• 제목/요약/키워드: MF(Microfiltration)

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Application of Membrane Technology in Japan

  • Minami, Katsuyoshi
    • 한국막학회:학술대회논문집
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    • 한국막학회 1995년도 추계 총회 및 학술발표회
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    • pp.58-73
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    • 1995
  • Membrane filtration is a promising technology for efficient solid/liquid separation in water purification. In FY 1991, the Ministry of Health and Welfare, Japanese Government launched a comprehensive research project "MAC 21" for development of membrane technology and its application to public water supply. The project was conducted by the Water Purification Process Association (WPPA), under the supervision of the Institute of Public Health. By the research project from FY 1991 to FY 1993, we confirmed that microfiltration (MF)/ultrafiltration (UF) technology was applicable to water purification and MF/UF was a effective method for the removal of such contaminants as particulate matter and coliforms. The Guideline Committee organized under the Technical Committee prepared a the guidelines on application of membrane system to small-scale public water supplies, based on the results as written above. The guidelines has been published in Dec., 1994 by WPPA.4 by WPPA.

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MEMBRANE PROCESSES IN ENVIRONMENTAL TECHNOLOGY

  • Blume, I.;Smolders, C.A.
    • 멤브레인
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    • 제2권1호
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    • pp.1-20
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    • 1992
  • Classical membrane processes like microfiltration (MF), ultrafiltration (UF) and reverse osmosis (RO) are being applied in the last years more frequently in environmental and effluent process problems. Newer technologies and developments like pervaporation (PV) and gas sepaxation (GS) recently found commercial applications in the treatment of waste waters and gas streams. The incentive here is either the clean-up from organic components to comply with federal emission regulations or the recovery of the organics for economical reasons. Processes still in their development stage are combinations of chemical reactions with membrane processes to separate and treat $SO_x$ and $NO_x$ laden waste gas streams in the clean-up of stack-gases. In this paper we will first give a short overview of the more recent developments in MF, UF and RO. This is followed by a closer look on newer technologies applied in environmental problems. The applications looked at are the recovery of organic components from solvent laden gas streams and the separation of organic volatiles from aqueous waste waters via pervaporation. Technical solutions, the advantages and disadvantages of the processes and. where possible, cost estimations will be presented.

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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.

Effect of $N_2$-backflushing Time in Carbon Ceramic UF & MF System for Paper Wastewater Treatment

  • Park, Jin-Yong
    • Korean Membrane Journal
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    • 제7권1호
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    • pp.34-41
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    • 2005
  • The wastewater discharged from a paper plant was filtrated by 3 kinds of tubular carbon ceramic UF and MF membranes with $N_2$-backflushing. The filtration time (FT) was fixed at 8 min or 16 min, and $N_2$-backflushing time (BT) was changed in 0${\~}$60 sec. The optimal condition was discussed in the viewpoints of total permeate volume ($V_T$), dimensionless permeate flux (J/Jo) and resistance of membrane fouling ($R_f$). In the viewpoints of $V_T$, J/Jo and $R_f$, the optimal $N_2$-BT was 40 sec at both FT for M9 (MWCO: 300,000 Daltons) and C005 ($0.05{\mu}m$) membranes. However, for C010 ($0.1{\mu}m$) it was 10 sec at FT=8 min, and 20 sec at FT=16 min in the viewpoints of J/Jo and $R_f$, and 5 sec at both FT in the viewpoints of $V_T$. It means that the short $N_2$-BT could reduce the membrane fouling and recover the permeate flux sufficiently for MF membrane having a large pore size as C010. Average rejection rates of pollutants were higher than $99.0\%$ for turbidity and $22.8{\~}59.6\%$ for $COD_{cr}$, but rejection rates of total dissolved solid (TDS) were lower than $8.9\%$. Therefore, the low turbidity water purified in our system could be reused for paper process.

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.

