• 제목/요약/키워드: Hydraulic loading rate

검색결과 158건 처리시간 0.026초

돈분의 2단계 혐기발효시 산생성 단계에서의 유기물 부하율과 체류시간에 따른 휘발성지방산의 생산량 (Effect of Organic Loading Rate and Hydralic Retention Time on the Volatile Fatty Acid Production in 2- Step Anaerobic Fermentation System of Swine Wastes)

  • 김범석;이상락;맹원재
    • 한국축산시설환경학회지
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    • 제4권2호
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    • pp.167-174
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    • 1998
  • It is known that the anaerobic fermentation of organic matter (OM) is divided into 2 phases, acidogenic phase in which OM is digested into volatile fatty acid (VFA), and methanogenic phase where the produced VFA is converted to CH4 and CO2. In a natural fermenting procedure, these 2 phases occur at the same time. However the total production of end products (methane) may be limited if these 2 phases occur at the same time. This is believed to be due to the difference in growth rate, substrate-utilizing efficiency and favorable environment for each microbes (acidogens and methanogens), involved in each phase. It is therefore suggested for the maximum recycling of organic waste (such as animal waste) through providing 2 different steps in fermenting procedure, acidogenic phase and methanogenic phase, in each case the activity of involved microbes can be maintained at the maximum level. The results obtained from these experiments are summarized as follows : The loading rates of swine waste were made through 2.5, 5 and 10 gVS / l / d to identify its acidogenic fermenting character in this study. The VFA yield was maximized at 10 gVS / l / d of loading rate. On the basis of this study was executed to identify the optimum HRT of 1, 2 and 4 days at 10 gVS / l / d of loading rate in acidogenic phase. The maximum VFA yield was obtained at 1 days of HRT.

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혐기성 생물반응기에 의한 축산폐수의 처리 (Treating Swine Wastewater by Anaerobic Bioreactors)

  • 이국희;김종수
    • 한국환경농학회지
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    • 제18권1호
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    • pp.54-60
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    • 1999
  • 축산폐수의 효율적 처리와 최적 메탄발생을 위하여 AF 그리고 이단의 ASBF-PR과 ASBF-SP 실험실적 생물반응기를 구성하고 $35^{\circ}C$ 항온조에서 수리학적체류시간 $1{\sim}2$일 그리고 유기물부하 $1.1{\sim}63kg-COD/m^3{\cdot}d$까지 연속 운전하여 처리효율을 비교, 분석하였다. 하수종말처리장의 혐기성 소화조 잉여 슬러지에 의한 혐기성 생물반응기의 식종은 효과적이었으며, 적응 기간은 약 40일 정도가 소요되었다. 생물반응기는 COD 제거율 $66.4{\sim}84.9$% 그리고 바이오 가스 발생량은 제거된 COD 기준 $0.333{\sim}0.796m^3/kg-COD{\cdot}d$. 으로 축산폐수의 처리에 효율적이었으며 유입 COD의 증가와 수리학적체류시간의 감소에 의한 유기물부하 증가의 경우 COD 제거율은 감소하고 바이오가스 발생량은 증가하였다. 높은 유기물부하에서 AF와 ASBF-PR의 처리효율은 비슷하였으며 ASBF-SP보다 우수하였다. 생물반응기에 충진된 미디어의 공극율과 공극의 크기가 비표면적에 비교하여 유기물질 제거능력 향상에 영향을 미치는 것으로 나타났다. 유입수 TKN 농도가 $1,540{\sim}1,870mg/L$ 범위에서 메탄발효 미생물의 활동은 저해영향을 받아 생물반응기의 처리효율과 바이오가스 발생량은 각각 50% 이하로 감소되는 것으로 나타났으므로 혐기성 소화가 축산폐수의 처리에 주 공정으로 응용된다면 전처리에 의한 TKN의 제거는 필수적이다.

