• Title/Summary/Keyword: 액체 투과 압력

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Measurement of Liquid Entry Pressure of PE and PVDF Hollow Fiber Membranes in Membrane Distillation Process (막증류 공정에서 PE 및 PVDF 중공사막의 액체투과압력 측정에 관한 연구)

  • Min, Ji Hee;Park, Min Soo;Kim, Jinho
    • Membrane Journal
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    • v.25 no.3
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    • pp.216-222
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    • 2015
  • The method measuring LEP (liquid entry pressure) was optimized to evaluate the wettabilities of hydrophobic membranes which might affect long-term durability of membrane in MD (membrane distillation) process. Conductivity of the permeate was monitored to measure the LEPs of PE (polyethylene) and PVDF (polyvinylidene di-fluoride) hollow fiber membranes from highly concentrated synthetic feed water of 20 wt% NaCl. Holding time over 5 min and the ratio of membrane area to the tank volume more than $10m^2/m^3$ were required to ensure LEP value.

Separation Characteristics in Stirred Deadend Microfiltration System (교반형 Deadend 정밀여과 시스템의 투과특성)

  • 장규만;장건용
    • Proceedings of the Membrane Society of Korea Conference
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    • 1999.04a
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    • pp.101-104
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    • 1999
  • PEFE, Asypore, PC, Nylon 등의 정밀여과막에 0.1내지 4$\mu\textrm{m}$의 입자분포를 가진 kaolin 용액을 dead-end 형 여과장치(Amicon Cell, 8050)를 이용하여 투과실험을 하였다. 또한 공칭세공이 0.2$\mu\textrm{m}$ 인 PTFE(Sartorius 사) 막에 kaolin, bentonite, yeast, starch 등 입자의 크기 및 특성이 다른 0.1%의 용액들을 1 bar 의 운전압력과 200rpm의 회전속도로 투과실험을 하였다. 투과 실험한 자료를 근거로 저항모델을 적용하여 분석하였으며 순수 하락도와 액체전이법으로 세공분포를 확인하였다.

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The Estimating an Effect of Rapid Flux Increase to a Membrane in the Intermittent Aeration MBR Process Using Alum Treatment (응집제를 활용한 간헐포기 MBR공정에서 순간플럭스 증가가 분리막에 미치는 영향 평가)

  • Choi Song-Hyu;Cho Nam-un;Han Myong Su
    • Membrane Journal
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    • v.15 no.1
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    • pp.70-83
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    • 2005
  • By supplying air intermittently in various mode, the effects of oxic/anoxic time ratio and air scrubbing in aeration condition on the membrane flux and permeability were investigated. When suction pump stops, vacuum pressure remains inside the suction pump. Therefore, the effect of remaining vacuum pressure in the suction pump on fouling of membrane was investigated. The effect of EPS (Extra cellular Polymeric Substance) which is generated due to the long SRT and high concentration of MLSS and the dose of coagulant on the membrane were also investigated. The suitable oxic/anoxic time ratio for the best removal efficiency of organic matter and nitrogenous matter was 40 minutes (Oxic) : 20 minutes (Anoxic). At this time ratio, alum was dosed into the aeration tank. The result of dosing alum was that the concentration of alum solution might affect nitrification and denitrification. To remove 1 mg/L of phosphorus in MBR process, it needs 0.75 mg/L of alum solution.

Model prediction of crosslinked chitosan composite membrane for pervaporation of water-ethanol mixtures

  • 박호범;남상용;이영무
    • Proceedings of the Membrane Society of Korea Conference
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    • 1996.04a
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    • pp.65-66
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    • 1996
  • 투과증발법은 상부에 액체공급액이 반투과막과 접촉하고 있고 하부에 진공에 가까운 낮은 압력을 걸어줌으로써 투과물이 수증기로 제거되는 막공정의 하나이다. 막을 통한 분리는 혼합물의 각 성분이 막내에서 다른 용해도와 확산도를 가지고 있기 때문에 발생한다. 이 공정의 지배적인 전달 메카니즘은 용해-확산 모델을 기초로 하고 있기 때문에 전형적으로 투과증발막은 대개 미세다공성 지지체에 얇은 선택성을 가진 재료를 입힌 복합막을 사용한다. 본 연구의 목적은 선택성을 가진 상부층막이 키토산인 복합막에서 지지체 구조의 영향을 살펴보고 키토산 복합막에 대한 물-에탄올 분리에 대해 최적의 모델을 찾는 것이다. 투과증발막소재로서의 키토산은 친수성기를 가지고 있으므로 물과 알코올의 분리에서 물만을 선택적으로 흡수하여 투과시키는 우수한 성능을 지니고 있으나 더욱 효과적인 막성능을 발휘하기 위해서는 지지체의 역할 및 막성능에 영향을 끼치는 여러 가지 인자들을 고려해서 막을 설계하는 것이 필요하다. 여기서는 상부층의 막두께, 지지체의 특성, 피드 농도 등을 변화시켜 가장 적당한 모델을 예측하였다.