D댐수를 이용한 정밀여과 공정에서 막오염 특성 및 최적 화학세정방법 조사 (Characterization of Membrane Fouling and It's Optimal Chemical Cleaning Method in MF Process using D dam water)

  • 김충환;임재림;이병구;채선하;박민구;박상훈
    • 상하수도학회지
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    • 제21권5호
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    • pp.559-569
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    • 2007
  • The purposes of this study were to find the main foulant of membrane and the optimal chemical cleaning method for MF(microfiltration) drinking water treatment system using D dam water as water source. The MF pilot plant which can treat maximum $500m^3/d$ consisted of 3 racks and was operated for 10 months under various operation conditions. After 10 months operation, $1^{st}$ and $2^{nd}$ rack of membrane pilot plant system were cleaned chemically and the degree of the restoration of the fouled membrane in terms of the pure water flux was detemnined. Inorganic compounds which contained in chemical cleaning waste was analyzed by Inductively Coupled Plasma (ICP). One membrane module for 3rd rack was disjointed and membrane fouling materials, especially inorganic compounds were investigated by Electron Probe Microanlysis (EPMA) to elucidate the reason of TMP increase. And also, the various chemical reagents (1N HCl or $H_2SO_4$, oxalic acid as acid and 0.3% NaOCl as alkali) were tested by combination of acid and alkali to determine the optimal chemical cleaning method for the MF system using micro-modules manufactured using the disjointed module. It was verified that the inside and outside of membrane module was colorized with black. As a result of the quantitative and semi-qualitative analysis of membrane foulant by ICP, most of inorganic foulant was manganese which is hard to remove by inorganic acid such as HCI. Especially, it was observed by EPMA that Mn was attached more seriously in inside surface of membrane than in outside surface of that. It was supposed that Mn fouling in inside surface of membrane might be caused by the oxidation of soluble manganese (Mn(II)) to insoluble manganese ($MnO_2$) by chlorine containing in backwashing water. The optimal cleaning method for the removal of manganese fouling was consecutive cleaning with the mixture of 1N HCl and 1% of oxalic acid, 0.3% NaOCl, and 1N HCl showing 91% of the restoration of the fouled membrane.

산화환원효소에 의한 휴믹산의 산화중합반응 (Oxidative Coupling Reaction of Purified Aldrich Humic Acid by Horseradish Peroxidase)

  • 지상현;김도군;김정현;고석오
    • 대한환경공학회지
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    • 제32권11호
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    • pp.1054-1062
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    • 2010
  • 휴믹물질의 산화중합반응은 천연 효소나 금속산화물 촉매에 의해 유도될 수 있다. 본 연구에서는 천연 효소인 horseradish peroxidase (HRP)에 의한 휴믹산의 특성 변화와 이러한 변화된 특성이 정밀여과 공정에 미치는 영향을 평가하였다. 정제된 Aldrich 휴믹산(PAHA)이 HRP 및 과산화수소 존재 하에 산화중합되어 보다 크고 복잡한 분자를 형성하였으며, 크기배제크로마토그래피(SEC, size exclusion chromatography, SEC)에서도 평균분자량의 증가가 관찰되었다. 또한, HRP 및 $H_2O_2$ 주입량이 증가함에 따라 PAHA의 분자량은 더욱 증가하였다. 휴믹물질의 화학적 안정성은 산화중합반응에 기인한 휴믹 분자 상호간의 공유결합이 촉진됨에 따라 향상되었으며, 형광 분광 및 적외선 분광 분석 결과, 산화중합반응에 의한 PAHA 분자 작용기의 변화도 확인되었다. 수처리 공정에 미치는 영향을 평가하기 위해, 정밀여과를 적용한 결과, 산화중합반응 산물은 높은 분자량으로 인해 그 제거효율이 크게 향상되었다. 이는 산화중합된 자연유기물이 정밀여과에 의해 제거될 수 있음을 증명하는 것이다.

