• 제목/요약/키워드: Submerged Microfiltration System

검색결과 15건 처리시간 0.026초

침지형 정밀여과시스템을 결합한 이상 혐기성 시스템에 의한 유기물 제거율의 향상 (Improved Organic Removal Efficiency in Two-phase Anaerobic Reactor with Submerged Microfiltration System)

  • 정진영;정윤철;이상민
    • 대한환경공학회지
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    • 제22권4호
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    • pp.629-637
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    • 2000
  • 고형물 함유 유기폐수의 효율적인 메탄에너지 회수를 위해서 이상소화 반응시스템에 정밀여과시스템을 결합하여 시험하였다. 본 실험에 사용된 막분리 시스템은 산발효조내에 침지시켜 압축공기로 주기적으로 역세척하였고 셀룰로오스재질의 $0.5{\mu}m$ 크기의 막공경을 가진 카트릿지 형태의 정밀여과막을 사용하였다. 메탄발효조는 플라스틱 충진물을 반응기부피의 반 정도 채운 AUBF (Anaerobic Upflow Sludge Bed Filter) 를 사용하였다. 합성폐수는 선분 5,000 mg/L을 기질로 사용하였으며 운전부하에 따른 COD 제거특성을 조사하였다. 산발효조의 HRT는 10일에서 4.5일까지 단계적으로 감소시켰고 이때의 유기물 용적부하는 0.5에서 $1.0kg\;COD/m^3-day$ 로 변회되었다. 한편, 메탄발효조의 HRT는 2.8일에서 0.5일까지 단계적으로 감소시켰고 이때의 유기물 용적부하는 0.8에서 $5.8kg\;COD/m^3-day$까지 변화되었다. 산발효조의 경우 체류시간 4~5 일에서 80% 이상의 우수한 산선환율을 나타내었다. 메탄발효조의 경우에는 장기간의 운전을 통한 슬러지의 입상화에 기인하여 유기물 부하의 변동에 크게 관련없이 95% 이상 (처리수 COD 300 mg/L 이하)의 우수한 COD 제거특성을 나타내었다. 막분리형 이상소화공정은 산발효조의 미생물농도를 증가시켜 산전환율을 향상시킬 수 있는 가능성을 보여 주었고, 복합형 염기성 반응기는 우수한 COD 및 SS 제거를 나타내었다.

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해수전처리를 위한 침지식 정밀여과 멤브레인 시스템에서 Alginate 파울링의 이해 (Understanding Alginate Fouling in Submerged Microfiltration Membrane System for Seawater Pretreatment)

  • 장호석;권대은;김정환
    • 멤브레인
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    • 제26권1호
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    • pp.55-61
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    • 2016
  • 저압 침지식 멤브레인을 이용한 해수 담수화 전처리에 있어서 유기 파울링은 막간 압력 증가로 인한 화학 세정 횟수의 증가 및 에너지 소비 증가 등 멤브레인 운전시 문제점들을 야기한다. 조류대응 해수전처리에서 조류가 배출하는 extracellular polymeric substances의 대표물질인 sodium alginate를 이용하여 침지식 여과에서 파울링 현상을 관찰하였다. 공기 폭기가 적용되지 않은 경우 순수한 aglinate 파울링은 농도가 증가하면서 증가하였다. 그러나 공기 폭기를 적용해 준 경우 alginate 파울링 감소는 매우 효과적이었다. 공기 폭기가 없는 경우 칼슘 농도의 증가에 따라 alginate 파울링은 감소하였다. 동일 조건에서 공기 폭기 시 높은 alginate 파울링 감소효과를 나타내었으나 NaCl 농도를 증가시킨 경우 칼슘 농도의 증가에 따라 파울링 제어를 위한 공기 폭기 효과는 감소하였다. 해수와 유사한 높은 NaCl과 칼슘 농도에서 고농도 sodium alginate의 경우 공기 폭기량 증가를 통해 초기 파울링을 감소시킬 수 있었으나 시간의 경과에 따라 상대적으로 낮은 폭기량에서의 파울링 감소 효과와 큰 차이는 없었다.

