• 제목/요약/키워드: Low C/N Ratio Wastewater

검색결과 43건 처리시간 0.026초

바이오가스 플랜트 처리수의 고농도 질소 제거 (Pilot-scale Study on Nitrogen Removal of Effluent from Biogas Plant)

  • 유성인;유영섭;이용세;박현수;유희찬
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2011년도 추계학술대회 초록집
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    • pp.175.1-175.1
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    • 2011
  • A rotating activated bacillus contactor (RABC) process with a series of aerobic reactors was tested in pilot scale to treat digested liquid from an anaerobic digester treating swine wastewater and sewage sludge. The influent (digested liquid) for the RABC process showed C/N ratios less than 2 as a typical feature of effluent from anaerobic digesters. The pilot process, which consists of three 3 RABC reactors, four aerobic tanks and a sedimentation tank, was operated for 210 days with a hydraulic retention time of 20 days without pH and temperature control. Since the Bacillus-enriched aerobic reactors shows high efficiencies of nitrogen removal at low DO levels less than 1.0 mg/L, they were operated at reduced aeration intensities. With relatively low concentrations of organics in comparison with nitrogen concentrations, the RABC process tested in this study showed stable and high nitrogen and organics removal efficiencies over 80%. The nitrogen removal process tested in this study was proven to be an effective and operation-cost saving (lower aeration) method to remove nitrogen without adding external carbon sources to meet the optimum C/N ratio.

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암모니아 스트리핑에 미치는 운전인자의 영향 (Effect of Operational Parameters on the Ammonia Stripping)

  • 서정범;안광호
    • 대한환경공학회지
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    • 제28권9호
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    • pp.935-939
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    • 2006
  • 우리나라의 생활하수는 C/N 비가 낮아서 생물학적인 방법으로 영양염류를 제거하는데 어려움이 있다. 따라서 본 연구에서는 외부탄소원의 주입 없이 C/N 비를 높일 수 있는 암모니아 스트리핑에 의해 질소를 제거할 때 공기 공급량, 수리학적 체류시간, pH 등의 운전인자가 질소 제거에 미치는 영향을 규명하고자 하였다. 실험에 이용된 소규모 암모니아 스트리핑 시스템의 규격은 직경이 15 cm, 높이가 150 cm이며 담체의 사용 유무에 따라 AS I 및 AS II의 2개 형태로 구분하였다. 연구 결과 플라스틱 담체를 사용한 AS I의 T-N 제거율이 담체 없이 실험한 AS II에 비해 다소 높았다. 공기량 30 L/min 및 pH 12.5의 동일 실험 조건에서 HRT가 길어질수록 T-N 제거율은 높아졌으며, 36 hr의 같은 HRT 조건에서는 공기공급량이 증가할수록 T-N 제거율이 개선되는 경향을 보였다. 한편 C/N 비가 암모니아 스트리핑에 의해 평균 3.9에서 5.4로 향상되었다.

호기성 그래뉼 슬러지를 이용한 하수고도처리기술(AGS-SBR) (Advanced Wastewater Treatment Process Using Aerobic Granular Sludge (AGS-SBR))

  • 최한나;모우종
    • 한국물환경학회지
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    • 제37권1호
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    • pp.47-54
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    • 2021
  • Aerobic granular sludge (AGS) can be classified as a type of self-immobilized microbial aggregates measuring more than 0.2 mm. It offers the option to simultaneously remove COD, N, and P that occur in different zones inside a granule. Also, AGS is characterized by high precipitability, treatability with high organic loading, and high tolerance to low temperature. In this study, a sequencing batch reactor inoculated with AGS (AGS-SBR) is a new advanced wastewater treatment process that was proven to grow AGS with integrated nutrient removal and low C/N ratio. A pilot plant, AGS-SBR with a capacity of 225 ㎥/d was installed at an S sewage treatment plant in Gyeonggi-do. The results of the operation showed that the water quality of the effluent indicated that the value of BOD5 was 1.5 mg/L, CODMn was 11.4 mg/L, SS was 6.2 mg/L, T-N was 13.2 mg/L, and T-P was 0.197 mg/L, and all of these values reliably satisfied an effluent standard (I Area). In winter, the T-N treatment efficiency at a lower temperature of less than 11℃ also showed reliability to meet the effluent standard of the I Area (20 mg/L or less). Analysis of microbial community in AGS showed a higher preponderance of beneficial microorganisms involved in denitrification and phosphorus accumulation compared with activated sludge. The power consumption and sludge disposal cost were reduced by 34.7% and 54.9%, respectively, compared to the domestic SBR type sewage treatment plant with a processing capacity of 1,000 ㎥/d or less.

pH 조절을 통한 폐활성 슬러지의 COD 가용화 및 감량화 평가 (Evaluation of COD Solubilization and Reduction of Waste Activated Sludge by pH Control)