다공성 폴리술폰 비대칭막 제조시 에테르형 알코올의 공경형성에 미치는 영향 (Effect of Ether-Typed Alcohols on Pore Formation in Preparing an Asymmetrically Porous Polysulfone Membrane)

  • 최용진;강병철
    • 멤브레인
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    • 제20권2호
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    • pp.135-141
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    • 2010
  • 다양한 형태의 Polysulfone 막을 MBR공정에 적용하기 위해 제조하였다. 특히 제조공정에 있어서 여러 형태의 에테르형 알코올을 사용 도프용액에 첨가시킴으로써, 공경크기에 미치는 영향력을 조사하였다. 본 연구에서는 공경의 크기는 첨가된 첨가제의 끓는점에 의한 영향력보다는 그들 자체(첨가된 첨가제)의 분자구조에 의한 확산에 더 큰 영향력을 받고 있음을 보여주었다. 분자적으로 methoxy ($CH_3$-O-) < secondary propanol ($-CH_2$-CH(OH)$-CH_3$) < ethoxy ($CH_3-CH_2-O-$)의 순으로 공경크기가 커지고 그에 따라 순수투과도 또한 커짐을 보여주었다. 이러한 현상은 첨가된 용매가 분자적으로 ether형 알코올의 bulky한 정도에 따라 공경의 형성이 다른 형태로 나타나고 있음을 보여주고 있다. 본 연구에서는 다양한 형태의 ether형 alcohol를 통하여 바라고자하는 형태(평균 pore size 0.1~0.4 ${\mu}m$)의 MF (microfiltration)막을 제조할 수 있었으며, MBR (membrane bio-reactor)에 적용한 결과 2달 동안 안정되게 운전되었다.

The effect of Fullerene (C60) nanoparticles on the surface of PVDF composite membrane

  • Kim, Kyung Hee;Lee, Ju Sung;Hong, Hyun Pyo;Han, Jun Young;Park, Jin-Won;Min, ByoungRyul
    • Membrane and Water Treatment
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    • 제6권5호
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    • pp.423-437
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    • 2015
  • Polyvinylidene fluoride/fullerene nanoparticle (PVDF/$C_{60}$) composite microfiltration (MF) membranes were fabricated by a non-solvent induced phase separation (NIPS) using N, N-dimethylacetamide (DMAc) as solvent and deionized water (DI) as coagulation solution. Polyvinylpyrrolidone (PVP) was added to the casting solution to form membrane pores. $C_{60}$ was added in increments of 0.2% from 0.0% to 1.0% to produce six different membrane types: one pristine PVDF membrane type with no $C_{60}$ added as control, and five composite membrane types with varying $C_{60}$ concentrations of 0.2, 0.4, 0.6, 0.8 and 1.0%, respectively. The mechanical strength, morphology, pore size and distribution, hydrophilicity, surface property, permeation performance, and fouling resistance of the six membranes types were characterized using respective analytical methods. The results indicate that membranes containing $C_{60}$ have higher surface porosity and pore density than the pristine membrane. The presence of numerous pores on the membrane caused weaker mechanical strength, but the water flux of the composite membranes increased in spite of their smaller size. Initial flux and surface roughness reached the maximum point among the composite membranes when the $C_{60}$ concentration was 0.6 wt.%.

수처리용 상용 고분자 분리막 제품 기술동향 (Technology Trend on Commercial Polymeric Membranes for Water Treatment)

  • 장해남
    • 멤브레인
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    • 제29권1호
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    • pp.11-17
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    • 2019
  • 수처리 분리막 분야에서 고분자는 세라믹과 함께 가장 중요한 소재로 이용되고 있다. 본 총설에서는 이러한 고분자 분리막 소재의 기술동향을 상용화 제품을 중심으로 분석하고자 하였으며, 이를 위하여 수처리 분리막의 종류에 따라 MF (Microfiltration), UF (Ultrafiltration), NF (Nanofiltration)/RO (Reverse Osmosis) 분리막으로 구분하여, 국가별, 소재별, 회사별 고분자 분리막 제품 동향을 살펴보았다. 이를 통하여, 각 분리막 종류별로 주로 사용되고 있는 소재의 종류를 파악할 수 있었으며, 동시에 시장 지배적인 위치에 있는 업체들을 파악하고 이들 업체들이 어떤 소재들로 제품 포트폴리오를 구성하고 있는지 분석할 수 있었다. 이러한 결과들을 바탕으로 각각의 분리막 종류에 따른 소재 시장의 특징을 제시하였으며, 이런 특징을 바탕으로 각 시장에 신규로 진입하기 위한 기술 개발 전략을 제안하였다.