• 제목/요약/키워드: Advanced wastewater treatment plant

검색결과 107건 처리시간 0.026초

상향류식 연속역세여과를 이용한 양어장 순환수 재이용(I) (Treatment of Recycling Wastewater of Aquaculture Using DynaSand Filter( I ))

  • 박종호;김이오;황규덕;황금희;조규석;김동식
    • 한국양식학회지
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    • 제15권2호
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    • pp.87-93
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    • 2002
  • 양어용수 재순환을 위한 생물여과상의 처리효율을 향상시키기 위하여 상향류식 연속역세여과장치를 이용하여 다양한 조건하에서 실험하였는데, 기존의 연속역세여과장치와 이를 개량한 연속역세여과장치를 가지고 실험하였다. 개량역세여과장치는 기존에 이용되고 있는 DynaSand 여과장치를 유체역학 및 물리,화학적 개념을 응용한 장치로 개조하여 역세기능의 향상, 산소전달 능력의 향상, 여과 처리수 인출부의 개량에 의한 처리수 탁도제거 기능 향상 및 연속적인 수두손실 감지에 의해 폐수성상에 따른 여과장치운전의 자동화를 도모하는데 중점을 두었고, 또한 여과사의 표면을 특정물질로 코팅함으로 여과사 표면전하를 변화시켜 여과능력의 향상과 생물막 형성력의 증대를 꾀하는데 실험의 목적을 두었다. 본 실험에서 사용 한 여과장치의 크기는 전체 용적이 약 70 L이고 working volume은 35 L이었다 이번 연구에서 양어장사육용수 처리를 위해 조사된 개량형 상향류식 연속역세여과장치의 효율은 부유물 제거 효율이 평균 71% 이었고, NH$_4$$^{+/-N}$ , T-P및 SRP의 제거효율은 84%, 85% 및 88%로 각각 나타나서 그 효과가 인정되었다.

피혁폐수 고도처리시설의 통계학적 특성 (Statistical Characteristics of An Advanced Wastewater Treatment Plant for Leather Industry)

  • 양형재;권오상;김재훈;김상훈;이성종;정동일
    • 한국물환경학회지
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    • 제23권5호
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    • pp.740-747
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    • 2007
  • The advanced wastewater treatment plant of leather industry was selected to evaluated with its effluent water quality and statistical characteristics. Most of pollutants removal efficiencies were over 90% as well. And 95% reliability of effluent concentration were 106.8 mg/L of $COD_{mn}$, 72.04 mg/L of TN. However Effluent quality of TN exceeds the regulated limit. The range of coefficient of variation (CV) were between 0.18 and 2.49. Also, coefficient of reliability (COR) were between $0.03(BOD_5){\sim}0.63(COD_{mn})$ and 0.43 in terms of T-N, $Z_{l-a}$(Normalized Percentiles) value were 55.7 and 2.25 in terms of $BOD_5$ and T-N as shown in the following table.

세라믹막(MF) 고도정수처리에서 NOM 제거 특성 (Removal characteristics of NOM in advanced water treatment using ceramic MF membrane)

  • 유상준;박성한;임재림;서정민;장성호;홍성철;이병인
    • 상하수도학회지
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    • 제28권4호
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    • pp.367-376
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    • 2014
  • This study assessed the removal efficiency of NOM which is known as the precursors of DBPs in advanced water treatment using the ceramic membrane filtration, introduced the first in the nation at the Y water treatment plant (WTP). It is generally well-known that the removal of NOM by MF Membrane is very low in water treatment process. But, the result of investigation on removal efficiency of NOM in advanced water treatment using the ceramic membrane was different as follows. The removal rate of organic contaminant by the ceramic membrane advanced water treatment was determined to be 65.5% for the DOC, 85.8% for UV254, and 77 to 86% for DBPFP. The removal rate of pre-ozonation was found to be 6 to 15% more effective compared with the pre-chlorination. The removal rate of DOC and $UV_{254}$ in biological activated carbon(BAC) process was over 50% and 75%, respectively although the rate was decreased 10 ~ 20% according to analysis items in converting from GAC to BAC.

