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      • KCI등재

        티오황산염을 이용한 황탈질과 Free Nitrous Acid의 영향

        안조환 ( Jo Hwan Ahn ),배우근 ( Woo Keun Bae ) 한국물환경학회 2014 한국물환경학회지 Vol.30 No.2

        A sequencing batch reactor (SBR) was operated to obtain thiosulfate-utilizing denitrifier cultivated with two types of electron accepter (nitrate and nitrite). Using the microbial biomass obtained from the SBR, batch tests were conducted with different nitrite concentrations (50 and 100 mg-N/L) at pH 7.0, 7.5 and 7.9 to see how free nitrous acid (FNA) negatively works on the thiosulfate-utilizing denitrification of nitrate. The specific denitrification rate (SDR) of nitrate was significantly influenced by pH and FNA. The presence of nitrite caused a remarked decrease of the SDR under low pH conditions, because of the microbiological inhibitory effect of FNA. The minimum SDR was observed when initial nitrite concentration was 100 mg-N/L at pH 7.0. Moreover. the SDR was influenced by the type of electron acceptor used during the SBR operation. Thiosulfateutilizing denitrifier cultivated with nitrite showed smaller SDR on the thiosulfate-utilizing denitrification of nitrate than those cultivated with nitrate.

      • KCI등재

        생물학적 회분식 인 제거 공정에서 pH의 영향과 그래뉼 생성

        안조환 ( Jo Hwan Ahn ),( Robert Seviour ) 한국물환경학회 2011 한국물환경학회지 Vol.27 No.6

        A sequencing batch reactor (SBR) was operated under different pH conditions to better understand the influence of pH to granulation in enhanced biological phosphorus removal systems. Granules from the SBR were also investigated using scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDX). Considerable decreases in the amount of phosphorus released per substrate provided under anaerobic conditions and the content of biomass polyphosphate under aerobic conditions were observed when pH was changed from 7.5 to 7.0, followed by 6.5. Aerobic granulation was also observed at pH 7.0. A number of bacteria with the typical morphological traits of tetrad-forming organisms (TFOs) were observed at pH 7.0, including large members of cluster. Filamentous bacteria were also there in large numbers. The occurrence and growth of granules were further enhanced at pH 6.5. A SEM analysis showed that the aerobic granules had a compact microbial structure with shaperical shape and morphologically consisted of aggregates of small coccoid bacteria and filamentous bacteria encapsulated by extracellular polymeric substance. The main material ions identified by EDX moreover revealed that the structural materials for polyphosphate in the granules include phosphorus, potassium and calcium. Therefore, these results strongly suggested that PAOs are a dominant population in the microbial community of the aerobic granules.

      • KCI등재

        암모니아 부분산화 공정의 제어와 미생물 군집의 변화

        안조환 ( Jo Hwan Ahn ) 한국물환경학회 2015 한국물환경학회지 Vol.31 No.4

        A sequencing batch reactor was operated under different pH conditions to see the influence of free ammonia (FA) and free nitrous acid (FNA) to microbial community on ammonium partial nitrification. Long-term influences of FA and FNA were evaluated by polymerase chain reaction-denaturing gradient gel electrophoresis and fluorescence in situ hybridization. Nitrite accumulation was successfully achieved at pH 8.2 and 6.3. The shifts in the microbial community were observed when influent ammonia concentration increased to 1 g NH4-N/L at pH 8.2, and then when pH was dropped to 6.3. Both Nitrosomonas and Nitrosospira were selected during the startup of the reactor, and eventually became dominant members as ammonia-oxidizing bacteria. The results of molecular microbiological analysis strongly suggested that the composition of microbial community was changed according to the method used to control nitrite-oxidizing bacteria.

