• 제목/요약/키워드: Hydraulic loading rate

검색결과 159건 처리시간 0.029초

침지형 황 탈질 모듈을 이용한 고속의 질소제거 (High-Rate Nitrogen Removal using a Submerged Module of Sulfur-Utilizing Denitrification)

  • 문진영;황용우;가미선
    • 상하수도학회지
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    • 제21권4호
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    • pp.429-437
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    • 2007
  • This study aims to develop a sulfur-using denitrification process which is possible a renovation to advanced treatment plant submerging a simple module in activated sludge aeration tank. At first, the impact factor of sulfur-using denitrification was appreciated by the batch test. Secondly, reflecting a dissolved oxygen effect of sulfur-using denitrification that was confirmed by the batch test, in a continuous nitrification/sulfur-using denitrification, high-rate nitrogen removal reaction was induced at optimum condition controlling DO concentration according to phases. Also, inside and outside of sulfur-using denitrification module was covered with microfilter and the module was considered as an alternative of clarifier. Result of batch test for sulfur-using denitrification, $NO_2{^-}N$ was lower for consumption of alkalinity and sulfur than that of $NO_3{^-}-N$. These results revealed the accordance of theoretical prediction. In continuous nitrification/sulfur-using denitrification experiment, actual wastewater was used as a influent, and influent nitrogen loading rates were increased 0.04, 0.07, 0.11, $0.14kg\;N/m^3-day$ by changing hydraulic retention times. At this time, nitrogen loading rates of packed sulfur were increased 0.23, 0.46, 0.69, $0.93kg\;N/m^3-day$. As a result, nitrification efficiency was about 100% and denitrification efficiency was 93, 81, 79, 72%. Accordingly, nitrogen removal was a high-rate. Also the module of sulfur-using denitrification covered with microfilter did not make a fouling phenomena according to increased flux. And the module was achieved effluent suspended solids of below 10 mg/L without a clarifier. In conclusion, it is possible a renovation to advanced treatment plant submerging a simple module packed sulfur in activated sludge aeration tank of traditional facilities. And the plant used the module packed sulfur is expected as a effective facilities of high-rate and the smallest.

이상혐기공정의 축산폐수 공공처리시설 적용 가능성에 관한 실험적 연구 (A Study on the Evaluation of Two-Phase Anaerobic Process for Public Livestock Wastewater Treatment Plant)

  • 오성모;김문호;배윤선;박철휘
    • 상하수도학회지
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    • 제21권3호
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    • pp.331-339
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    • 2007
  • The purpose of this study was to investigate the biodegradability and performance of organic removal and methane production rate when treating piggery wastewater using a pilot scale two-phase anaerobic system operated up to a volumetric rate of $10m^3/day$. The pilot scale two-phase anaerobic process is consisted of a continuous-flow stirred-tank reactor (CFSTR) for the acidification phase and an Upflow Anaerobic Sludge Blanket reactor (UASB) for the methanogenesis. The acidogenic reactor played key roles in reducing the periodically applied shock-loading and in the acidification of the influent organics. The acidogenic CFSTR was operated at organic loading rates (OLR) between 1.8 and $14.4kgCOD/m^3{\cdot}day$, and the UASB reactor was operated between 0.5 and $5.6kgCOD/m^3{\cdot}day$. A stable maximum biogas production rate was $81m^3/day$ and the methane conversion rate of the organic matter varied from 0.30 to $0.42L\;CH_4/g\;COD_{removed}$(0.40) at hydraulic retention time (HRT) above 3.5days. The methane contents ranged from 73 to 82% during the experimental period. It is known that most of the removed organic matter was converted to methane gas, and the produced biogas might be high quality for its subsequent use.

회전매체를 가진 완전혼합활성슬러지 공법을 이용한 온천지구 하수의 재이용 (Reuse of the sewage from sea area using the Submerged Moving Media Complete Mixing Activated Sludge (SMMCMAS))

  • 김홍태;김학석
    • 한국환경과학회지
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    • 제11권1호
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    • pp.69-74
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    • 2002
  • This study was performed to evaluate an applicability of the SMMCMAS system for reuse of the sewage from spa area and was operated to HLR(Hydraulic loading rate) of 211.3 to 126.8 $\ell$/㎥/d. The operating HRT(Hydraulic retention time) ranges were 2.5 to 1.5 hours. Conclusions are as follows; At the optimum HLR of 158.5 $\ell/\m^2$/d (HRT of 2.0 hours), the maximum BOD removal efficiency was 94% and the effluent BOD concentration was 1.1mg/$\ell$ in result. As the HLR was increased to 211.3 $\ell/\m^2$/d, BOD removal efficiency was decreased to 75% and BOD removal efficiency was also reduced to 74% at lower HLR of 126.8 $\ell/\m^2$/d. It shows that the maximum BOD removal efficiency occurs at an optimum HLR value and that the removal efficiency decreases when the HLR is either higher or lower than the optimum value. Sludge production rates were ranged 0.01 to 0.24gVSS/gBODrem/d and accomplished to 0.01gVSS/gBODrem/d at the optimum HLR of 158.5 $\ell/\m^2$/d.