DO농도 조절에 따른 황 충전 섬모상 반응조의 질소제거 성능 변화 (Nitrogen Removal Performance at Various DO Concentrations in the Bioreactor Packed with Submerged Cilia Media and Granular Sulfur)

  • 문진영;황용우
    • 상하수도학회지
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    • 제20권4호
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    • pp.519-526
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    • 2006
  • In this study, the major operating factors in SND(simultaneous nitrification and denitrification) using bioreactor packed with submerged cilia media and granular sulfur such as variation of nitrification rate, organic matter removal efficiency and denitrification efficiency in different DO concentration were mainly evaluated. Synthetic wastewater and actual sewage were used as influent wastewater. Experiment with synthetic wastewater as influent wastewater was divided into three phases with the adjustment of DO concentration. As the results, nitrification efficiency and T-N removal efficiency in the Phase 3(DO 1.0~2.0 mg/L) were 99% and 52.3%, which is significantly greater than those in other two phases. Also, loading rate and denitrification efficiency of SCPGS(Submerged Cilia media Packed with Granular Sulfur) were calculated as $0.44kg\;NO_3^--N/m^3-day$ and 50%, respectively. On the other hand, nitrification rate was decreased from 99% to 64% according to the DO concentration with the variation from 3.0~3.5 mg/L(phase1) to 0.4~0.6mg/L(phase2). Although the nitrification rate was decreased in 64% according to the variation of the DO concentration, T-N removal rate was rapidly increased to 49% by increasing of the denitrification efficiency. Experiment with actual sewage as influent wastewater was carried out to evaluate efficiency of SCPGS in real operation condition of full-scale sewage water treatment plant. At the time, T-N removal rate in this experiment and full-scale wastewater treatment plants were given by 43% and 20%, respectively. The above results indicate that SCPGS can be used as an advanced treatment process for economical efficiency considered.

하수처리수 재이용을 위하여 Sym-bio공정과 용존 오존 부상공정을 이용한 하수처리의 효율 분석 (A Treatment Efficiency of Wastewater by using Sym-Bio Process and Dissolved Ozone flotation Process for Water Reuse)

  • 박찬규;박재한;이경희;안윤희;고광백;정현철
    • 한국물환경학회지
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    • 제24권1호
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    • pp.86-90
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    • 2008
  • Water reuse of effluent is limited, due to bacteria and chromaticity or turbidity which may result in low perception of water quality. Consequently, this study showed a method in the reuse of treated wastewater by a diversified treatment method, with separation of centralized reformation of aeration tank into pre-treatment with minimum installation of facilities, and post-treatment, applying advanced oxidation treatment. A pilot plant experiment was performed using Sym-Bio process adopting an NADH Sensor without modification of the exiting aeration tank. The Dissolved Ozone Flotation process, which is an advanced oxidation process, to treat the remaining organics, nutrients, chromaticity, turbidity and bacteria. As a result in the Sym-Bio process, the biological treatment, even on the condition of single stage reaction tank, the treatment efficiencies of BOD, $COD_{Mn}$, $COD_{Cr}$, SS and T-N were 96.6%, 84.6%, 88.25%, 95.1% and 71.0%, respectively, while that for T-P was 25.0%, which required further treatment. In the Dissolved Ozone Flotation process, the advanced oxidation treatment, the treatment efficiencies of BOD, $COD_{Mn}$, $COD_{Cr}$, SS, T-N, T-P, chromaticity, turbidity, bacteria, coliforms were 78.9%, 34.6%, 28.7%, 48.0%, 70.4%, 82.4%, 84.0%, 74.5%, 99.8% and 99.4%, respectively.