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Clean Separation of Difluoromonochloromethane(R22)/Hexafluoropropylene(HFP) by Using Liquid-Supported Membrane(BMIBF4/PVDF) (고정화 액막(BMIBF4/PVDF)에 의한 디플루오로-클오로메탄과 헥사플루오로프로필렌의 청정분리)

  • Choi, Pyoung-Ho;Kim, Chul-Ung;Kim, Beom-Sik;Lee, Jung-Min;Koo, Kee-Kahb
    • Clean Technology
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    • v.9 no.4
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    • pp.169-177
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    • 2003
  • In order to develope a clean technology by liquid-supported membrane of ionic liquid/PVDF, the solubility of R22 and HFP gases using BMIBF4 as ionic liquid were measured at temperatures from 0 to $30^{\circ}C$, at total pressures up to 4 bars. The solubility of R22 in this ionic liquid was shown a rapid increasing tendency with increases of pressure and decreases of temperature, respectively, whereas the solubility of HFP was showed only a little in the same conditions. Based on these results, liquid-supported membranes of ionic liquid/PVDF were prepared by variables of the deposition amount of ionic liquid in polymer matrix, PVDF and were applied to the separation of fluoro-gases(R22, HFP) including $N_2$ gas. The permeability of R22 was rapidly increased by depending on the deposition amounts of ionic liquid, whereas both of HFP and $N_2$ were just showed so little. Especially, the diffusivity coefficient and solubility parameter of R22 were increased by lower operating temperatures and increased deposition amount of ionic liquid in 1iquid membrane. In conclusion, the selectivity of R22 against HFP was changed to 10-45 times depending on both of operating temperatures and the deposition amount of ionic liquid in BMIBF4/PVDF liquid membrane.

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Separation and Collection of Carbon Dioxide using Circulatory Hollow Fiber Membrane Contactor (순환식 중공사막 접촉기를 이용한 이산화탄소의 분리 및 기술)

  • 이용희;이용택;박유인;이규호
    • Proceedings of the Membrane Society of Korea Conference
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    • 1998.10a
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    • pp.50-52
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    • 1998
  • 1. 서론 : 오래전부터 기체를 액상에 분산시킴으로써 물질 전달 속도를 증가시킴과 동시에 기-액간의 접촉면적을 넓히려는 연구 즉, 기-액간의 접촉 경계면을 통하여 이루어지는 기체흡수에 관한 연구가 다각적으로 이루어져 왔다. 그러나, 기존의 흡수장치에서는 기-액간의 접촉면적을 정확히 계산할 수 없고, 기체에 의한 액체의 범람이나 편류현상등이 발생하여 액체나 기체의 유속에 제한을 주는 등 기술적인 문제점을 가지고 있다. 따라서 이러한 기존 흡수공정들의 문제점을 극복하기 위하여 최근에 제안된 것이 막을 이용하여 기체와 흡수제인 액체의 접촉을 인위적으로 제어할 수 있는 중공사막 접촉기이다. 본 연구에서는 수용성 흡수제가 흡수모듈과 탈착모듈을 순환하는 순환식 중공사막 접촉기를 이용하여 혼합기체(N$_2$/CO$_2$ = 80/20)로부터 이산화탄소를 선택적으로 분리.회수하고자 하였으며, 또한 흡수제의 농도, 유속변화, 그리고 진공식 탈착모듈에서 압력변화에 따른 기체투과 특성을 고찰함으로써 운전조건의 최적화와 그 응용 가능성을 제시하고자 하였다.