Biofilter pretreatment for the control of microfiltration membrane fouling

  • Park, Jae-Hyung;Satoshi Takizawa;Hiroyuki Katayama;Shinichiro Ohgaki
    • 한국막학회:학술대회논문집
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    • 한국막학회 2003년도 춘계 총회 및 학술발표회
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    • pp.31-38
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    • 2003
  • A pilot scale biofilter pretreatment-microfiltration system (BF-MF) was operated to investigate the effect of biofilter treatment in fouling reduction of microfiltration. Biofiltration was expected to reduce the membrane fouling by removal of turbidity and metal oxides. The hollow-fiber MF module with a nominal pore size of 0.1$\mu$m and a surface area of 8m$^2$ was submerged in a filtration tank and microfiltration was operated at a constant flux of 0.5 m/d. Biofiltration using polypropylene pellets was performed at a high filtration velocity of 320 m/d. Two experimental setups composed of MF and BF/MF, i.e., without and with biofilter pretreatment, were compared. Throughout the experimental period of 9 months, biofilter pretreatment was effective to reduce the membrane fouling, which was proved by the result of time variations of trans-membrane pressure and backwash conditions. The turbidity removal rate by biofiltration varied between 40% to 80% due to the periodic washing for biofilter contactor and raw water turbidity. In addition to turbidity, metals, especially Mn, Fe and Al were removed effectively with average removal rates of 89.2%, 67.8% and 64.9%, respectively. Further analysis of foulants on the used membranes revealed that turbidity and metal removal by biofiltration was the major effect of biofiltration pretreatment against microfiltration fouling.

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고탁도 원수대응 침지식 멤브레인 여과에서 공기폭기 및 용액조성에 따른 파울링 및 처리효율 관찰 (Observations of Treatment Efficiency and Fouling in Submerged Membrane Filtration Treating High-Turbidity Source Water)

  • 장호석;변영권;김정환
    • 멤브레인
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    • 제27권1호
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    • pp.77-83
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    • 2017
  • 무기실리카 입자로 구성된 고탁도 원수를 처리하는 침지식 정밀여과 운전에서 휴민산과 2가 양이온의 존재유무에 따라 시간에 따른 파울링 저항을 관찰하였다. 공기폭기로 인한 무기실리카 입자의 파울링 감소효과는 휴민산과 칼슘이 혼합으로 존재 시 감소하였다. 파울링층의 전자현미경 관찰결과 칼슘의 존재 시 휴민산의 무기실리카 입자 표면흡착이 관찰되었다. 이는 멤브레인 표면에 조밀한 파울링층을 형성시켜 공기폭기 효과를 감소시킨 것으로 판단된다. 용액의 조성에 따른 고탁도 원수의 탁도 제거율에는 큰 변화가 없었으나 공기폭기량에 따라 칼슘과 무기실리카 입자의 혼합 존재 시 유기물질의 제거율은 80% 이상으로 증가하였다. 이는 공기폭기 하에 무기실리카 입자 표면에 흡착된 일부 휴민산들이 멤브레인 표면으로부터 함께 역수송 되어 유기물질 제거율을 증가시킨 것으로 사료된다.

MF막여과 정수처리에서 장기운전 결과 및 DRF를 이용한 침지식 / 가압식 시스템의 비교 평가 (Comparition of Submerged / Pressurized Type Membrane System by DRF and Long-Term Results in MF Drinking Water Treatment)

  • 하금률;김관엽;김효상;이용수;송준섭;김충환;염익태;이용훈;김형수
    • 상하수도학회지
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    • 제22권1호
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    • pp.79-86
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    • 2008
  • In Korea, most of the drinking water treatment relied upon the availability of the surface water, of which the raw water quality varied significantly by season and location. Therefore, the comparison of two operation modes (Pressurized type and Submerged type membrane system) must be estimated before the long-term establishment of two systems. In this study, two pilot-scale microfiltration systems with the capacity of $50m^3/day$ were installed and operated in two different modes, and the applicability of the system was determined based on the results such as the TMP (Trans-Membrane Pressure) and flux. For quantitatively comparing the two systems, a new concept, DRF (Differential Resistance Fraction) was introduced. The accumulated sum of the permeate after each cycle of chemical cleaning was also used as a tool for the system comparison.