Ozoflotation 공정의 정수처리 적용에 관한 연구 (A Study on the Ozoflotation Process for Drinking Water Treatment)

  • 강태희;오병수;이훈;변규식;권순범;손병용;안효원;강준원
    • 한국물환경학회지
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    • 제21권5호
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    • pp.528-534
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    • 2005
  • Ozone, a powerful oxidant, is widely used to remove microorganisms, pesticides, taste and odor compounds effectively. Dissolved air flotation (OAF) has been known as an economical process for treating algae and low turbid water quality. An ozoflotation system, combining ozone and OAF processes, has a merit which can operate the ozonation and flotation process simultaneously in a single compartment. This study investigated the application of the ozoflotation process for advanced water treatment by carrying out the pilot-plant experiment. During the test, ozone microbubbles were generated through a OAF pump and many kinds of parameters were evaluated under several conditions, such as raw water flow rate and ozone dose. As a result of the test, the optimum operating conditions of ozoflotation were decided to be 1.2 mg/L ozone dose and about 34 minute Hydraulic retention time (HRT). Finally, it could be demonstrated that the ozoflotation system can effectively improve the drinking water quality.

수생식물에 의한 축산폐수의 오염물질 감소 효과 (The Effect of Clarification by Aquatic Plant on Livestock Wastewater)

  • 정광화;김원호;김맹중;서성;최기춘;조영무;김영근
    • 한국축산시설환경학회지
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    • 제6권2호
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    • pp.83-89
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    • 2000
  • In general, livestock wastewater consists of many pollutants such as nitrogen, phosphorus, carbonic compounds and inorganic substances. Most carbonic and organic compounds are sufficiently removed by conventional secondary processes, but nitrogen, phosphorus and soluble inorganic compounds are little removed by traditional clarification process. These remained substances in wastewater, for instances, phosphorus and nitrogen are efficiently eliminated by advanced wastewater treatment or botanical removing process. Concentrations of $BOD_s$, SS, T-N and T-P in influent livestock wastewater used in this study were 126mg/l, 115mg/l, 45mg/l and 13mg/l, respectively. The hydraulic retention time(HRT) of wastewater was about 10 days in the pond packed with aquatic plants. A water-hyacinth and a water-dropwort were used as an experimental stuff plant. The removal ratios of nitrogen was 44.3% for the water-hyacinth and 40.2% for the water-dropwort. The removal efficiency of phosphorus in experimental ponds reached by 57.9% for the water-hyacinth and 58.5% for the water-dropwort for 10 days, respectively. Removal ratios of BODs and SS of livestock wastewater for 10 days were reached by 80.1%, 91.0% for he water-hyacinth, respectively. At the same condition, the removal ratios of BODs and SS were reached by 75.0%, 87.6% for the water-dropwort, respectively.

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하수의 최종 유출수 수질 개선을 위한 침전조 모형실험에 적용한 끈상 미생물접촉재와 미나리의 고도처리효율에 관한 연구 (Advanced Treatment Efficiency of Biological String Media and Oenanthe javanica for Effluent Quality Improvement in the Sedimentation Model Plant)

  • 배준삼;이상호
    • 한국산학기술학회논문지
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    • 제7권3호
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    • pp.440-447
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    • 2006
  • 본 연구의 목적은 미나리와 끈상 미생물접촉재를 이용하여 생활하수의 하수처리장 방류수의 수질 개선을 위함이다. 최종 방류수의 수질을 개선하기 위한 침전조 모형 플랜트를 2개 제작하여 실험하였는데, 하나(Tank 1)는 기존 하수처리장 침전조와 같게 제작 하였으며, 다른 하나의 침전조(Tank 2)는 침전조의 수초섬 상부에는 미나리를 식재하고 하부에는 끈상 미생물 접촉재를 배치하였다. 유기 오염물질인 BOD, 부유고형물질인 SS, 질소 그리고 인에 대한 고도처리 효율을 검증하였다. 실험 결과 Tank 2에서 유출되는 배출수가 Tank 1에서 배출되는 유출수보다 처리 효율이 향상되었다. 처리 효율을 살펴보면, Tank 1보다 Tank 2 유출수의 BOD는 $7.9%{\sim}38.8%$가 향상되었으며, 부유고형 물질인 SS는 $14.3%{\sim}60.0%$ 향상되었다. 부영양화 물질인 T-N은 $9.6%{\sim}31.5%$ 향상되었으며, T-P는 $33.0%{\sim}80.0%$까지 향상되었다. 처리 효율로 판단하면 T-P와 SS 제거효율이 BOD와 T-N보다 높았다.

