• 제목/요약/키워드: Permeate

검색결과 518건 처리시간 0.029초

Construction of the permeate tuner system by the steeple morph of the matter

  • Kim, Jeong-lae;Lee, Woo-cheol
    • International Journal of Advanced Culture Technology
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    • 제6권3호
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    • pp.187-192
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    • 2018
  • Permeate alteration technique is compounded the steeple sway-tuner status of the gleam-differential realization level (GDRL) on the permeate realization morph. The realization level condition by the permeate realization morph system is associated with the sway-tuner system. As to search a dot of the dot situation, we are gained of the permeate value with character-dot by the output signal. The concept of realization level is composed the reference of gleam-differential level for alteration signal by the permeate tuner morph. Moreover displaying a steeple alteration of the GDRL of the average in terms of the sway-tuner morph, and permeate dot tuner that was the a permeate value of the far alteration of the $Per-rm-FA-{\alpha}_{AVG}$ with $14.63{\pm}1.23units$, that was the a permeate value of the convenient alteration of the $Per-rm-CO-{\alpha}_{AVG}$ with $8.28{\pm}0.97units$, that was the a permeate value of the flank alteration of the $Per-rm-FL-{\alpha}_{AVG}$ with $3.28{\pm}0.58units$, that was the a permeate value of the vicinage alteration of the $Per-rm-VI-{\alpha}_{AVG}$ with $0.51{\pm}0.10units$. The sway tuner will be to evaluate at the steeple ability of the sway-tuner morph with character-dot by the permeate realization level on the GDRL that is displayed the gleam-differential morph by the realization level system. Sway realization system will be possible to control of a morph by the special signal and to use a permeate data of sway tuner level.

Effects of membrane orientation on permeate flux performance in a submerged membrane bioreactor

  • Lee, Tsun Ho;Young, Stephanie
    • Membrane and Water Treatment
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    • 제3권3호
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    • pp.141-149
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    • 2012
  • The aeration provided in a Submerged Membrane Bioreactor (SMBR) improves membrane filtration by creating turbulence on the membrane surface and reducing membrane resistance. However, conventional hollow fiber membrane modules are generally packed in a vertical orientation which limits membrane scouring efficiency, especially when aeration is provided in the axial direction. In the present research, 3 innovative hollow-fiber membrane modules, each with a different membrane orientation, were developed to improve membrane scouring efficiency and enhance permeate flux. Pilot testing was performed to investigate the permeate flux versus time relationship over a 7-day period under different intermittent modes. The results indicated that the best module experienced an overall permeate flux decline of 3.3% after 7 days; the other two modules declined by 13.3% and 18.3%. The lower percentage of permeate flux decline indicated that permeate productivity could be sustained for a longer period of time. As a result, the operational costs associated with membrane cleaning and membrane replacement could be reduced over the lifespan of the module.

Treatment of high-salinity wastewater after the resin regeneration using VMD

  • Gao, Junyu;Wang, Manxiang;Yun, Yanbin
    • Membrane and Water Treatment
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    • 제9권1호
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    • pp.53-62
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    • 2018
  • In this study, vacuum membrane distillation (VMD) was used to treat high-salinity wastewater (concentration about 17%) discharged by chlor-alkali plant after resin regeneration. The feasibility of VMD for the treatment of real saline wastewater by using Polyvinylidene fluoride (PVDF) microporous plate membrane with a pore diameter of $0.2{\mu}m$ was investigated. The effects of critical operating parameters such as feed temperature, velocity, vacuum degree and concentration on the permeate water flux were analyzed. Numerical simulation was used to predict the flux and the obtained results were in good agreement with the experimental data. The results showed that an increase in the operating conditions could greatly promote the permeate water flux which in turn decreased with an increase in the concentration. When the concentration varied from 17 to 25%, the permeate water flux dropped marginally with time indicating that the concentration was not sensitive to the decrease in permeate water flux. The permeate water flux decreased sharply until zero due to the membrane fouling resistance as the concentration varied from 25 to 26%. However, the conductivity of the produced water was well maintained and the average value was measured to be $4.98{\mu}s/cm$. Furthermore, a salt rejection of more than 99.99% was achieved. Overall, the outcome of this investigation clearly indicates that VMD has the potential for treating high-salinity wastewater.

