• 제목/요약/키워드: anaerobic/aerobic treatment

검색결과 181건 처리시간 0.021초

Estimation of Dominant Bacterial Species in a Bench-Scale Shipboard Sewage Treatment Plant

  • Mansoor, Sana;Ji, Hyeon-Jo;Shin, Dae-Yeol;Jung, Byung-Gil;Choi, Young-Ik
    • 한국환경과학회지
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    • 제28권10호
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    • pp.899-905
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    • 2019
  • Recently, an innovative method for wastewater treatment and nutrient removal was developed by combining the sequence batch reactor and membrane bioreactor to overcome pollution caused by shipboard sewage. This system is a modified form of the activated sludge process and involves repeated cycles of mixing and aeration. In the present study, the bacterial diversity and dominant microbial community in this wastewater treatment system were studied using the MACROGEN next generation sequencing technique. A high diversity of bacteria was observed in anaerobic and aerobic bioreactors, with approximately 486 species. Microbial diversity and the presence of beneficial species are crucial for an effective biological shipboard wastewater treatment system. The Arcobacter genus was dominant in the anaerobic tank, which mainly contained Arcobacter lanthieri (8.24%), followed by Acinetobacter jahnsonii (5.81%). However, the dominant bacterial species in the aerobic bioreactor were Terrimonas lutea (7.24%) and Rubrivivax gelatinosus (4.95%).

OSA 공정의 세포 내 ATP, NAD(H), NADP(H) 농도 (Intracellular Concentrations of NAD(P), NAD(P)H, and ATP in a Simulated Oxic-settling-anaerobic (OSA) Process)

  • 벤추라 제이알;남지현;양빈친;나리;길혜진;남덕현;강기훈;장덕진
    • 한국물환경학회지
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    • 제31권6호
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    • pp.599-609
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    • 2015
  • OSA (oxic-settling-anaerobic)공정은 종래 활성슬러지법(conventional activated sludge)의 잉여슬러지 감량을 목적으로 슬러지 반송라인에 혐기조가 추가된 공정이다. 본 연구에서는 호기조(1)-혐기조-호기조(2)가 순차적으로 구성된 OSA 모의공정의 슬러지 감량원리를 조사하기 위해 각 반응조의 세포 내 에너지 전달물질(ATP, NAD(H), NADP(H)) 변화를 관찰하였다. 시간이 경과함에 따라 호기조 및 혐기조 모두 에너지전달물질이 급격히 감소하였다. 혐기조의 경우 호기조(1)과 (2)보다 낮은 에너지를 함유하는 것으로 나타났으며, 혐기조를 거친 호기조(2)의 경우 호기조(1) 보다 에너지 전달물질이 낮은 수준으로 관찰되었다. 또한, OSA 공정에서 내생호흡을 유도하여 슬러지를 감량하는 혐기조의 화학적 산소요구량 (SCOD), 체류시간 및 온도변화에 따른 호기조(1)과 (2)의 에너지량 차이를 확인한 결과 낮은 농도의 SCOD, 긴 체류시간 및 높은 온도는 호기조(2)의 세포 내 에너지량을 감소시켰다. 혐기조 및 호기조(2)의 세포 내 에너지 수준은 각각 호기조(1)의 57.73% 및 39.12% 수준으로, 두 단계의 호기조 사이에 추가된 혐기조는 OSA 공정의 세포 내 에너지 수준을 낮출 뿐 아니라, CAS 공정보다 적은 양의 슬러지가 생산하였다. 본 연구결과를 토대로, 호기조 사이에 추가된 혐기조의 운전조건에 따라 각 반응조의 세포 내 에너지 수준의 조절뿐만 아니라 잉여슬러지의 생성을 제어할 수 있을 것이라 생각된다.