  • 김연권;문용택;김지연;서인석
    • 상하수도학회지
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    • 제21권5호
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    • pp.551-558
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    • 2007
  • From the view point of biological wastewater treatment, C/N ratio is one of the most important factor in biological nutrient removal process. However, municipal sewage in Korea is characterized by extremely low content of carbon source and relatively higher portion of N source. Accordingly, it is necessary to dose external carbon source in order to obtain higher degree of carbon source within the process. In this study, the effects of pH pretreatment as an alternative plan for increasing carbon source on the cell disruption and COD solubility of waste activated sludge were conducted under well defined experimental conditions. During 5 hours, the value of COD solubilization rate ($S_R$) at pH 11.5 is approximately 4.4 times higher than the value of $S_R$ at pH 9.5. It is expected that the level of SCOD increased due to the result from cell disruption. However, VSS/TSS ratio was not significantly changed after 5 hours. As Alkalinity changes gradually from less than 15, 30 and 60 meq NaOH/L, average RBCOD/SCOD fraction showed 34, 36 and 45%,respectively.

낮은 C/N비에서 운영되는 유로변경식 생물여과 공정의 질소 제거 특성 (Nitrogen Removal Characteristics in DynaFlow Biofilter System Using Sewage Wastewater of Low C/N Ratio)

  • 김진식;김규리;강한솔;원인섭;김금용;이상일
    • 대한환경공학회지
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    • 제34권3호
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    • pp.189-194
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    • 2012
  • 본 연구는 유로변경식 3단 BAF를 사용하여, C/N ($TCOD_{cr}$/TKN)비가 낮은 생활하수를 대상으로 질소 처리 효율을 향상시키기 위해 제안되었다. 체류시간 6시간에서의 유로변경 3단 BAF의 효과를 평가하기 위해 실험실 규모로 실시하였다. 유로변경식 3단 BAF 공정이 3단 BAF보다 총 질소 제거효율이 약 7% 높은 것으로 나타났는데, 이것은 유기물을 효율적으로 사용하였기 때문이다. 또한 암모니아성 질소의 제거는 독립적인 호기조에서 질산화만을 수행하였기 때문에 질산화 효율이 안정적이었다. 이것은 본 연구에서 제안한 유로변경식 3단 BAF공정이 유기물 흡착을 이용하여 질소의 제거, 탈질 및 질산화에서 우수한 효율을 보였다.

Effects of Fermented Leachate of Food Waste (FLFW) and Temperature on Nutrient Removal in Sequencing Batch Reactor

  • Roh, Sung-Hee;Chun, Young-Nam;Lee, Sook-Young;Cheong, Hyeon-Sook;Lee, Jae-Wook;Kim, Sun-Il
    • Environmental Engineering Research
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    • 제13권3호
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    • pp.155-161
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    • 2008
  • This study examined effects of the fermented leachate of food waste (FLFW) on nitrogen and phosphorous removal for domestic wastewater containing a low carbon-to-nitrogen (C/N) ratio in sequencing batch reactor (SBR). When the FLFW was not supplied in the process, release of phosphorus and excessive intake was not observed at both anaerobic and aerobic stages. On the other hand, when the FLFW was gradually added, active release of phosphorus and intake of phosphorus was noticed at an anaerobic stage and aerobic stage, respectively, resulting in improved phosphorus removal efficiency. The removal efficiency of nitrogen and phosphorus was increased from 75% and 37% (R-1, control test) to 97% and 80% (R-4, the highest substrate ratio test), respectively. In addition, although activity of the nitrogen oxidizing microorganisms was reduced when the reaction temperature was decreased to $10^{\circ}C$, the phosphorus removal efficiency was shown to increase with the addition of FLFW, indicating an independence from temperature. Overall, this study suggests that an efficient nutrients removal process can be successfully employed into a SBR when the FLFW is added to a wastewater which has a low C/N ratio.

RO 농축수 처리를 위한 SBR과 MLE 공정의 비교 평가 (A comparative study on SBR and MLE Process for RO Retentate Treatment)

  • 김일회;이상일
    • 상하수도학회지
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    • 제25권6호
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    • pp.907-915
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    • 2011
  • In this study, the SBR and MLE process was performed for a removal of the RO retentate and the nitrogen removal efficiency was evaluated. The inflow-rate of two processes was set a 10 L/day. The SBR process was operated a two cycle as HRT per one cycle was 12hr and the HRT of the anoxic and aerobic tank was respectively 7.5 hr and 16.5 hr. The methanol was injected for an effective denitrificaion owing to a low C/N ratio of the RO retentate. The two processes were effectively performed for nitrogen removal, but the average removal efficiency of the SBR process was about 94.93% better performance than the MLE process. Therefore, the SBR process demonstrated a good performance more than the MLE process for nitrogen removal of the RO retentate. The kinetic of SNR and SDNR was observed respectively 0.051 kg $NH_{3}-N/kg\;MLVSS{\cdot}dayg$ and 0.287 kg ${NO_3}^--N/kg\;MLVSS{\cdot}day$, which will be useful to design for the wastewater treatment system with a RO retentate.