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고도처리장의 Bioindicator (Bioindicator in Advanced Wastewater Plants)

  • 이찬형;문경숙;진익렬
    • 한국미생물·생명공학회지
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    • 제33권1호
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    • pp.56-64
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    • 2005
  • 고도처리장의 효율적 운영을 위해 원생동물의 분포를 조사하고 수질자료의 예측을 위한 bioindicator의 가능성을 분석하였다. 원생동물 종류별 개체수 분포는 출현빈도가 높으면 개체수도 많은 편으로 관찰되었다. Aspidisca, Trachelophyllum, Vorticella, Cinetochiluum, Oikomonas, Epistylis의 출현빈도는 $95\%$이상이었다. 처리장의 원생동물 분포는 유입수의 성상과 운영조건 차이 등이 세균의 증식에 영향을 미치고 변화된 세균분포에 적합하게 원생동물 분포가 이루어진다고 판단된다. 미생물분포와 통계결과는 처리장마다 다르므로 여러 처리장보다는 단일처리장에 적용되는 지표개발이 처리장의 효율적 운영에 기여할 수 있다. 요인분석결과 요인적재량의 형태와 요인의 해석이 유사하였다. 고도처리공법이 유사하고, 유입수의 성상이 비슷하여 처리장운영에 관여하는 요인이 비슷하게 나타난 것으로 판단된다. 상관분석과 회귀방정식을 이용함으로 처리장 수질변화를 미리 예상할 수 있다. 처리장의 원생동물 분포, 유출수질, 운영조건 자료들이 충분히 확보되면 원생동물 분포를 가지고 운영현황 및 가까운 미래의 수질예측이 가능해진다. 수질예측이 가능함으로 운영조건의 조기변동으로 처리수질을 양호하게 유지할 수 있다.

DNR 시스템에 의한 하수(下水)의 고도처리(高度處理)에 관한 연구(硏究) (A Study on Advanced Municipal Wastewater Treatement by Daewoo Nutrients Removal (DNR) System)

  • 박명균;장윤석;박철휘;박칠림
    • 상하수도학회지
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    • 제9권4호
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    • pp.115-123
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    • 1995
  • The purpose of this study is to investigate the characteristics and performance of nitrogen and phosphorus removal system, Daewoo Nutrients Removal(DNR) system, and to find out the operating parameter for the system. During the study, $10m^3$ pilot plant was operated for the demonstration experiment and the primary effluent was taken from K domestic sewage treatment plant. The TN in the influent had been removed to approximately 70% through the nitrfication in the oxic tank and the denitrfication in the anoxic tank and the $PO_4-P$ and TP in the influent had been removed to 85% and 83% through anaerobic reaction and oxic reaction. The BOD and SS removal rate were 85 to 95% through the system. As the results, the values of effluent BOD, SS and slouble phosphorus were lower than A/O and $A^2/O$ processes. The SPRR (specific phosphorus release rate) at the anaerobic state of DNR system was ranged from 2.2 to 2.6mg SP/g VSS/h. The nutrient removal efficieny of the DNR system in view of the characteristics of the domestic sewage was higher than the pre-established A/O and $A^2/O$ processes. Finally, we believe that the DNR system was superior to the processes deveolped recently.

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