• 제목/요약/키워드: EGSB

검색결과 7건 처리시간 0.021초

Treatment of Wastewater from Purified Terephtalic Acid (PTA) Production in a Two-stage Anaerobic Expanded Granular Sludge Bed System

  • Lee, Young-Shin;Han, Gee-Bong
    • Environmental Engineering Research
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    • 제19권4호
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    • pp.355-361
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    • 2014
  • The wastewater treatment with a two-phase expanded granular sludge bed (EGSB) system for anaerobic degradation of acetate, benzoate, terephtalate and p-toluate from purified terephtalic acid (PTA) production was studied. The feasibility and effectiveness of the system was evaluated in terms of organic oxidation by chemical oxygen demand (COD), gas production, bacterial adaptability and stability in the granular sludge. Average removal efficiencies 93.5% and 72.7% were achieved in the EGSB reactors under volumetric loading rates of $1.0-15kg-COD/m^3/day$ and terephtalate and p-toluate of 351-526 mg/L, respectively. Gas production reached total methane production rate of 0.30 L/g-COD under these conditions in the sequential EGSB reactor system. Higher strength influent COD concentration above 4.8 g-COD/L related to field conditions was fed to observe the disturbance of the EGSB reactors.

EGSB 반응조 운전시 상향유속이 입상슬러지의 크기 및 활성도에 미치는 영향 (Effect of upflow liquid velocity on size and activity of granular sludge in Expended Granular Sludge Bed(EGSB) reactor)

  • 이헌모;정병곤
    • 환경위생공학
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    • 제12권2호
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    • pp.13-21
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    • 1997
  • The effect of upflow velocity on size distribution and activity of granular sludge was studied in laboratory-scale Expended Granular Sludge Bed(EGSB) reactor fed with non-fat dry milk and sucrose as sole carbon and energy source. High upflow velocity advanced size and activity of granular sludge by distribution and floatation of granular sludge. Therefore, the reactor operation of an apt upflow velocity was needed and an apt upflow velocity in this experimental was estimated to 1-10m/hr.

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HMUS와 SBR 반응조를 이용한 축분처리에 관한 연구 (Pig slurry treatment by the pilot scale hybrid multi-stage unit system (HMUS) followed by sequencing batch reactor (SBR))

  • 이영신;한기봉
    • 유기물자원화
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    • 제21권2호
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    • pp.63-70
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    • 2013
  • 현장 실규모의 다단공정으로 ATAD, EGSB 및 SBR을 조합한 HMUS 공정을 이용하여 돼지 축분 처리가능성을 시험하였다. 실험결과 고농도 유기물, 질소와 인의 제거에 효과적이었다. 각 오염항목의 시스템 공정별 처리효율이 ATAD 공정에서는 CODcr이 43.3%로 제일 높게 나타났다. 다음 단계인 응집침전 공정에서는 TS의 제거효율이 96.5%로 가장 높게 나타났다. 운전조건 중 OLR은 3-6Kg $COD/m^3{\cdot}day$ 및 선속도는 1.5-4 m/h의 범위일 때 평균 CODcr 제거 효율은 HRT 3일에서 가장 높게 나타났다. 유입수의 성상이 영향을 미치는 고온호기성 산화반응은 TS가 50,000 mg/L 이상 되어야 고온발열효과를 얻어 병원균을 사멸할 수 있는 온도를 얻었다. EGSB 공정을 거치는 동안 유기물제거량 당 발생된 가스발생량은 $2.3{\sim}8.5m^3/kgTS{\cdot}d$ (평균 $5.2m^3/kgTS{\cdot}d$)로 나타났다. 후처리단계인 간헐포기공정에서 전체운전기간 중 평균제거효율은 CODcr 71.7%, TS 64.1%, TN 45.9%, 및 TP 50.4% 로 나타났다.

Waste treatment with the pilot scale ATAD and EGSB pig slurry management system followed by sequencing batch treatment

  • Lee, Young-Shin;Han, Gee-Bong
    • Environmental Engineering Research
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    • 제20권3호
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    • pp.277-284
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    • 2015
  • Experiments for highly concentrated contaminants in pig waste slurry were carried out for the feasibility test of a pilot-scale innovative process scheme of engaging autothermal thermophilic aerobic digestion (ATAD) and expended granular sludge bed (EGSB) followed by sequencing batch reactor (SBR) system. Contaminants in pig waste slurry such as organic substance, total nitrogen (TN), ammonia nitrogen and total phosphorus (TP) contents were successfully reduced in the system. Total volatile solids (TVS) and chemical oxygen demands (COD) for organic matter in the feed were 32.92 g/L and 42.55 g/L respectively, and they were reduced by about 98.7% and 99.2%, respectively in the system. The overall removal efficiencies for TN and ammonium nitrogen were found to be 98.1 and 98.5%, respectively. The overall removal efficiency for total phosphorus was also found to be 92.5%. Faecal coliform density was reduced to <$1.2{\times}10^4CFU/g$ total solids. Biogas and $CH_4$ were produced in the range of 0.39-0.85 and $0.25-0.62m^3/kg$ [VS removed], respectively. The biogas produced in the system comprised of $295{\pm}26ppm$ (v/v) [$H_2S$].