부분질산화와 혐기성 암모늄산화를 이용한 돈사폐수처리 (Piggery Waste Treatment using Partial Nitritation and Anaerobic Ammonium Oxidation)

  • 황인수;민경석;이영옥
    • 한국물환경학회지
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    • 제22권4호
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    • pp.599-604
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    • 2006
  • Nitrogen removal with the combined SHARON (Single reactor system for high ammonium removal over nitrite)ANAMMOX (Anaerobic ammonium oxidation) process using the effluent of ADEPT (Anaerobic digestion elutriated phased treatment) slurry reactor with very low C/N ratio for piggery waste treatment was investigated. For the preceding SHARON reactor, ammonium nitrogen loading and removal rate were $0.97kg\;NH_4-N/m^3_{reactor}/day$ and $0.68kg\;NH_4-N/m^3_{reactor}/day$ respectively. In steady state, bicarbonate alkalinity consumption for ammonium nitrogen converted to $NO_2-N$ or $NO_3-N$ was 8.4 gram per gram ammonium nitrogen. The successive ANAMMOX reactor was fed with the effluent from SHARON reactor. The loading and removal rate of the soluble nitrogen defined as the sum total of $NH_4-N$, $NO_2-N$ and $NO_3-N$ in ANAMMOX reactor were $1.36kg\;soluble\;N/m^3_{reactor}/day$ and $0.7kg\;soluble\;N/m^3_{reactor}/day$, respectively. The average $NO_2-N/NH_4-N$ removal ratio by ANAMMOX was 2.41. Fluorescence in situ hybridization (FISH) analysis verified that Candidatus Kuenenia stuttgartiensis were dominate, which means that they played an important role of nitrogen removal in ANAMMOX reactor.

미세조류를 이용한 질소제거 장치의 크기 (Size Estimation of Microalgal System for Nitrogen Removal)

  • 김한욱;이우성;이철균
    • KSBB Journal
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    • 제19권3호
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    • pp.236-240
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    • 2004
  • Batch experiment에서 다양한 질소 농도에서 구해진 질소제거 속도와 비 생장속도 등의 데이터를 토대로 4.6일의 체류시간을 갖는 2단 처리 장치를 설계하였다. 그리고 continuous experiments에서는 3.5일의 체류시간을 갖는 2단의 처리 장치를 설계하였다. 두 가지 값에 차이는 있지만 실제 현장에서 폐수 처리 장치를 설계할 때 충분한 자료가 되리라고 판단한다. 따라서 위의 결과를 토대로 기존 시스템에 미세조류 시스템을 부가한다면 기존공정의 단점인 잉여질소 제거 장치로서 충분히 역할을 수행해 배출 기준치를 만족시키는 안전한 폐수처리장치가 되리라고 판단한다.

Nitrogen Removal from Milking Center Wastewater via Simultaneous Nitrification and Denitrification Using a Biofilm Filtration Reactor

  • Won, Seung-Gun;Jeon, Dae-Yong;Kwag, Jung-Hoon;Kim, Jeong-Dae;Ra, Chang-Six
    • Asian-Australasian Journal of Animal Sciences
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    • 제28권6호
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    • pp.896-902
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    • 2015
  • Milking center wastewater (MCW) has a relatively low ratio of carbon to nitrogen (C/N ratio), which should be separately managed from livestock manure due to the negative impacts of manure nutrients and harmful effects on down-stream in the livestock manure process with respect to the microbial growth. Simultaneous nitrification and denitrification (SND) is linked to inhibition of the second nitrification and reduces around 40% of the carbonaceous energy available for denitrification. Thus, this study was conducted to find the optimal operational conditions for the treatment of MCW using an attached-growth biofilm reactor; i.e., nitrogen loading rate (NLR) of 0.14, 0.28, 0.43, and $0.58kg\;m^{-3}\;d^{-1}$ and aeration rate of 0.06, 0.12, and $0.24\;m^3\;h^{-1}$ were evaluated and the comparison of air-diffuser position between one-third and bottom of the reactor was conducted. Four sand packed-bed reactors with the effective volume of 2.5 L were prepared and initially an air-diffuser was placed at one third from the bottom of the reactor. After the adaptation period of 2 weeks, SND was observed at all four reactors and the optimal NLR of $0.45kg\;m^{-3}\;d^{-1}$ was found as a threshold value to obtain higher nitrogen removal efficiency. Dissolved oxygen (DO) as one of key operational conditions was measured during the experiment and the reactor with an aeration rate of $0.12\;m^3\;h^{-1}$ showed the best performance of $NH_4-N$ removal and the higher total nitrogen removal efficiency through SND with appropriate DO level of ${\sim}0.5\;mg\;DO\;L^{-1}$. The air-diffuser position at one third from the bottom of the reactor resulted in better nitrogen removal than at the bottom position. Consequently, nitrogen in MCW with a low C/N ratio of 2.15 was successfully removed without the addition of external carbon sources.