중공사 정밀여과막을 이용한 상수처리용 일체형 시스템 개발 (Submerged Type Water Purification System using Hollow Fiber Microfiltration Membrane)

  • 정규영;김형수;임종성
    • 한국수자원학회논문집
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    • 제32권3호
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    • pp.311-319
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    • 1999
  • 기존의 정수처리 공정인 응집 ·침전·모래여과를 단일 공정인 막분리 공정으로 대체하기 위한 중공사 정밀여과막의 적용 가능성을 검토하였다. 실험은 우선 실험실 규모의 실험에서 여러 가지 운전인자에 대한 수질의 안정성 및 장기 운전 가능성을 검토하였고, 여기에서 최적 운전인자로 얻어진 투과플럭스 0.03m/h, 10분 여과, 2분 정지 (30초간 air scrubbing 세정 포함)의 조건으로 20m3/일 규모의 Pilot Plant를 1년 이상 운전하여 안정성을 검증하는 방법으로 수행되었다. 탁도, SS등 막 투과수 수질은 전 실험 기간 동안 탁월한 제거효율을 나타내었다. 따라서 정수처리 공정에의 중공사 정밀여과막을 이용한 막분리 공정은 적용 가능하다고 판단된다.

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Pretreatment Process for Performance Improvement of SIES at Kori Unit 2 in Korea

  • Lee, Sang-Jin;Yang, Ho-Yeon;Shin, Sang-Woon;Song, Myung-Jae
    • 한국방사성폐기물학회:학술대회논문집
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    • 한국방사성폐기물학회 2004년도 Proceedings of the 4th Korea-China Joint Workshop on Nuclear Waste Management
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    • pp.12-27
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    • 2004
  • Pretreatment process consisted of submerged hollow-fiber microfiltration(HMF) membrane and spiral-wound nanofiltration(SNF) membrane has been developed by NETEC, KHNP for the purpose of improving the impurities of liquid radioactive waste before entering Selective Ion Exchange System(SIES). The lab-scale combined system was installed at Kori NPP #2 nuclear power plant and demonstration tests using actual liquid radioactive waste were carried out to verify the performance of the combined system. The submerged HMF membrane was adopted for removal of suspended solid in liquid radioactive waste and the SNF membrane was used for removal of particulate radioisotope such as, Ag-l10m and oily waste because ion exchange resin can not remove particulate radioisotopes. The liquid waste in Waste Holdup Tank (WHT) was processed with HMF and SNF membrane, and SIES. The initial SS concentration and total activity of actual waste were 38,000ppb and $1.534{\times}10_{-3}{\mu}Ci/cc$, respectively. The SS concentration and total activity of permeate were 30ppb and lower than LLD(Lower Limit of Detection), respectively.

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침지형 MF 중공사막을 이용한 하수 2차 처리수의 재이용 연구 (Treatment of Secondary Municipal Wastewater by Submerged Hollow Fiber MF Membranes for Water Reuse)

  • 현승훈;김응도;홍승관;안원영;임성균;김건태
    • 상하수도학회지
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    • 제19권1호
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    • pp.47-52
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    • 2005
  • This study was conducted to evaluate the performance of submerged hollow fiber MF processes to treat secondary wastewater for water reuse. Specifically, membrane productivity and filtrate water quality were investigated under various operating conditions (i.e. flux, recovery, and backwash rate) at pilot-scale. Membrane fouling became more severe with increasing flux and recovery, suggesting that low flux operation (< 25 LMH) was desirable. At high flux operating(> 37.5 LMH), increasing backwash rate showed only limited success. The biofouling, quantified by PEPA and BFHPC, was also significant in wastewater reclamation, and biogrowth control by chlorine, were necessary to improve membrane productivity. Filtrate water qualities are in good compliance with water reuse regulations regardless of operating conditions (flux, recovery and backwash rate). Particle (e.g. turbidity) removal ranged from 89 to 98%, while only 11 to 21% of organics (e.g. NPDOC) were removed by MF membrane. Only small improvement in biostability (e.g. AOC) was achieved by MF system, and thus, without post disinfection, significant microorganisms might be present in the filtrate due to regrowth. Lastly, in order to further investigate pathogen removal, controlled microbial challenge tests were performed by monitoring Giardia, Cryptosporidium, bacteria and virus, and showed relatively good microbial removal.