유용성 물질의 분리를 위한 두부순물의 한외여과 (Ultrafiltration of Soybean Curd Whey for the Separation of Functional Components)

  • 서성희;황인경
    • 한국식품조리과학회지
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    • 제13권4호
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    • pp.507-513
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    • 1997
  • 두부순물에 함유되어 있는 유용성 물질을 분리·농축하고자 한외여과법을 행하고 그 효율성을 분석하였다. 재생섬유소막과 polysulphone막 모두 pH가 증가할수록 막투과 속도가 감소하였고, pH 3.5에서 한외여과 효율이 가장 높게 나타났다. EDTA를 0.01 M 처리한 두부순물의 경우, 처리하지 않은 것보다 오히려 막투과 속도가 감소하였다. 또한 pH가 증가할수록 두부순물의 이온성 칼슘의 농도가 감소하여 이온성 칼슘의 농도 또한 막투과 속도에 영향을 준다고 생각되었다. Polysulphone막의 경우 용적농축비가 10일 때 COD의 막 제거계수가 79.25%, 단백질 막 제거계수가 98.42%로 나타나 정화효과와 농축액으로의 단백질 농축효과가 컸으며 , 재생섬유소막은 단백질의 막제거 계수는 polysulphone막보다 낮았으나 당을 여과액쪽으로 회수하고자 할 때 더 효율적인 것으로 나타났다. 올리고당을 여과액쪽으로 회수하고자 할 때 라피노오스와 스타키오스의 농도를 상대적으로 높이기 위해서 polysulphone막보다 재생섬유소막이 더 적당하며, 용적농축비는 4배 정도가 적합한 것으로 나타났다.

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관형 알루미나 세라믹 한외여과막에 의한 고도정수처리 시스템에서 물 역세척의 영향 (Effect of Water-back-flushing in Advanced Water Treatment System by Tubular Alumina Ceramic Ultrafiltration Membrane)

  • 박진용;이송희
    • 멤브레인
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    • 제19권3호
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    • pp.194-202
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    • 2009
  • 본 연구에서 처리수를 이용한 주기적인 역세척은 춘천시 공지천의 관형 세라믹 한외여과막에 의한 고도정수처리 시스템에서 막오염을 저감하고 투과선속을 향상시키고자 수행되었다. 일정한 역세척 시간(BT) 15초에서 여과시간 즉, 물 역세척 주기(FT) 2분이 가장 높은 무차원 투과선속(초기 투과선속에 대한 투과선속)과 가장 낮은 막오염 저항값을 보였다. 또한, FT 10분으로 고정한 BT 영향의 결과에서 BT 20초가 가장 낮은 막오염 저항과 가장 높은 무차원 투과선속을 나타내어, 가장 많은 총여과부피 107.3 L를 얻을 수 있었다. 결론적으로 공지천의 정수처리에서 FT 10분과 BT 20초가 최적조건으로 관형 알루미나 정밀여과의 선행 연구결과와 정확히 일치하였다. 한편 관형 세라믹 한외여과 시스템에 의한 오염물질 평균제거율은 탁도 97.0%, 망간법에 의한 COD 32.1%, 암모니아성 질소 28.8%, 총인 54.4%로 나타났다.

Ultrafiltration of palm oil mill effluent: Effects of operational pressure and stirring speed on performance and membranes fouling

