park, Seong-Joo;Yoon, Jerng-Chang;Shin, Kwang-Soo;Kim, Eung-Ho;Yim, Soo-Bin;Cho, Yeon-Je;Sung, Gi-Moon;Lee, Dong-Geun;Kim, Seung-Bum;Lee, Dong-Uk;Woo, Sung-Hoon;Koopman, Ben
    • Journal of Microbiology
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    • 제45권2호
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    • pp.113-121
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    • 2007
  • The bacterial diversity inherent to the biofilm community structure of a modified rotating biological contactor wastewater treatment process, referred to as the Rotating Activated Bacillus Contactor (RABC) process, was characterized in this study, via both culture-dependent and culture-independent methods. On the basis of culture-dependent methods, Bacillus sp. were found to exist in large numbers on the biofilm (6.5% of the heterotrophic bacteria) and the microbial composition of the biofilms was quite simple. Only three phyla were identified-namely, the Proteobacteria, the Actinobacteria (High G+C Gram-positive bacteria), and the Firmicutes (Low G+C Gram-positive bacteria). The culture-independent partial 16S rDNA sequence analysis revealed a considerably more diverse microbial composition within the biofilms. A total of eight phyla were recovered in this case, three of which were major groups: the Firmicutes (43.9%), the Proteobacteria (28.6%), and the Bacteroidetes (17.6%). The remaining five phyla were minor groups: the Planctomycetes (4.4%), the Chlorobi (2.2%), the Actinobacteria (1.1%), the Nitrospirae (1.1%), and the Verrucomicrobia (1.1%). The two most abundant genera detected were the endospore-forming bacteria (31.8%), Clostridium and Bacillus, both of which are members of the Firmicutes phylum. This finding indicates that these endospore-forming bacteria successfully colonized and dominated the RABC process biofilms. Many of the colonies or clones recovered from the biofilms evidenced significantly high homology in the 16S rDNA sequences of bacteria stored in databases associated with advanced wastewater treatment capabilities, including nitrification and denitrification, phosphorus accumulation, the removal of volatile odors, and the removal of chlorohydrocarbons or heavy metals. The microbial community structures observed in the biofilms were found to correlate nicely with the enhanced performance of advanced wastewater treatment protocols.