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흡수성 Biofilter 를 이용한 농촌 소규모 오수처리 시설의 성능 (Performance for a small on-site wastewater treatment system using the absorbent biofilter in rural areas)

  • 권순국;윤춘경
    • 한국환경농학회지
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    • 제18권4호
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    • pp.310-315
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    • 1999
  • 본 연구에서는 생물막법의 일종인 흡수성 Biofilter 시스템(ABS)을 설치하여 14개월의 실험기간 동안 건국대 농생대 구내의 염기성 부패조로부터 유입수를 3가지 수리부하율로 처리하여 시험하였다. 모니터링 결과에 의하면 ABS는 평균농도 $BOD_5=6.2mg/l$, TSS=4.4mg/l 이라는 아주 낮은 유기성 유출수를 연속적으로 발생시킬 수 있음이 확인되었다. 이러한 저농도 유출수는 현재 우리나라 오분법의 특정지구(상수원 보호구역)에 대한 방류수 기준($BOD_5=10mg/l$, TSS=10mg/l)에도 훨씬 못 미치는 양호한 농도로서 ABS의 우수한 유기성오수 처리성능이 입증되었다. 특히 유출수내의 TSS 농도가 지극히 낮아서 슬러지의 발생이 거의 없으므로 침전조를 생략할 수 있어 설치비용이 저렴해지고, 유지관리가 단순한 장점을 지니고 있음을 알 수 있었다. 그러나 ABS시설이 농촌에 널리 보급되어 실용적인 시스템이 되기 위해서는 앞으로 T - N과 T- P의 처리효율 향상 방안, 겨울철에 대한 Biofilter탱크내 임계온도 유지문제, 광역모니터링 및 신속보수 유지관리체계 확립에 대한 계속적인 연구가 필요하다. 이러한 문제점만 어느정도 해결된다면 ABS는 우리나라 농촌의 소규모 현장 오수처리시설로서 앞으로 미래가 밝은 차세대형 시스템이 될 것으로 확신한다.

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자화-생물처리 시스템에 의한 염색폐수의 처리 (Treatment of Dyeing Wastewater by Magnetic-Biological Treatment System)

  • 이선하
    • 한국환경과학회지
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    • 제19권3호
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    • pp.371-377
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    • 2010
  • The purpose of this study is to investigate treatment efficiency in dyeing wastewater treatment by the high rate aeration system(HRA) and a combination of the HRA with magnetized wastewater treatment system(MWS). At the hydraulic retention time of 16hr, 24hr, 30hr, BOD removal efficiencies of HRA system were 93%, 96% and 98%, combination of the HRA with MWS system were 94%, 96.8% and 98.2%, respectively. In ease of COD, at the hydraulic retention time of 16hr, 24hr, 30hr, COD removal efficiencies of HRA system were 66%, 77.1% and 83.1%, combination of the HRA with MWS system were 70.2%, 80.1% and 86.6%, respectively. The comparison of the HRA and combination of the HRA with MWS, effluent BOD of the former was 22.7mg/${\ell}$ and the latter was 19.4mg/${\ell}$, theretore biological treatment efficiency identified to increase by the MWS.

축대칭 박판 액압 성형 공정의 유한요소 시뮬레이션 (Finite Element Simulation of Axisymmetric Sheet Hydroforming Processes)

  • 구본영;김용석;금영탁
    • 소성∙가공
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    • 제9권6호
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    • pp.590-597
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    • 2000
  • A finite element formulation lot the simulation of axisymmetric sheet hydroforming is proposed, and an implicit program is coded. In order to describe normal anisotropy of steel sheet, Hill's non-quadratic yield function (Hill, 1979) is employed. Frictional contacts among sheet surface, rigid tool surface, and flexible hydrostatic pressure are considered using mesh normal vectors based on finite element of the sheet. Applied hydraulic pressure is also considered as a function of forming rate and time and treated as an external loading. The complete set of the governing relations comprising equilibrium and interfacial equations is approximately linearized for Newton-Raphson algorithm. In order to verify the validity of the developed finite element formulation, the axisymmetric bulge test is simulated. Simulation results are compared with other FEM results and experimental measurements and showed good agreements. In axisymmetric hydroforming processes of a disk cover, formability changes are observed according to the hydraulic pressure curve changes.