Phenol 함유폐수의 처리를 위한 영향인자와 성능특성 (Influence factors and Efficiencies Characteristics for Treatment of Wastewater Containing Phenol)

  • 강선태;김정목
    • 상하수도학회지
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    • 제10권4호
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    • pp.119-126
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    • 1996
  • Influence factors and efficiency characteristics for treatment of wastewater containing phenol were studied with using Pseudomonas sp. B3. It took 130 hours to remove phenol, when only activated sludge of terminal disposal palnt of sewage was innoculated in batch culture, but it was required just 36 hours, when bacteria degrading phenol and activated sludge were simultaneously innoculated. If only phenol an carbon source was used, it necessary 36 hours for biodegradation of phenol, while glucose was added to medium, it took 73 hours. It was revealed as excellent effluent and SVI, when the F/M ratio, COD and phenol concentration were 53mg/l and 1.2mg/l, respectively, and optimum F/M ratio was revealed 0.31. The reactor were seriously shocked as reducing hydraulic retention time at constant phenol concentration more than increasing phenol concentration at constant hydraulic retention time, when volumetric loading rate was increased to $0.8kg\;phenol/m^3{\codt}d$ from $1.6kg\;phenol/m^3{\codt}d$. And also the effluent phenol concentration was 34mg/l after starting 12 hours of shocking and reactor was recovered as steady state after 65 hours of changing in the former test. Although the effluent phenol concentration was maximum value with 12mg/l after starting 20 hours of shocking and reactor was recovered as steady state after 54 hours of changing in the later test.

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Design of a piezovibrocone and calibration chamber

  • Samui, Pijush;Sitharam, T.G.
    • Geomechanics and Engineering
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    • 제2권3호
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    • pp.177-190
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    • 2010
  • This paper presents the details of indigenous development of the piezovibrocone and calibration chamber. The developed cone has a cylindrical friction sleeve of $150cm^2$ surface area, capped with a $60^{\circ}$ apex angle conical tip of $15cm^2$ cross sectional area. It has a hydraulic shaker, coupled to the cone penetrometer with a linear displacement unit. The hydraulic shaker can produce cyclic load in different types of wave forms (sine, Hover sine, triangular, rectangular and external wave) at a range of frequency 1-10 Hz with maximum amplitude of 10 cm. The piezovibrocone can be driven at the standard rate of 2 cm/sec using a loading unit of 10 ton capacity. The calibration chamber is of size $2m{\times}2m{\times}2m$. The sides of the chamber and the top as well as the bottom portions are rigid. It has a provision to apply confining pressure (to a maximum value of $4kg/cm^2$) through the flexible rubber membrane inlined with the side walls of the calibration chamber. The preliminary static as well as dynamic cone penetration tests have been done sand in the calibration chamber. From the experimental results, an attempt has been made to classify the soil based on friction ratio ($f_R$) and the cone tip resistance ($q_c$).

다중 모래 여재를 적용한 부분 포기 Biological Aerated Filter의 효과적인 Total Nitrogen (TN) 제거 (Effective Total Nitrogen (TN) Removal in Partially Aerated Biological Aerated Filter (BAF) with Dual Size Sand Media)

  • 강정희;송지현;하정협
    • 상하수도학회지
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    • 제24권1호
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    • pp.5-14
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    • 2010
  • A pilot-scale biological aerated filter (BAF) was operated with an anaerobic, anoxic and oxic zone at $23{\pm}1^{\circ}C$. The influent sCOD and total nitrogen concentrations in the feedwater were approximately 250 mg/L and 35 mg N/L, respectively. sCOD removal at optimum hydraulic retention time (HRT) of 3 hours with recirculation rates of 100, 200 and 300% in the column was more than 96%. Total nitrogen removal was consistently above 80% for 4 and 6 hours HRT at 300% recirculation. For 3 hours HRT and 300% recirculation, total nitrogen removal was approximately 79%. Based on fitting results, the kinetic parameter values on nitrification and denitrification show that as recirculation rates increased, the rate of ammonia and nitrate transformation increased. The ammonium loading rates for maximum ammonium removed were 0.15 and 0.19 kg $NH_3$-N/$m^3$-day for 100% and 200% recirculation, respectively. The experimental results demonstrated that the BAF can be operated at an HRT of 3 hours with 200 - 300% recirculation rates with more than 96 % removal of sCOD and ammonium, and at least 75% removal of total nitrogen.