Harvesting of microalgae via submerged membranes: flux, fouling and its reversibility

  • Elcik, Harun;Cakmakci, Mehmet
    • Membrane and Water Treatment
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    • 제8권5호
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    • pp.499-515
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    • 2017
  • The purpose of this study was to investigate membrane fouling caused by microalgal cells in submerged membrane systems consisting of polymeric and ceramic microfiltration membranes. In this study, one polymeric (flat-sheet, pore size: $0.2{\mu}m$) and two ceramic (flat-sheet, pore size: $0.2{\mu}m$ and cylindrical, pore size: $1{\mu}m$) membranes were used. Physical cleaning was performed with water and air to determine the potential for reversible and irreversible membrane fouling. The study results showed that substantial irreversible membrane fouling (after four filtration cycles, irreversible fouling degree 27% (cleaning with water) and 38% (cleaning with air)) occurs in the polymeric membrane. In cleaning studies performed using water and air on ceramic membranes, it was observed that compressed air was more effective (recovery rate: 87-91%) for membrane cleaning. The harvesting performance of the membranes was examined through critical flux experiments. The critical flux values for polymeric membrane with a pore size of $0.20{\mu}m$ and ceramic membranes with a pore size of $0.20{\mu}m$ and $1{\mu}m$ were ${\leq}95L/m^2hour$, ${\leq}70L/m^2hour$ and ${\leq}55L/m^2hour$, respectively. It was determined that critical flux varies depending on the membrane material and the pore size. To obtain more information on membrane fouling caused by microalgal cells, the characterization of the fouled polymeric membrane was performed. This study concluded that ceramic membranes with a pore size of $0.2-1{\mu}m$ in the submerged membrane system could be efficiently used for microalgae harvesting by cleaning the membrane with compressed air at regular intervals.

평막을 이용한 침지형 막여과시스템에서 고농도 분말활성탄 주입에 의한 수처리성능 개선 효과 (The Effects of PAC (Powdered Activated Carbon) on Water Treatment Performance of an Immersed Membrane System Using Flat-sheet Membrane Module)

  • 가이샹쥐안;김한승
    • 상하수도학회지
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    • 제21권2호
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    • pp.195-201
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    • 2007
  • A submerged flat-sheet membrane separation system integrated with PAC (powdered activated carbon) was used in this research in order to investigate the effects of PAC on the efficiencies of operation and treatment and to evaluate the performance of the system. The experiments were carried out under operating conditions of a filtration rate of 0.38 m/d, water temperature of $20-28^{\circ}C$, and PAC dose of 0 g/L (Run-A) and 20 g/L (Run-B). The influent concentrations of TOC (total organic carbon), $NH_4{^+}-N$ (ammonia nitrogen) and $UV_{254}$ (UV absorbance at 254 nm) were 2.48 mg/L, 1.4 mg/L and 2.53 1/m, respectively. TOC removal of 43.2 and 73.6%, ammonia nitrogen removal of 4.9 and 15.9%, and $UV_{254}$ removal of 20.6 and 31.6% were obtained for Run-A and Run-B, respectively. During an experimental period of 33 days, no change was found in TMP (Run-B), but the TMP in Run-A increased by 5 kPa after 29 days. This research showed that the filtrate quality and the performance efficiency were enhanced when PAC was introduced into the filtration system.