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인공습지 오수처리시설의 처리성능에 관한 연구 (Study on the Performance of Constructed Wetland System for Sewage Treatment)

  • 윤춘경
    • 한국농공학회지
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    • 제42권4호
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    • pp.96-105
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    • 2000
  • Field experiment was performed from August 1996 to December 1999 to examine the performance of constructed wetland system for wastewater treatment in rural area. The constructed wetland system was installed in Konkuk University and the effluent from septic tank of school building was used as an influent to the treatment basin. The treatment basin was composed of sand bed with planted reed. From August 1996 to June 1998 the hydraulic loading rate was fixed with about 15.63cm/day and theoretical detention time was 1.38 days, and from July 1998 to December 1999 the hydraulic loading rate was about 6.25cm/day and theoretical detention time was 3.5days. It worked continuously even during winter time, and the sewage flowed without freezing even when average daily air temperature was below -1$0^{\circ}C$. Average removal rate of BOD , COD, and SS was about 70%, T-P removal rate was about 50.8% , and T-N removal rate was 23.9%. The reason for poor T-N removal might be due to high influent concentration and short retention times. At the later years BOD and COD removal rates were increased , and SS and T-P removal rates did not change significantly , but T-N removal rates were decreased. The effluent of the wetland system often effluent water quality standards for sewage treatment plant, therefore, further treatment would be required if the effluent need to be discharged to the public water. Wetland system involves relatively large land area and could be suitable for rural area. Therefore, utilization of reclaimed sewage for agricultural purpose or subsequent land treatment is recommended as a ultimate disposal of sewage for agricultural purpose or subsequent land treatment is recommended as a ultimate disposal of sewage in rural area.

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살수여상공법을 이용한 양어장 순환수처리 (Recycling Water Treatment of Aquaculture by Using Trickling Filter Process)

  • 김정숙;이병헌
    • 한국수산과학회지
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    • 제29권2호
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    • pp.230-237
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    • 1996
  • 본 연구는 살수여상공법을 양어장 순환수 처리 장치로 설치하여 유기물질 제거 효율, 암모니아 제거효율, 동력학적 상수, 슬러지 생산량과 산소소요량 등의 최적 운전방법을 도출하였다. 유기물질 부하율이 $0.500\~0.082kg\;COD/m^3/day$에서 $66.4\~81.2\%$의 SCOD 제거 효율과 $74.5\~84.0\%$의 SBOD 제거 효율을 보였다. 암모니아 부하율이 $0.271\~0.044kg\;NH_4^+-N/M^3/day$에서 $43.7\~61.8\%$ 의 암모니아성 질소 제거 효율을 보였으며 암모니아 제거량은 $27.2\~119.5mg\;NH_4^+-N/L/day$로 나타났다. Eckenfelder 식에 의해 구한 K, n값은 각각 $0.168\;min^{-1}$과, 0.132로 나타났으며 총 생성된 슬러지 생산량은 0.233g VSS/day로 kg BOD 제거량당 생성되는 슬러지 생산량은 0.572 kg VSS/kg $BOD_{rem}$로 나타났다. 산소소요량은 3.89mg $O_2/L/hr$로 수리학적부하가 $6.712\~40.341\;m^3/m^2/day$에서 $1.33\~7.22\;mg\;O_2/L/hr$로 수리학적 부하가 증가할수록 산소소요량이 증가하였으며 미생물당 산소소모율은 1.08kg $O_2/kg$ VSS로 나타났다.

