• 제목/요약/키워드: Membrane Separation

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온실기체 분리회수를 위한 막분리기술 연구 동향 (Research Trend of Membrane Technology for Separation of Carbon Dioxide from Flue Gas)

  • 김정훈;임지원;이수복
    • 멤브레인
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    • 제12권3호
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    • pp.121-142
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    • 2002
  • 본 총설에서는 지구온실기체인 배가스내의 이산화탄소의 분리기술중 가장 잠재성이 큰 막분리기술에 관해 기술하였다. 고분자막에 대한 기체투과(용해확산)이론과 이산화탄소/질소의 물리적인 특성을 배경으로, 많은 문헌에서 발표된 고분자소재의 투과데이터를 분석하고 이를 통해 고분자막의 물리화학적인 구조와 이산화탄소/질소의 투과선택성의 상관관계를 설명하였다. 상업적으로 기체분리에 가장 널리 사용되는 중공사막모듈의 및 분리막공정의 동향에 대해 소개하였다. 마지막으로 국내외에서 발표된 이산화탄소/질소 분리막에 대한 현재까지의 연구동향과 앞으로의 전망에 대해 기술하였다.

MOF 분리막의 연구 동향: 합성 방법 및 기체 분리 응용 (Research Trends of Metal-Organic Framework Membranes: Fabrication Methods and Gas Separation Applications)

  • 이정희;김진수
    • 멤브레인
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    • 제25권6호
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    • pp.465-477
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    • 2015
  • 최근 에너지 효율이 높은 분리 공정기술의 수요가 증가하면서 분리막을 이용한 기체 분리가 큰 관심을 모으고 있다. 현재 분리막에 의한 기체 분리 시장은 고분자막이 독점하고 있으며, 고분자 재료 물성의 한계로 탄화수소와 같은 응축 기체분리 보다는 비응축 기체 분리에 제한되고 있다. MOF 재료는 금속 이온과 유기 리간드가 결합하여 형성하는 결정성 나노 기공 구조로, 높은 비표면적과 기공 구조 제어, 기능성 부여가 가능해 분리막 재료로 큰 관심을 끌고 있다. 본 총설에서는 다양한 MOF 분리막의 합성 방법과 MOF 분리막을 통한 기체 분리 응용에 대해 살펴보고자 한다.

Carbon Molecular Sieve Membranes Dispersed with Nano Particles

  • H.Suda;Ha, K.raya
    • 한국막학회:학술대회논문집
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    • 한국막학회 2004년도 Proceedings of the second conference of aseanian membrane society
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    • pp.183-186
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    • 2004
  • Nano particles-containing CMS membranes were prepared by pyrolysis of polyimides dispersed uniformly with precursors and their gas separation performances were examined, to elucidate the permeation mechanism and to further improve the gas separation performance. Consequently, it was suggested that the separation performance could be controlled by doping nano-particles in the CMS membranes, and that optimization of various factors, such as the size, content, and dispersion state of the nano particles would contribute for further improvement of the gas separation performance.

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컴팩트 타입 실리카막 공정을 이용한 수소 분리 (Hydrogen Separation by Compact-type Silica Membrane Process)

  • 문종호;배지한;이상진;정종태;이창하
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2006년도 추계학술대회
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    • pp.336-339
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    • 2006
  • With the steady depletion off fossil fuel reserves, hydrogen based energy sources become increasingly attractive. Therefore hydrogen production or separation technologies, such as Bas separation membrane based on adsorption technology, have received enormous attention in the industrial and academic fields. In this study, the transport mechanisms of the MTES (methyltriethoxysilane) templating silica/a-alumina composite membrane were evaluated by using unary, binary and quaternary hydrogen gas mixtures permeation experiments at unsteady- and steady-states. Since the permeation flux in the MTES membrane, through the experimental and theoretical study, was affected by molecular sieving effects as well as surface diffusion properties, the kinetic and equilibrium separation should be considered simultaneously in the membrane according to molecular properties. In order to depict the transient multi-component permeation on the templating silica membrane, the GMS (generalized Maxwell-Stefan) and DGM (dust Bas model) were adapted to unsteady-state material balance

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Enhanced Thermal Stability of a Silica/Stainless Steel Composite Membrane via the Soaking-Rolling Method

  • Lee, Dong-Wook;Nam, Seung-Eun;Bongkuk Sea;Ihm, Son-Ki;Lee, Kew-Ho
    • 한국막학회:학술대회논문집
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    • 한국막학회 2004년도 Proceedings of the second conference of aseanian membrane society
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    • pp.175-178
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    • 2004
  • Concerning the application of the inorganic composite membranes to high temperature process such as the catalytic dehydrogenation of hydrocarbons, important aspects to consider in the application include the improvement of the thermal stability and good permeability.(omitted)

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Pervaporation Separation of Binary Organic-Aqueous Liquid Mixtures

  • Rhim, Ji-Won;Huang, Robert Y.M.
    • 한국막학회:학술대회논문집
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    • 한국막학회 1991년도 추계 총회 및 학술발표회
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    • pp.1-3
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    • 1991
  • A novel membrane separation process for the separation of liquid mixture is Pervaporation. The term, 'pervaporation', is a combination of permeation and evaporation, and was first introduced by kober[1] in 1917. In this technique, the liquid mixture in feed is in contact with one side of a dense non-porous membrane and after diffusing through the membrane is removed from the downstream side in the vapor phase, but is usually condensed afterwards to obtain a permeate in liquid from.