자연정화공법에 의한 인공습지 하수처리장에서 하수처리 공정개선에 따른 질소 및 인의 처리효율 향상 방안 (A Study on the Improvement of Treatment Efficiency for Nitrogen and Phosphorus by Improved Sewage Treatment Process in Constructed Wetland by Natural Purification Method)

  • 서동철;박우영;임종서;박찬훈;이홍재;김홍출;이상원;이도진;조주식;허종수
    • 한국환경농학회지
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    • 제27권1호
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    • pp.27-34
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    • 2008
  • 농어촌 등에서 소규모로 발생하는 하수를 자연정화공법 의한 인공습지에서 효과적으로 처리하기 위하여 소형 하수처리장치를 호기성조 및 혐기성조로 구분하여 시공한 다음, 최적 하수 부하량을 조사하기 위해 하수 부하량별 오염물질의 처리효율을 조사한 결과 호기-혐기 조합형 소형 하수처리장에서 전반적으로 하수 부하량이 증가함에 따라 오염물질의 처리효율이 점점 감소하는 경향으로 특히 하수부하량 300 $Lm^{-2}day^{-1}$ 이상에서 수처리효율의 감소폭이 약간 컸다. 따라서 본 소형 하수처리장에서 BOD, $COD_{Mn}$, 탁도, T-N 및 T-P를 안정적으로 처리하기 위한 최적 부하량은 300 $Lm^{-2}day^{-1}$ 이었고, 이 때의 방류수 중 BOD, $COD_{Mn}$, 탁도, T-N 및 T-P의 처리효율은 각각 99, 94, 99, 49 및 89%로 현행 방류수 수질기준을 만족하면서 안정적으로 처리되었다. 하지만 본 소형 하수처리장에서 방류수 중의 T-N 및 T-P 함량은 각각 $28.5{\sim}29.4$$0.9{\sim}2.1mgL^{-1}$ 정도로서 앞으로 질소와 인의 방류수 수질기준이 각각 20 및 2 $mgL^{-1}$로 강화됨에 따라 보다 안정적인 수처리를 위해서는 T-N 및 T-P 처리효율을 향상시켜야 할 것으로 판단된다. 이에 최적 하수 부하량하에서 질소와 인의 강화될 방류수 수질기준(질소 20 $mgL^{-1}$ 및 인 2 $mgL^{-1}$)을 만족시키면서 안정적인 하수처리를 위한 최적의 수처리 공정개선 방안을 조사하였다. 호기-혐기 조합형 소형 하수처리장에서 수처리 공정개선 중 질소 및 인의 처리효율 향상이 가능한 방안은 혐기성조의 깊이 및 여재 입경 변경과 여재에 굴패각을 혼합한 방법이었다. 혐기성조의 깊이 및 여재 입경 변경 조건 중 혐기성조 1.5 m 깊이에서 여재 A(유효입경 1.50 mm)를 사용한 경우 T-N 및 T-P의 처리효율을 각각 10 및 3% 향상시켰고, 여재에 굴패각 혼합한 경우 T-N 및 T-P의 처리효율을 각각 14 및 7% 향상시켰다. 또한 동일한 조의 체적하에서 혐기성조의 깊이를1.5 m로 깊게한 것은 혐기성조 깊이 1 m에 비해 부지면적을 약 33% 정도 감소시킬 수 있을 것으로 판단되며, 또한 굴패각을 사용한 것은 폐기물의 재활용면에서도 매우 효과적인 방안으로 사용될 수 있을 것으로 판단된다.