  • Yunos, Khairul Faezah Md;Mazlan, Nurul Ain;Naim, Mohd Nazli Mohd;Baharuddin, Azhari Samsu;Hassan, Abdul Rahman
    • Environmental Engineering Research
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    • 제24권2호
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    • pp.263-270
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    • 2019
  • Palm oil mill effluent (POME) is the largest pollutant discharged into the rivers of Malaysia. Thus UF membrane study was conducted to investigate the effect of pressure and stirring speed on performance of POME treatment and fouling of membrane. Two types of membrane polyethersulfone (PES) and regenerated cellulose (RC) with molecular weight cut-off (MWCO) 5 and 10 kDa were used in this study. Results showed that, as pressure increased, fouling increased however permeate quality improved, the best pressure was 1.0 bar, where the fouling was not too high and produce good permeate quality. As stirring speed increased, fouling reduced and permeate quality improved, however, when stirring speed increased from 600 rpm to 800 rpm, there was no significant improvement on the permeate quality. Therefore, the best condition was at 1.0 bar and 600 rpm. PES membrane with MWCO 5 kDa showed the best permeate quality, even fouling slightly higher than RC membrane. The permeate quality obtained were analyzed in term of dissolved solid, turbidity, suspended solid, biological oxygen demand ($BOD_5$) and chemical oxygen demand (COD) were 538 mg/L, 1.02 NTU, < 25 mg/L, 27.7 mg/L and 62.8 mg/L, respectively with dominant type of fouling is cake resistance. Thus, it can be concluded water reuse standard was successfully achieved in terms of $BOD_5$ and suspended solid.

알코홀 증류폐액의 Pilot Scale 정밀여과와 여과액의 발효 재활용에 대한 연구 (A Pilot Study for Microfiltration of Alcohol Stillage Condensate and Permeate Recycle to Fermentation Broth)

  • 김영범;이기세;남궁견;김종현
    • KSBB Journal
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    • 제16권4호
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    • pp.403-408
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    • 2001
  • 알코홀 증류폐액은 통상적으로 COD 50,000-60,000 ppm, TS 3-8%, SS 2-4%, TN 0.05-0.2% 정도가 포함되어 있어 높은 SS와 TN 함량 때문에 종합폐수로써 생물학적 처리를 하거나 혐기성 소화를 통하여 처리하는 데 문제가 있다. SS의 주성분으로는 미발효 원료 잔류물과 함께 균체, 단백질, 섬유질, 그리고 기타 현탁성 또는 용해성 물질들이 포함된다. 본 연구에서는 알코홀 증류폐액 처리의 한 해결책으로써 0.1 $\mu$m Pore size를 갖는 스테인레스 재질의 분리막을 이용한 pilot scale 정밀여과(microfiltration)를 실시하였다. Decanter로 처리된 증류폐액을 정밀여과 처리한 결과 2.5 bar, 6$0^{\circ}C$ 조건에서 VCR 농축도 10X 정도가지 원활한 permeate flux를 얻으며 24시간 이상 장시간 여과가 가능하였고 feed 중 0.7%였던 SS가 100% 가까이 제거된 permeate를 얻을 수 있었다. SS는 retentate 중에 7%까지 농축 가능하였으며 COD는 25-27% 정도 제거되었다. SS가 2.6%인 decanter를 거치지 않은 증류 원폐액의 경우, VCR 3X 이내의 조건으로 여과할 때 SS를 100% 가까이 그리고 COD는 약 50% 정도 제거 가능하였다. 무방류 시스템으로의 전용을 위하여 정밀여과로 얻어진 permeate와 retentate를 발효배지 사입수으로 재활용하여 알코홀 발효에 미치는 영향을 검토한 결과, 재활용 사입수를 사용하지 않은 경우에 비해 발효 도중 이상 현상이나 발효속도와 알코홀 생산량에 부정적인 영향을 미치는 징후는 발견되지 않았다. 발효에 의한 총 $CO_2$ 발생량과 최종 알코홀 함량은 약간 증가하고 큰 차이를 보이지 않았으나, 발효시간 동안의 $CO_2$ 발생속도는 비교적 빨라져서 $CO_2$ 발생량 450 L/ton에 도달하는 시간은 재활용 사입수를 15% 사용했을 때 83-87%, 30%를 사용했을 때 72-76% 정도 단축되는 효과를 얻었다. 증류폐액을 처리하기 위해 사용되는 기존 decanter를 대체하여 정밀여과 막분리장치를 이용한다면 SS가 완벽하게 제거됨으로써 폐수처리의 부하를 줄이는 한편 부가적인 농축 공정을 줄일 수 있을 것으로 기대된다. 또한 여과 permeate를 발효배지 사입수로 재활용함으로써 발효속도를 증진시킬 수 있으며 용수사용량을 절약할 수 있다.