고율 혐기성 공정과 아질산-아탈질을 연계한 수산물가공폐수의 질소제거 (Removal of Nitrogen in Seafood Processing Wastewater Using High-rate Anaerobic Process and Nitritation-denitritation)

  • 최용범;강동구;박상성;엄기현;임재명;권재혁
    • 한국환경보건학회지
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    • 제37권4호
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    • pp.315-322
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    • 2011
  • Objectives: Organic matter and nitrogen were removed using the EGSB process, a high-rate anaerobic process, in combination with a nitritation-denitritation process, in order to ensure the stable treatment of seafood processing wastewater. Methods: The upflow velocity of an EGGS reactor was operated at 10 m/hr for maximal organics removal efficiency. For removal of nitrogen from seafood processing wastewater a nitritation-denitriation process was applied Results: The efficiency of the EGSB process showed that it has an 80% or more organic matter (CODcr) removal efficiency with an HRT of six hours or more at influent loadings of 17.34 kgCOD/$m^3$/day or less. The methane product for TCODcr removal was 0.23-0.38 $m^3CH_4$/kgCODrem., which was similar to the theoretical generation of STP-state methane, 0.35 $m^3CH_4$/kgTCODrem. In the nitritation-denitritation process, the nitritation conversion rate to $NH_4^+$-N concentration was 82% to 87%, 72% to 81% and 64% to 69% when HRT was 24 hr, 21 hr and 18 hr, respectively. In the denitritation process, the ratio of SCOD consumption to NOx-N removal ranged from 2.347 to 2.587. It was 2.472 on average. Conclusions: The optimal HRT for stable processing of seafood processing wastewater is six hours or more. The ratio of nitrite to total NOx-N was 82% to 96%, which indicates that nitrite accounts for the largest portion of the product.

축산폐수의 후처리공정으로서 SBR 적용시 운전인자에 따른 질소와 인의 제거특성에 관한 연구 (A Study on the Removal of Nitrogen and Phosphorus by Operation Mode for Livestock Wastewater Treatment Post-process Using SBR)

  • 최건열;이영신
    • 한국환경보건학회지
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    • 제35권3호
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    • pp.214-219
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    • 2009
  • This study examined the removal efficiency of the nitrogen and phosphorus in order to compensate for the combined process of ATAD(Autothermal Thermophilic Aaerobic Digestion) and EGSB(Expended Granular Sludge Bed), which are treatment methods for livestock wastewater, by introducing SBR(Sequencing Batch Reactor) as post-treatment process. The analysis on the treatment efficiency of each operation mode showed that, in the case of T-N, the treatment efficiency were 67.1% and 74.2% for Run-1 and Run-2, respectively, and in the case of T-P, the values were 71.2 and 74.1, respectively, which are indicating that the treatment efficacy is higher in the condition of Run-1, in which the time period of Anoxic and Aerobic segments were increased. In addition, the result of analyzing removal characteristics of nitrogen and phosphorus by Influx load showed that removal efficiency of nitrogen was better in the case of high influx load than in the case of low influx load. Regardless of Influx load, phosphorus showed constant influx concentration, so that removal efficiency of phosphorus was influenced littler by Influx load than that of nitrogen. This study also fed methanol as an external carbon source and performed experiment to induce denitrification under anoxic condition by using nitrate among nitrogen compounds of SBR reactor, and the results showed that intermittent feeding was more effective in Nitrogen Removal than composite feeding.

개선된 고율혐기성 공정을 이용한 수산물 가공폐수처리 (Treatment of Seafood Wastewater using an Improved High-rate Anaerobic Reactor)

  • 최병영;최용범;한동준;권재혁
    • 한국산학기술학회논문지
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    • 제15권12호
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    • pp.7443-7450
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    • 2014
  • 본 연구는 높은 상향유속을 가지는 고율 혐기성 공정의 단점을 해결하고자 반응조의 구조개선을 통한 고율 혐기성 반응조의 성능평가를 실시하였다. 개선된 반응조는 반응조의 직경을 조절하여 반응조를 세부분으로 구분하여 제작하였다. 구조 변경된 반응조의 성능평가 결과, 반응조 하부의 단회로 및 고형물 축적현상과 미생물 유출을 방지하여 반응조 내 미생물을 안정적으로 유지할 수 있었다. 혐기성 소화 과정에서 반응조내 pH와 알카리도 상승은 유기물 분해과정 및 biogas의 일부 재용해에 의해 생성된 중탄산염에 기인한 것으로 판단되며, 높은 유기물 제거효율을 이루기 위해서는 HRT 9 hr 이상, 유기물 부하 $10.0kgTCODcr/m^3{\cdot}d$ 이하 범위로 운전하여야 한다. 혐기성 소화과정에서 발생하는 메탄가스는 유기물 부하 $7.7kgTCODcr/m^3{\cdot}d$ 이상에서 65~83 %의 높은 함량을 나타냈으며, CODcr 제거당 메탄 발생량은 $0.10{\sim}0.23m^3CH_4/kgCOD_{rem}.$으로 STP 상태의 이론적 메탄가스 발생량(0.35)보다 낮은 것으로 조사되었으며, 고율 혐기성 공정후단에 질소제거를 위한 고도처리 공정이 필요한 것으로 판단된다.