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Enantiospecific separation in biphasic Membrane Reactors

  • Giorno, Lidietta
    • 한국막학회:학술대회논문집
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    • 한국막학회 1998년도 추계 총회 및 학술발표회
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    • pp.15-18
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    • 1998
  • Membrane reactors are systems which combine a chemical reactor with a membrane separation process allowing to carry out simultaneously conversion and product separation. The catalyst can be immobilized on the membrane or simply compartmentalized in a reaction space by the membrane. Membrane reactors are today investigated to produce optically pure isomers and/or resolve racemic mixture of enantiomers. The interest towards these systems is due to the increasing demand of enantiomerically pure compounds to be used in the pharmaceutical, food, and agrochemical industries. In fact, enantiomers can have different biological activities, which often influence the efficacy or toxicity of the compound. On the basis of current literature there are basically two schemes on the use of membrane technology to produce enantiomers. In one case, the membrane itseft is intrinsically enantioselective: the membrane is the chiral system which selectively separates the wanted isomer on the basis of its conformation. In the other, a kinetic resolution using an enantiospecific biocatalyst is combined with a membrane separation process; the membrane separates the product from the substrate on the basis of their relative chemical properties (i.e. solubility). This kind of configuration is widely used to carry out kinetic resolutions of low water soluble substrams in biphasic membrane reactors [Giomo, 1995, 1997; Lopez, 1997]. These are systems where enzyme-loaded membranes promote reactions between two separate phases thanks to the properties of enzymes, such as lipases, to catalyse reactions at the org ic/aqueous interface; the two phases are maintained in contact and separated at the membrane level by operating at appropriate transmembrane pressure. A schematic representation of biphasic membrane reactor is shown in figure 1, while an example of enantiospecific reaction and product separation carried out with these systems is reported in figure 2.

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Surfactant enhanced filtration performances of monochlorophenol isomers through low-pressure membrane

  • Kumar, Yogesh;Brahmbhatt, H.;Trivedi, G.S.;Bhattacharya, A.
    • Membrane and Water Treatment
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    • 제2권3호
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    • pp.137-145
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    • 2011
  • Membrane processes are major breakthrough for the removal of organic pollutants in water remediation. The separations of solutes depend on nature of the membranes and solutes. The separation performance depends on the nature of the solutes (i.e., molecular volume, polarity, and hydrophobicity) for the same membrane. As 4-chlorophenol is of more dipolemoment compared to 2-chlorophenol, the orientation of the molecule enables it pass through the pores of the membrane, which is of negatively charged and thus separation order follows: 2-chlorophenol > 4-chlorophenol. Hydrophobicity factor also supports the order. Addition of sodium dodecyl sulfate (SDS) to chlorophenol solution shows remarkable increase in separation performance of the membrane. The improvement in separation is 1.8 and 1.5 times for 4- and 2- chlorophenol consecutively in case of 0.0082 M SDS (1cmc = 0.0082 M) in the solution. 4-chlorophenol has better attachment tendency with SDS because of its relatively more hydrophobic nature and thus reflects in performance i.e. the separation performance of 4-chlorophenol with SDS through the membrane is better compared to 2-chlorophenol.

Polycarbonate/Metal Salt 막의 산소분리특성에 미치는 비용매와 금속염 농도의 영향 (Effect of Nonsolvent and Metal Salt Concentration on Oxygen Separation Performances of Polycarbonate/Metal Salt Membrane)

  • 서상훈;이우태
    • 한국산업융합학회 논문집
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    • 제4권1호
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    • pp.61-69
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    • 2001
  • Polycarbonate(PC) membranes for oxygen enrichment from air were prepared by the wet phase inversion method. In order to improve oxygen separation performances of the PC membrane, the effect of the added ethanol(nonsolvent) and $CuCl_2$(metal salt) concentration in the casting solution on morphology, oxygen permeability ami $O_2/N_2$ separation factor of the membrane was studied. In addition, tensile strength and elongation at break of the membrane were investigated. An asymmetric membrane with a dense top layer and a porous sublayer was obtained. The thickness of the dense top layer decreased with increasing amount of nonsolvent additive. Compared with pure PC membrane without additive(metal salt), the oxygen permeability and $O_2/N_2$ separation factor of the $PC/CuCl_2$ membrane are significantly improved. The oxygen permeability and $O_2/N_2$ separation factor is $5.25{\times}10^{-9}cm^3(STP){\cdot}cm/cm^2{\cdot}sec{\cdot}cmHg$ and 4.5, respectively. This improvement might be due to good interaction between metal salt and oxygen.

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