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Sensitivity analysis and Taguchi application in vacuum membrane distillation

  • Upadhyaya, Sushant;Singh, Kailash;Chaurasia, Satyendra Prasad;Baghel, Rakesh;Singh, Jitendra Kumar;Dohare, Rajeev Kumar
    • Membrane and Water Treatment
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    • 제9권6호
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    • pp.435-445
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    • 2018
  • In this work, desalination experiments were performed on vacuum membrane distillation (VMD). Process parameters such as feed flow rate, vacuum degree on permeate side, feed bulk temperature and feed salt concentration were optimized using sensitivity analysis and Taguchi method. The optimum values of process parameters were found to be 2 lpm of feed flow rate, $60^{\circ}C$ of feed bulk temperature, 5.5 kPa of permeate-side pressure and 5000 ppm of salt concentration. The permeate flux at these conditions was obtained as $26.6kg/m^2{\cdot}hr$. The rejection of salt in permeate was found to be 99.7%. The percent contribution of various process parameters using ANOVA results indicated that the most important parameter is feed bulk temperature with its contribution of 95%. The ANOVA results indicate that the percent contribution of permeate pressure gets increased to 5.384% in the range of 2 to 7 kPa as compared to 0.045% in the range of 5.5 to 7 kPa.

2단형 막분리 활성슬러지법(Two Stage MBR)에서 내부순환율 변화와 응집제 첨가에 의한 질소 및 인제거 특성에 관한 연구 (Nitrogen and Phosphorus Removal Characteristics from Domestic Sewage using Two Stage Membrane Bioreactor)

  • 박재로;임현만;김응호
    • 한국물환경학회지
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    • 제18권2호
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    • pp.131-140
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    • 2002
  • Laboratory-scale membrane bioreactor added alum into the anaerobic basin as a flocculant and adsorbent was carried out to find removal efficient of nitrogen and phosphorus components in the mixed liquid and weather or not maintaining the stability for the permeate flux and pressure at various internal recycle conditions. It was found that denitrification efficient of maximum 65% was obtained when the ratio of internal recycle was 3Q. Additionally when the ratio of internal recycle was fixed at 3Q, $BOD_5$ and T-P concentration of permeate was much more reduced compared to not added alum in anaerobic basin but T-N concentration of permeate was relatively increased. In case of added alum as the flocculant and adsorbent in anaerobic basin, the permeate flux was maintained above $10{\ell}/m^2/hr$ but the permeate pressure was relatively higher than alum was not added in anaerobic basin.

Reduction of energy demand for UF cross-flow membranes in MBR by sponge ball cleaning

  • Issa, Mohammad;Geissen, Sven-Uwe;Vogelpohl, Alfons
    • Membrane and Water Treatment
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    • 제12권2호
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    • pp.65-73
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    • 2021
  • Sponge ball cleaning can generate an abrasion effect, which leads to an attractive increasing in both permeate flux and membrane rejection. The aim of this study was to investigate the influence of the daily sponge ball cleaning (SBC) on the performance of different UF cross-flow membrane modules integrated with a bioreactor. Two 1"-membrane modules and one 1/2"-membrane module were tested. The parameters measured and controlled are temperature, pH, viscosity, particle size, dissolved organic carbon (DOC), total suspended solids (TSS), and permeate flux. The permeate flux could be improved by 60%, for some modules, after 11 days of daily sponge ball cleaning at a transmembrane pressure of 350 kPa and a flow velocity of 4 m/s. Rejection values of all tested modules were improved by 10%. The highest permeate flux of 195 L/㎡.h was achieved using a 1"-membrane module with the aid of its negatively charged membrane material and the daily sponge ball cleaning. In addition, the enhancement in the permeate flux caused by daily sponge ball cleaning improved the energy specific demand for all tested modules. The negatively charged membrane showed the lowest energy specific demand of 1.31 kWh/㎥ in combination with the highest flux, which is a very competitive result.