Anaerobic Biotreatment of Animal Manure - A review of current knowledge and direction for future research -

  • Hong, Jihyung
    • 한국축산시설환경학회지
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    • 제11권2호
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    • pp.97-102
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    • 2005
  • Anaerobic decomposition is one of the most common processes in nature and has been extensively used in waste and wastewater treatment for several centuries. New applications and system modifications continue to be adapted making the process either more effective, less expensive, or suited to the particular waste in question and the operation to which it is to be applied. Animal manure is a highly biodegradable organic material and will naturally undergo anaerobic fermentation, resulting in release of noxious odors, such as in manure storage pits. Depending on the presence or absence of oxygen in the manure, biological treatment process may be either aerobic or anaerobic. Under anaerobic conditions, bacteria carry on fermentative metabolisms to break down the complex organic substances into simpler organic acids and then convert them to ultimately formed methane and carbon dioxide. Anaerobic biological systems for animal manure treatment include anaerobic lagoons and anaerobic digesters. Methane and carbon dioxide are the principal end products of controlled anaerobic digestion. These two gases are collectively called biogas. The biogas contains $60\~70\%$ methane and can be used directly as a fuel for heating or electrical power generation. Trace amounts of ammonia and hydrogen sulfide ($100\~300\;ppm$) are always present in the biogas stream. Anaerobic lagoons have found widespread application in the treatment of animal manure because of their low initial costs, ease of operation and convenience of loading by gravity flow from the animal buildings. The main disadvantage is the release of odors from the open surfaces of the lagoons, especially during the spring warm-up or if the lagoons are overloaded. However, if the lagoons are covered and gases are collected, the odor problems can be solved and the methane collected can be used as a fuel. Anaerobic digesters are air-tight, enclosed vessels and are used to digest manure in a well-controlled environment, thus resulting in higher digestion rates and smaller space requirements than anaerobic lagoons. Anaerobic digesters are usually heated and mixed to maximize treatment efficiency and biogas production. The objective of this work was to review a current anaerobic biological treatment of animal manure for effective new technologies in the future.

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Treatment Characteristics of Wastewater with Flow Rate Variation in Anaerobic-Aerobic Activated Sludge Process

  • Min-Gyu Lee;Kue
    • 한국환경과학회지
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    • 제1권1호
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    • pp.11-17
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    • 1992
  • The treatment performances of anaerobic-aerobic activated sludge Process were investigated under various operation conditions. The treatment system proposed in this study gave a relatively stable performance against hourly change of the flow rate and showed a satisfactory removal efficiency of nitrogen and phosphorus compounds under experimental conditions. The average removal efficiency of total nitrogen gradually decreased as the influent total nitrogen concentration was increased. High C/N ratio of the wastewater was required for the complete removal of nitrogen. Glucose as a carbon source was more efficient than starch and the removal ability for all components become hither with the increase of the fraction of glucose.

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MEMBRANE FORLING MECHANIMS IN MEMBRANE-COUPLES ANAEROBIC BIOREACTOR

  • Choo, Kwang-Ho;Lee, Chung-Hak
    • 한국막학회:학술대회논문집
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    • 한국막학회 1993년도 춘계 총회 및 학술발표회
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    • pp.41-41
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    • 1993
  • Recently, the advanced membrane separation technology has even been applied to the post treatment to biological process of wastewater treatment, since the efficiency of biological treatment significantly depends on maintaining a high biomass concentration in the bioreator. Particularly, anaerobic microbes in the biological system have slower growth rates than aerobic microbes and thus it takes a long hydaulic retention time(HRT) to prevent biomass washout in the completely mixed anaerobic digester. The anaerobic sludge also has poor settleability owing to its diffusible and somewhat filamentous nature. Moreover, the residual gasification and consequent sludge rise in the clarifier compartment become a considerable problem, which proves that complete separation of biological solids is difficult.

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이상 혐기성 막공정에 의한 침출수 처리 모니터링 (Monitoring of the Treatment of Leachate by Two Phase Anaerobic Membrane Process (TPAMP))