      • KCI등재

        생물학적 회분식 인 제거 공정에서 pH 영향과 미생물 군집의 변화

        안조환 ( Jo Hwan Ahn ),( Robert Seviour ) 한국물환경학회 2013 한국물환경학회지 Vol.29 No.4

        A sequencing batch reactor was operated under different pH conditions to see the influence of pH to microbial community in enhanced biological phosphorus removal (EBPR) systems. Long term influences of different steady-state pH conditions on the microbial community composition were evaluated by polymerase chain reaction (PCR)-denaturing gradient gel electrophoresis (DGGE) and fluorescence in situ hybridization (FISH). The shift in populations from polyphosphate-accumulating organisms (PAOs) to Alphaproteobacteria was observed when pH was changed from 7.5 to 7.0. Alphaproteobacteria with the typical morphological traits of tetrad-forming organisms (TFOs) eventually became dominant members. The alphaproteobacterial TFOs were the phenotype expected for glycogen-accumulating organisms (GAOs), which accumulate large amount of glycogen into the cell. The results strongly suggested that low operational pH condition encourages the appearance of the GAOs in EBPR process, significantly reducing the EBPR capacity.

      • KCI등재

        사용종료매립지 정비를 위한 흙-시멘트 연직차수벽의 차수성능 평가

        이동건,안조환,권기욱,구자공,배우근,Lee, Dong-Geon,Ahn, Jo-Hwan,Kwon, Ki-Wook,Koo, Ja-Kong,Bae, Woo-Keun 한국지하수토양환경학회 2011 지하수토양환경 Vol.16 No.1

        This study was conducted to evaluate the performance of soil-cement walls (SCWs) to control leachate from a leaking landfill site. Tracer tests revealed that the SCW was effective to control groundwater seepage. Approximately two-months of curing period appeared to be sufficient to ensure thorough containment of landfill leachate, although a three-week period was not enough. The water quality of the monitoring wells after construction of the SCWs met the groundwater quality standard of the korean Waste Management Act, except for bacteria and coliform groups. Also an analysis of a spring water around the landfill showed that the concentrations of ammonia, inorganic nitrogen and soluble manganese which had been common contaminants in the spring water decreased dramatically after constructing the walls. Therefore, the results suggested that a SCW can be an attractive method to control leachate from a leaking landfill site.

      • KCI등재

        Hybrid-RBC와 BAF의 조합공정을 이용한 고농도 도축폐수의 처리 특성

        정찬일(Chan Il Jung),안조환(Jo Hwan Ahn),배우근(Woo Keun Bae),김승진(Seung Jin Kim) 大韓環境工學會 2011 대한환경공학회지 Vol.33 No.2

        본 연구에서는 부착/부유 미생물 혼재형 RBC (Rotating Biological Contactor)와 BAF (Biological Aerated Filter) 공정이 가지는 각각의 장점을 조합한 호기성 생물막 처리 시스템을 고안하여 고농도 도축폐수의 처리 특성을 평가하였다. 본 공정은 상당량의 부유 미생물이 함께 있는 RBC와 침전지 그리고 BAF 공정 순으로 구성되었다. 첫 번째 공정인 RBC와 침전지에서는 유기물의 산화, 질소의 질산화/탈질 및 부유물질의 제거가 이루어지며, 후속 공정인 BAF에서는 일부 제거되지 않은 유기물과 질소의 산화 및 부유물질의 여과가 이루어진다. 돈까스 소스(시판용)와 돼지피을 이용하여 모사한 고농도 도축폐수 (TCOD 5.2~40.4 g/m2·d, TN 0.44~4.17 g/m2·d)의 처리 특성을 평가한 결과, 침전지를 포함한 RBC 공정에서 Soluble COD와 NH₃-N의 평균 제거율은 각각 90%와 82% 이상으로 양호하였으나 TCOD와 TN은 Suspended Solid (SS)의 대량 유출과 돼지피에서 기인한 콜로이드 물질 생성 때문에 각각 60%와 69%의 다소 낮은 제거율을 보였다. 후속 공정인 BAF가 잔존 TCOD와 TN을 제거하는 생물 반응조의 역할과 SS를 제거하는 여과기의 역할을 충분히 수행해 약 100 mg/L의 TCOD와 약 140 mg/L의 SS 추가 제거가 가능하였으나, 처리수질은 TCOD 300 mg/L, SS 180 mg/L 그리고 TN 53 mg/L로 상당히 높았다. RBC 유출수에 Polyaluminium Chloride를 투입한 결과, 침전성이 크게 향상되어 RBC+침전지 공정 유출수의 TCOD와 TN은 각각 93.8%, 25.6%의 제거율을 보였으며, BAF 유출수 수질은 TCOD 16.5 mg/L, SS 0 mg/L, NH₃-N 12.0 mg/L, TP 1.3 mg/L로 우수하였다. 따라서 별도의 추가 처리공정 없이 본 연구에서 고안한 RBC+BAF 조합공정에 의한 처리만으로 고농도 도축폐수를 성공적으로 처리할 수 있었다. This study was conducted to develop a novel combined system of a hybrid rotating biological contactor (RBC) process that was composed of an attached- and suspended- biomass reactor, followed by a settler and a biological aerated filter (BAF) column to treat a high strength slaughter wastewater. Long term influences of organic and nitrogen loading rates were investigated to see how the combined system worked in terms of the removal efficiency. A synthetic wastewater containing a pork cutlet steak source (commercially available) and swine blood was used to feed the combined system. The hybrid RBC process showed excellent removals: about 95% for soluble COD and 85% for ammonium nitrogen. However, the unsettled solids seriously deteriorated the removal efficiency of total COD (TCOD) and total nitrogen (TN) in the RBC process. A significant fraction of the TCOD and suspended solids (SS) was further removed in the BAF column although the effluent quality was still unsatisfactory, giving TCOD 300 mg/L, SS 180 mg/L and TN 59 mg/L. An addition of polyaluminium chloride into the RBC effluent improved the performance of the settler and BAF, producing an excellent quality of final effluent; TCOD 16.5 mg/L, SS 0 mg/L, TN 55.5 mg/L, TP 1.3 mg/L. Therefore, it was confirmed that the combined system of hybrid RBC and BAF could treat a high strength slaughter wastewater excellently.