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Permeation Characteristics of the Tubular Membrane Module Equipped wtih the Air Injection Nozzle Tube (공기주입 노즐관이 장착된 관형막의 투과특성)

  • Park, Mi Ja;Chung, Kun Yong
    • Membrane Journal
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    • v.27 no.1
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    • pp.43-52
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    • 2017
  • The air injection nozzle tube was inserted inside of the tubular membrane module to reduce membrane fouling and improve the permeate flux. The average pore size of membrane was $0.1\;{\mu}m$ and the yeast was used as a foulant. All of permeate experiments were started without air injection for the module equipped with the nozzle tube, then carried out continuously with air injection. Finally, the nozzle tube was removed from the module and the permeate was measured without air injection. The measured permeate fluxes were compared to examine the effect of air injection. The fluxes for air injection were consistently maintained or increased. The fluxes of no-air injection with the nozzle tube were greater than those of the empty tubular module. As operating pressure decreased to 0.4 bar, the flux enhancement of air injection based on no-nozzle case increased to 21%. Flux enhancements of air injection were above 30% as the gas/liquid two-phase flow was changed from the stratified-smooth to the intermittent pattern due to increase of gas flowrate.

Experimental Study of Pressure Drop in Compressible Fluid through Porous Media (다공성재를 통과하는 압축성 유체의 압력강하에 관한 실험적 연구)

  • Seo, Min Kyo;Kim, Do Hun;Seo, Chan Woo;Lee, Seoung Youn;Jang, Seok Pil;Koo, Jaye
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.37 no.8
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    • pp.759-765
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    • 2013
  • This study proposes the characteristics of the pressure drop in a compressible fluid through porous media for application to a porous injector in a liquid rocket engine in order to improve the uniformity of the drop size distribution and the mixing performance of shear coaxial injectors. The fluid through the porous media is a Non-Darcy flow that shows a Nonlinear relation between the pressure drop and the velocity at high speed and high mass flow rate. The pressure drop of the Non-Darcy flow can be derived using the Forchheimer equation that includes the losses of viscous and inertia resistance. The permeability and Ergun coefficient represented as a function of the pressure drop and pore size can be applied to the porous injector, where the fluid through the porous media is compressible. A generalized correlation between the pressure drop in relation to the pore size was derived.

Supported Ionic Liquid Membrane Preparation for Carbon Dioxide Separation (이산화탄소 분리를 위한 이온성액체 지지분리막의 제조)

  • Choi, Mi Young;Chung, Kun Yong
    • Membrane Journal
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    • v.22 no.4
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    • pp.280-283
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    • 2012
  • The study is aiming to prepare supported ionic liquid membranes for carbon dioxide separation efficiently. The ionic liquid, [bmim][${PF_6}^-$] (1-butyl-3-methyl-imidazolium hexafluorophosphate) was fixed in the pores of PVDF micro-filtration membrane with a nominal pore size 0.1 ${\mu}m$. The permeabilities of $N_2$, $H_2$ and $CO_2$ gases through the prepared ionic liquid membrane were 0.075, 0.203 and 1.380 GPU, respectively. The selectivities of $CO_2/N_2$, $H_2/N_2$ were 14.2 and 2.69, respectively. Also, the supported ionic liquid membrane could be operated stably up to 2.0 bar with the immobilization of ionic liquid in the pores.

The Study of Wetting in Direct Contact Membrane Distillation (직접접촉식 막증발법에서의 막 젖음 현상에 관한 연구)

  • Shin, Yonghyun;Koo, Jaewuk;Han, Jihee;Lee, Sangho
    • The KSFM Journal of Fluid Machinery
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    • v.17 no.2
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    • pp.30-34
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    • 2014
  • Membrane distillation (MD) is a thermal driven separation process in which separation a hydrophobic membrane is a barrier for the liquid phase, letting the vapor phase pass through the membrane pores. Therefore, a porous and hydrophobic membrane should be used in membrane distillation. MD cannot work if water penetrates into the pores of the membrane (membrane wetting). Accordingly, it is necessary to prevent wetting of MD membranes and to remove water inside the pores of the wetted membranes if possible. In this context, our study aimed to develop methods to recover wetted membranes in MD processes. Poly-vinylidene fluoride (PVDF) membranes were used in this study. A laboratory-scale direct contact MD (DCMD) system was used to examine the effect of operating parameters on wetting. For dewetting the wetted membranes, specific techniques including the use of high temperature air were applied. The performances of the membranes before and after dewetting were compared in terms of flux, salt rejection and liquid entry pressure(LEP). The surface morphology of dewetted membrane was confirmed by scanning electron microscope (SEM).