  • 황문현;현승훈;장남정;조재원;김인수
    • 한국물환경학회지
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    • 제18권2호
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    • pp.151-157
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    • 2002
  • Landfill leachate is one of highly contaminated and heterogeneous wastewater. The leachate from initial landfill can be treated by anaerobic process because it contains biodegradable matters, particularly, volatile fatty acids (VFAs). However, the anaerobic treatment of leachate is generally required longer hydraulic retention time (HRT) than aerobic process and another treatment process to satisfy effluent concentration. Therefore the modification of conventional anaerobic treatment is needed. Two phase anaerobic membrane process (TPAMP) is an integrated membrane process to be able to separate anaerobic metabolism into two phase which are acidogenesis and methanogenesis for improvement of anaerobic treatment efficiency. In this study, the efficiency of TPAMP and conventional anaerobic treatment were compared in terms of HRT, effluent SCOD, VFAs Membrane used in TPAMP was the UF of capillary type with the surface area of $0.048m^2$. The average effluent SCOD of conventional anaerobic treatment was 1352 mg/L and the removal was 96 % at HRT 60 days, while in TPAMP, 927 mg/L and 98% at HRT 30 days.

PAA 포괄법에 의한 고정화 슬러지의 제조 및 특성에 관한 연구 (Preparation and Characteristics of Immobilized Sludge by the PAA Entrapment Method)

  • 최석순
    • 한국환경보건학회지
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    • 제28권3호
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    • pp.49-54
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    • 2002
  • Poly acrylamide(PAA)와 활성슬러지를 포괄법 에 의하여 고정화 담체를 제조하였다. 이 고정 화 담체를 이용하여 폐수처리에서의 적용 가능성과 특성을 조사하였다. 본 연구에서는 실제 폐수처리 공정에 적합한 12% acrylamide농도의 담체를 구하였다. 그리고 sequencing batch reactor(SBR)에서 30일 동안 운전한 결과, TOC와 인의 제거효율이 각각 95%와 70%를 나타내었다. 또한 이 연구 결과로부터 반복적인 혐기와 호기 조건의 사이클 운전이 TOC와 인의 제거효율을 향상시킴을 알 수 있었으며, 운전기간 중에 PAA고정화 담체는 깨짐이 없이 사용되었다.

Simultaneous Nitrification and Denitrification by Anaerobic-Aerobic Biological Packed Bed Process

  • Lee, Min-Gye;Ju, Chang-Sik;Lee, Byung-Hyun;Kim, Jung-Kyun;Tadashi Hano
    • Journal of Life Science
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    • 제9권2호
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    • pp.40-43
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    • 1999
  • In the wastewater treatment experiment by anaerobic-aerobic packed bed unit, it was found that the high and stable removal efficiency of nitrogen could be obtained. The extent of nitrogen removal gradually decreased with the rise of recycle ratio and DO concentration. On the other hand, the extent of phosphorus increased with the increase of DO concentration. COD showed high removal efficiency over the entire range tested. The simulation of T-N behavior was carried out satisfactorily by using the kinetic equations for biofilm and the reactor model which considered the packed bed as a plug flow reactor.

The BNR-MBR(Biological Nutrient Removal-Membrane Bioreactor) for nutrient removal from high-rise building in hot climate region

  • Ratanatamskul, C.;Glingeysorn, N.;Yamamoto, K.
    • Membrane and Water Treatment
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    • 제3권2호
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    • pp.133-140
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    • 2012
  • The overall performance of BNR-MBR, so-called Anoxic-Anaerobic-Aerobic Membrane Bioreactor ($A^3$-MBR), developed for nutrient removal was studied to determine the efficiencies and mechanisms under different solid retention time (SRT). The reactor was fed by synthetic high-rise building wastewater with a COD:N:P ratio of 100:10:2.5. The results showed that TKN, TN and phosphorus removal by the system was higher than 95%, 93% and 80%, respectively. Nitrogen removal in the system was related to the simultaneous nitrification-denitrification (SND) reaction which removed all nitrogen forms in aerobic condition. SND reaction in the system occurred because of the large floc size formation. Phosphorus removal in the system related to the high phosphorus content in bacterial cells and the little effects of nitrate nitrogen on phosphorus release in the anaerobic condition. Therefore, high quality of treated effluent could be achieved with the $A^3$-MBR system for various water reuse purposes.