저온 플라즈마와 활성슬러지 복합 공정에서 체류시간 변화가 악취 저감 및 슬러지 가용화에 미치는 영향 (Effects of Retention Time on the Simultaneous of Odor Removal and Sludge Solubilization Using a Non-Thermal Plasma System)

  • 남궁형규;황현정;송지현
    • 상하수도학회지
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    • 제25권6호
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    • pp.815-824
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    • 2011
  • In this study, a non-thermal plasma system was employed to simultaneously remove odorous compounds and organic sludge. The system consisted of two reactors; the first one was the non-thermal plasma reactor where ozone was produced by the plasma reaction and the ozone oxidized hydrogen sulfide, the model odorous compound, and then the ozone-laden gas stream was introduced to the second reactor where wasted sludge was disintegrated and solubilized by ozone oxidation. In this study, the gas retention time (GRT) and the hydraulic retention time (HRT) were changed in the two-reactor system, and the effects of GRT and HRT on reduction efficiencies of odor and sludge were determined. As the GRT increased, the ozone concentration increased resulting in an increasing efficiency of hydrogen sulfide removal. However, the overall ozone loading rate to the second sludge reactor was the same at any GRT, which resulted in an insignificant change in sludge reduction rate. When HRTs in the sludge reactor were 1, 2, 4 hours, the sludge reduction rates were approximately 30% during the four-hour operation, while the rate increased to 70% at the HRT of 6 hours. Nevertheless, at HRTs greater than 4 hours, the solubilization efficiency was not proportionally increased with increasing specific input energy, indicating that an appropriate sludge retention time needs to be applied to achieve effective solubilization efficiencies at a minimal power consumption for the non-thermal plasma reaction.

인공습지시스템에서 수리학적 조건과 수질정화특성 (Purification Characteristics and Hydraulic Conditions in an Artificial Wetland System)

  • 박병흔;김재옥;이광식;주기재;이상준;남귀숙
    • 생태와환경
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    • 제35권4호통권100호
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    • pp.285-294
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    • 2002
  • 본 연구는 농업용저수지의 수질개선을 위한 인공습지 시스템에서 수리학적 부하조건과 수질정화 특성간의 상관관계를 평가하고, 습지의 조성과 관리에 관한 기본적이며 주요 인자들을 규명하고자하였다. 인공습지시스템은 저수지 중층수를 유입시키기 위한 양수장과 미나리, 창포, 줄, 부들, 갈대등의 정수식물을 식재한 6개의 개별습지로 구성되어 있다. 시스템은 자유수면흐름방식으로 유입처리유량 $0.012-0.122\;m^3/s$,수리학적 체류시간 0.5-2.0 hr의 수리학적 고부하조건으로 운영하였으며, 수심은 0.1-0.2m, 유입수질은 저수지를 대상으로 하여 비교적 낮은 영양염류 농도(TN 2.224-2.462 mg/L, TP 0.145-0.164 mg/L)를 가지고 있다. 본 연구기간 중 각 개별습지의 평균 수질정화효율은 TN 12.1-14.3%로 갈대조에서 높게 나타났으며, TP는 6.3-9.5%로 식물 종에 따른 른 차이가없었다. SS는 17.4-38.5%, Cht-a는 12.6-20.2%로 미나리조에서 높게 나타났는데, 이는 유입수 농도가 다소 높은 때문으로 판단된다. 시간당 정화량은 TN $1.299-2.343\;g{\cdot}m^{-2}{\cdot}d^{-1}$ TP $0.85-1821\;g{\cdot}m^{-2}{\cdot}d^{-1}$, SS는 $17.9-111.6\;g{\cdot}m^{-2}{\cdot}d^{-1}$. Chl-3는 $0.011-0.094\;g{\cdot}m^{-2}{\cdot}d^{-1}$로 정화효율에서와 달리 TN은 줄에서 가장 높았고, TP는 창포에서 높았다. 침강성 물질인 SS와 Chl-a는 미나리에서 높게 나타났으며, 미나리는 BOD, COD, TN, TP등 다른 수질항목에서도 높은 값을 보여주고 있어 정화효율에서와 같이 유입수농도가 습지내 물질제거에 영향이 있음을 보여준다. 정화효율 및 시간당 정화량과 수리학적 조건간의 상관관계는 수심, 체류시간, 일유입량, 수리학적 부하량, 유입수 농도, 온도 등 다양한 변수에 의한 영향으로 비교적 낮게 나타났다. 정화효율과 수리학적조건간의 상관계수($R^2$)는 수리학적 체류시간과 0.016-0.731,일처리유량과는 0.015-0.868을 나타내었으며, 시간당 정화량과 수리학적 조건간의 상관계수($R^2$)는 수리학적 체류시간과는 0.173-0.763,일처리유량과는 0.209-0.770의 범위를 나타내었다. 정화효율과 수리학적 부하조건간의 상관계수($R^2$)Tt 0.5 이상을 나타내는 각 수생식물 습지별 수질항목은 체류시간과 일처리유량에 대해각각 20%,정화속도와 수리학적 조건간의 상관계수는 체류시간에 대해 53%, 일처리유량에 대해73%가 0.5이상을 보이고 있어 시간당 정화량과 수리학적 조건간의 상관관계가 정화효율과의 상관관계보다 좀더 유의성 있게 나타났다. 이것은 높은 수리학적 부하조건이 영양염류 등의 정화효율에는 크게 영향을 미치지 않음을 보여주고 있으며, 따라서 비교적 낮은 농도의 영양염류를 가지고 있고, 많은 처리수량을 요구하는 부영양화된 저수지의 수질개선을 위해서는 높은 수리학적 부하조건에서 시간당 정화량을 늘리는 관리방법이 경제적이며, 이에 초점을 맞추어 나가야 할 것으로 사료된다.

