• Title/Summary/Keyword: Facilitated transport membrane

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Isoprene/n-pentane separation using facilitated transport membranes with SPEEK-AgNO3 (SPEEK-AgNO3로 이루어진 촉진 수송 분리 막을 사용한 isoprene/n-pentane 혼합물 분리)

  • Choi, Hyun Woo;Kim, Dong Bum;Kim, Hoon Sik;Lee, Chang Ha;Choi, Dae Ki
    • Clean Technology
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    • v.10 no.3
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    • pp.169-176
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    • 2004
  • Sulfonated ionomer membranes, sulfonated poly(ether ether)ketone (SPEEK)-$AgNO_3$, were prepared and tested for separation of the isoprene/n-pentane mixtures. The facilitated transport membranes showed good selectivity and permeance of isoprene over n-pentane and long-term stability. Depending on various reaction conditions, the degree of sulfonation (DS) of SPEEK was measured by 1H NMR spectroscopy and the performance of the membranes was affected by the DS of SPEEK as a whole. As the DS of SPEEK was increased, the selectivity of isoprene over n-pentane increased and eventually reached a maximum selectivity of 850 ~ 900 and the stability of that was continued more than 100 h.

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Facilitated Oxygen Transport through a Polyethersulfone Membrane Containing Cobalt Tetraphenylporphyrin-Benzylimidazole (Cobalt Tetraphenylporphyrin-benzylimidazole을 포함한 산소 촉진수송막)

  • Lee, Seung Hwan;Park, Se Hyung;Park, Jung Hoon
    • Membrane Journal
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    • v.28 no.6
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    • pp.424-431
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    • 2018
  • The gas separation performance of a mixed membrane structure based on a mixture of polyethersulfone (PES) and cobalt tetraphenylporphyrin-benzylimidazole (CoTpp-BIm) as an oxygen carrier was investigated. The CoTpp-BIm mixed PES membrane had an asymmetric structure with a mixture of finger structure and sponge-like structure, and the upper surface was dense. The gas separation performance test was carried out using $94%\;N_2$ gas and $6%\;O_2$ mixed gas. Oxygen and nitrogen permeability coefficients were measured at ${\Delta}P$ ranging from 15 to 228 cmHg and the permeate side of the PES membrane was maintained at vacuum level. The oxygen permeability coefficient of CoTpp-BIm mixed PES membranes increased as supplied pressure was decreased. When the supply pressure was 15 cmHg, the gas permeability ($P_{O_2}$) was 6676 Barrer, the $O_2/N_2$ selectivity (${\alpha}$) was 6.1, and the promoting factor (F) was 2.39. Based on these results, it was confirmed that the addition of CoTpp-BIm to the PES film improved the oxygen separation characteristics.

[ $Ag^+$ ]-Chitosan Complex Membranes for Propylene/Propane Separation

  • Kim, Jeong-Hoon;Lee, Soo-Bok;Feng, Xianshe
    • Korean Membrane Journal
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    • v.8 no.1
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    • pp.36-42
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    • 2006
  • We have prepared new water-swollen chitosan-$Ag^+$ complex membranes and studied their permeation and separation behavior for propylene and propane gases. The $Ag^+$ containing chitosan complex membranes were prepared from chitosan and $AgNO_3$ aqueous solution. The $AgNO_3$ and water content in the membrane were controlled by adjusting $AgNO_3$ concentration of casting solution. The permeation properties of propylene and propane were investigated as a function of $AgNO_3$ concentration, and various operation conditions. High permeability of above 17 barrer and high selectivity of above 170 could be obtained with the membranes prepared from 3 M $AgNO_3$ aqueous solution. Periodic regeneration test confirmed these membranes could be very useful for the separation of propylene/propane and other olefin/paraffin separation.

Recovery of Toluene in gas by Polydimethylsiloxane/silica hybrid membrane permeation

  • Xu, De-Lin;Chung, Wook-jin;Jung, Bum-Suk;Gun, Eun-Mi;Ariz Lorenzana
    • Proceedings of the Membrane Society of Korea Conference
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    • 2004.05b
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    • pp.176-179
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    • 2004
  • Volatile organic compounds (VOCs) are emitted as gases from certain solids or liquids. VOCs include a variety of chemicals, some of which may have short- and long-term adverse health effects. Current technologies for the treatment of VOC contaminated off-gasses are expensive to operate and more cost effective technologies are needed.(omitted)

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Novel Composite Membranes Comprising Silver Salts Physically Dispersed in Poly(ethylene-co-propylene) for the Separation of Propylene/Propane

  • Kim, Jong-Hak;Min, Byoung-Ryul;Kim, Yong-Woo;Kang, Sang-Wook;Won, Jong-Ok;Kang, Yong-Soo
    • Macromolecular Research
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    • v.15 no.4
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    • pp.343-347
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    • 2007
  • Novel composite membranes, which delivered high separation performance for propylene/propane mixtures, were developed by coating inert poly(ethylene-co-propylene) rubber (EPR) onto a porous polyester substrate, followed by the physical distribution of $AgBF_4$. Scanning electron microscopy-wavelength dispersive spectrometer (SEM-WDS) revealed that silver salts were uniformly distributed in the EPR layer. The physical dispersion of the silver salts in the inert polymer matrix, without specific interaction, was characterized by FT-IR and FT-Raman spectroscopy. The high separation performance was presumed to stem from the in-situ dissolution of crystalline silver ionic aggregates into free silver ions, which acted as an active propylene carrier within a propylene environment, leading to facilitated propylene transport through the membranes. The membranes were functional at all silver loading levels, exhibiting an unusually low threshold carrier concentration (less than 0.06 of silver weight fraction). The separation properties of these membranes, i.e. the mixed gas selectivity of propylene/propane ${\sim}55$ and mixed gas permeance ${\sim}7$ GPU, were stable for several days.