      • KCI등재

        음식물쓰레기 탈리액을 이용한 산업폐수의 생물학적 고도처리 실증실험

        이병철 ( Byeong Cheol Lee ),안조환 ( Jo Hwan Ahn ),이정훈 ( Jung Hun Lee ),배우근 ( Woo Keun Bae ) 한국물환경학회 2011 한국물환경학회지 Vol.27 No.4

        The feasibility of utilizing food waste leachate as an external carbon source was tested to enhance biological nutrient removal from an industrial wastewater with an average flow rate of 164,800 m3/d and a low carbon/nitrogen ratio of 2.8. A considerable improvement in the removal of nitrogen and phosphorus was observed when a certain amount of the leachate, ranging from 70 to 142 m3/d, was supplemented to the biological industrial wastewater treatment process. The addition of the leachate led to an increase in the BOD/N ratio (4.5) and the removal efficiency of nutritents from 29.7% to 71.7% for nitrogen and from 34.8% to 65.6% for phosphorus. However, an excessive dose of the leachate that significantly exceeded 120 m3/d caused serious operational problems, like oil-layer formation in the grit chamber and scum layer in the primary clarifier. Thus, an supplement of food waste leachate at a dose acceptable to an existing facilities can be a practical and effective means to enhance the nutrient removal from industrial wastewater and to dispose of the food waste leachate.

      • KCI등재

        혼합 산업폐수의 질소제거를 위한 외부 탄소원 투입과 물질수지: 실증실험

        이몽학 ( Mong Hak Lee ),안조환 ( Jo Hwan Ahn ),이정훈 ( Jung Hun Lee ),배우근 ( Woo Keun Bae ),심호재 ( Ho Jae Shim ) 한국물환경학회 2012 한국물환경학회지 Vol.28 No.5

        The feasibility of enhancing biological nutrient removal from an industrial wastewater was tested with food waste leachate and sugar liquid waste as external carbon sources. Long term influences of adding external carbon sources were investigated to see how the biological nutrient removal process worked in terms of the removal efficiency. The addition of the external carbons led to a significant improvement in the removal efficiency of nutrients: from 49% to approximately 76% for nitrogen and from 64% to around 80% for phosphorus. Approximately, 20% of the removal nitrogen was synthesized into biomass, while the remaining 80% was denitrified. Though the addition of external carbon sources improved nutrient removal, it also increased the waste sludge production substantially. The optimal observed BOD/TN ratio, based on nitrogen removal and sludge production, was around 4.0 in this study.

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