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유입원수 조류제거를 위한 high rate DAF 최적화 연구 (High Rate Dissolved Air Flotation (DAF) for the Removal of Algae Species)

  • 정우식;안주석;송근원;오현제
    • 상하수도학회지
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    • 제31권5호
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    • pp.415-419
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    • 2017
  • In recent years there have been large increases in the hydraulic loading rates used to design dissolved air flotation (DAF) facilities for drinking water applications. High rate DAF processes are now available at loading rates of 20 to $40m^3/m^2{\cdot}h$. This research evaluated dissolved air flotation as a separation method for algae and organic compounds from water treatment plants. During the service period of 2016. 5. to 2017. 6., DAF pilot plants ($500m^3/day$) process has shown a constantly sound performance for the treatment of raw water, yielding a significantly low level of turbidity (DAF treated water, 0.21~1.56 NTU). As a result of analyzing the algae cell counts in the influent source, it was expressed at 100-120 cells/mL. In DAF treated water, the removal efficient of alge cell counts was found to be upto 90%. The stable turbidity and algae removal were confirmed by operating the high rate DAF process under the condition of the surface loading rate of $30m^3/m^2{\cdot}hr$.

TREATMENT OF HIGH-CONCENTRATION SWINE WASTEWATER BY ANAEROBIC DIGESTION AND AN AQUATIC PLANT SYSTEM

  • Kim, B.U.;Kwon, J.H.
    • Environmental Engineering Research
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    • 제11권3호
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    • pp.134-142
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    • 2006
  • The treatment of high-strength swine wastewater by anaerobic digestion combined with an aquatic plant system was investigated. Anaerobic digestion of swine wastewater gave volatile solids (VS) removal efficiencies of 43.3%, 52.1% and 54.5% for hydraulic retention times (HRTs) of 20, 30, 40 days, respectively. The removal efficiencies of VS, total chemical oxygen demand (TCOD) and soluble chemical oxygen demand (SCOD) decreased with increasing VS volumetric loading rate (VLR). Higher organic removal efficiency was observed at longer HRTs for the same VS volumetric loading rate. As VS volumetric loading rate increased, biogas production increased and the methane content of the biogas decreased. Experiments using duckweed (Lemna species) as an aquatic macrophyte gave the following results. In the case of nitrogen, removal efficiency was above 60% and effluent concentration was below 10.0 mg/L when the influent ammonia-N loading was about $1.0\;g/m^2/day$. In the case of phosphorus, removal efficiency was above 55% and effluent concentration was below 2.0 mg/L when the influent $PO_4$-P loading was about $0.15\;g/m^2/day$. In addition, crude protein and phosphorus content of duckweed biomass increased from 15.6% to 41.6% and from 0.8% to 1.6%, respectively, as the influent nutrient concentration increased. The treatment of high-strength swine wastewater by anaerobic digestion combined with an aquatic plant system offers good performance in terms of organics and nutrient removal for relatively low operation and maintenance costs. The results indicate that under appropriate operational conditions, the effluent quality is within the limits set by Korean discharge criteria.

HRT 변경에 따른 호기성 그래뉼 슬러지의 오염원 제거효율에 미치는 영향 (Effects of Different Hydraulic Retention Times on Contaminant Removal Efficiency Using Aerobic Granular Sludge)

  • 김현구;안대희
    • 한국환경과학회지
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    • 제28권8호
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    • pp.669-676
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    • 2019
  • The purpose of this study was to evaluate the effects of different Hydraulic Retention Times (HRTs) on the contaminant removal efficiency using Aerobic Granular Sludge (AGS). A laboratory-scale experiment was performed using a sequencing batch reactor, and the Chemical Oxygen Demand (COD), nitrogen, orthophosphate removal efficiency, AGS/MLSS ratio, and precipitability in accordance with the HRT were evaluated. As a result, the COD removal efficiency was not significantly different with the reduction in HRT, and at a HRT of 6 h, the removal rate was slightly increased owing to the increase in organic loading rate. The nitrogen removal efficiency was improved by injection of influent division at a HRT of 6 h. As the HRT decreased, the MLSS and AGS tended to increase, and the sludge volume index finally decreased to 50 mL/g. In addition, the size of the AGS gradually increased to about 1.0 mm. Therefore, the control of HRT provides favorable conditions for the stable formation of AGS, and is expected to improve the contaminant removal efficiency with the selection of a proper operation strategy.