Hybrid type 반응조에서의 혐기성 슬러지의 탈질(I): 초산을 기질로 사용한 경우 (Denitrification of Anaerobic Sludge in Hybrid type Anaerobic Reactor(I): Acetate as Substrate)

  • 신항식;김구용;이채영
    • 상하수도학회지
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    • 제13권4호
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    • pp.35-44
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    • 1999
  • In this study, it was attempted to remove nitrate and carbon in a single-stage reactor using acetate as substrate. Hybrid type upflow sludge baffled filter reactor was adopted using anaerobic sludge. Sludge bed in the bottom of reactor was intended to remove carbon and nitrate by denitrification and methanogenesis. And floating media in the upper part of reactor were intended to remove remaining carbon which was not removed due to the inhibition of nitrogen oxide on methane producing bacteria. The reactor removed over 96% of COD and most of nitrate with volumetric loading rate of $4.0kgCOD/m^3{\cdot}day$, hydraulic retention time of 24hr, 4,000mgCOD/L, and $266mgNO_3-N/L$. Nitrate in anaerobic sludge was converted to nitrogen gas(denitrification) or ammonia (ammonification) according to pH of influent, COD removal efficiency was easily affected by the change of volumetric loading rates and nitrate concentration. And when influent pH was about 4.7, most nitrate changed to ammonia while when influent pH was about 6.8~7.0, most nitrate denitrified independent of $COD/NO_3-N$ ratio. Most granules were gray and a few were black. In gray-colored granule, black inner side was covered with gray substance and SEM illustrated Methanoccoci type microorganisms which were compact spherical shape. Anaerobic filter removed residual COD effectively which was left in sludge bed due to the inhibition of nitrogen oxide.

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常溫에서 豚 . 人糞混合廢棄物의 嫌氣性處理(I) (Anaerobic Digestion of Pig Manure and Night Soil Mixed Waste in a Normal Temperature (I))

  • Kim, Nam-Cheon;Min, Dal-Ki
    • 한국환경보건학회지
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    • 제14권1호
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    • pp.63-71
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    • 1988
  • This study is an experimental research on the anaerobic digestion of pig manure and night soil mixed waste at room temperature (25$\circ$C), and the results are shown below: 1. The steady-state condition based on gas production as digestion temperature dropped to 25$\circ$C from 35$\circ$C was achieved at around 28, 47, 56, 64 days respectively when its hydraulic retention time(HRT) are 10, 20, 30, 40 days. 2, Alkalinity and volatile acid(VA) was increased as increasing the organic loading. 3. Removal efficiency of chemical oxygen demand(COD) and biochemical oxygen demand (BOD) was improved as longer HRT, and generally COD value is lower and BOD value is higher relatively. 4. Overall treatment efficiencies of mixed waste are higher than of pig manure and of night soft. 5. Organic removal efficiency at room temperature (25$\circ$C) is 20-25% lower at medium temperature (35$\circ$C) in a same VS loading condition. 6. Refractory fraction of the infiuent VS and organic removal rate constant(K) estimated at around 37% and 0.107/day respectively.

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