Selective Coordination of Silver Ions to Poly(styrene-b-(ethylene-co-butylene)-b-styrene) and its Influence on Morphology and Facilitated Olefin Transport

  • Lee, Dong-Hoon;Kang, Yong-Soo;Kim, Jong-Hak;Kang, Sang-Wook
    • Macromolecular Research
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    • v.16 no.8
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    • pp.676-681
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    • 2008
  • The $\pi$-complex membranes of poly(styrene-b-(ethylene-co-butylene)-b-styrene) (SEBS) of two silver salts of $AgBF_4$ and $AgCF_3SO_3$ were prepared and tested for the separation of the propylene/propane mixtures. The Fourier-transform infrared (FT-IR) spectra of these complexes showed that the silver salts were dissolved in SEBS up to a silver mole fraction of 0.14, due to $\pi$-complexation between the aromatic C=C bonds of styrene blocks and silver ions. Above this solubility limit, ion pairs and high-order ionic aggregates began to form, so that silver salts were distributed unselectively in both the EB and PS blocks. The domain size of the PS blocks was enlarged up to this critical concentration with increasing silver concentration without structural transitions, as confirmed by small angle x-ray scattering (SAXS). These structural properties of the SEBS/silver salt complexes may explain the lower separation properties for propylene/propane mixtures compared to poly(styrene-b-butadiene-b-styrene)(SBS)/silver salt complex membranes.

Gas Transport Behaviors through Multi-stacked Graphene Oxide Nanosheets (적층된 산화그래핀 분리막의 기체 투과 거동 평가)

  • Lee, Min Yong;Park, Ho Bum
    • Membrane Journal
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    • v.27 no.2
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    • pp.167-181
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    • 2017
  • Graphene-based materials have been considered as a promising membrane material, due to its easy processability and atomic thickness. In this study, we studied on gas permeation behavior in few-layered GO membranes prepared by spin-coating method. The GO membrane structures were varied by using different GO flake sizes and GO solutions at various pH levels. The GO membranes prepared small flake size show more permeable and selective gas separation properties than large one due to shortening tortuosity. Also gas transport behaviors of the GO membranes are sensitive to slit width for gas diffusion because the pore size of GO membranes ranged from molecular sieving to Knudsen diffusion area. In particular, due to the narrow pore size of GO membranes and highly $CO_2$-philic properties of GO nanosheets, few-layered GO membranes exhibit ultrafast and $CO_2$ selective character in comparison with other gas molecules, which lead to outstanding $CO_2$ capture properties such as $CO_2/H_2$, $CO_2/CH_4$, and $CO_2/N_2$. This unusual gas transport through multi-layered GO nanosheets can explain a unique transport mechanism followed by an adsorption-facilitated diffusion behavior (i.e., surface diffusion mechanism). These findings provide the great insights for designing $CO_2$-selective membrane materials and the practical guidelines for gas transports through slit-like pores and lamellar structures.

Iron(II) Porphyrin 화합물을 이용한 산소의 촉진수송

  • 신우철;김현준;유병수;홍석인
    • Proceedings of the Membrane Society of Korea Conference
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    • 1993.10a
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    • pp.21-21
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    • 1993
  • 고분자 막을 이용한 기체 분리 기술은 에너지 소비의 절감과 높은 분리 효율성 등으로 인해 (1) 수소 회수 및 $H_2/O_2$의 비율저종 (2) $CH_4/CO_2$ 분리 (3) $O_2/N_2$ 분리등에 이용되고 있다. 이러한 분리막의 투과도와 선택투과도를 모두 높이기 위한 연구가 활발히 진행되고 있는데, 그 연구방향은 (1) 새로운 고분자의 합성 및 고분자의 개질 (2) 복합재료의 개발 (3)액정 (4)촉진수송법 등으로 나눠질 수 있다. 이 중 촉진수송(Facilitated Transport)이란 특정한 기체와 가역적 친화력 또는 흡착력을 갖는 운반체(Carrier)를 액체나 고체막에 분산시켜 원하는 특정 기체만을 선택적으로 수송하는 것을 말한다.

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산소흡탈착능을 가지는 산소부화막의 개발

  • ;;荒木 孝二
    • Proceedings of the Membrane Society of Korea Conference
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    • 1997.10a
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    • pp.21-24
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    • 1997
  • 1.서론 : 산소선택성이 좋은 투과막은 산소부화에 의한 연소효율의 향상, 간이 산소발생장치에의 응용 등 여러가지의 용도가 예상된다. 이를 위한 준비단계로 막소재 및 막형상에 대한 검토가 \ulcorner발하게 진행되고 있다. 그 중에서 높은 산소선택성을 발현하는 방법이 주목되어지고 있는데 이는 가역적 산소흡탈착능을 갖는 carrier분자를 이용한 촉지운송계(facilitated transport system)를 구축하는 방법이 있다. 본 연구에서는 [Co(salen)]과 같은 $N_2O_2$형 평면정방착제(Square planar complex)이며, salen의 shift염기부분을 bipyridine cycle, phenoxide부분을 해리한 amide로 골격변환한 구조를 갖고 있는 6,6'-bis(benzoylamino)-2,2'-bipyridine(babpH$_2$)의 covalt착체([Co(babp)]를 배위결합에 의해 고분자막중에 고정하고, 산소흡탈착능, 산소투과성, 안정성 등을 검토하는 것을 바탕으로 우수한 선택성 산소투과막을 개발하는 것을 목적으로 한다.

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Rotaxane/Nafion Composite Membranes for Direct Methanol Fuel Cells (직접 메탄올 연료전지용 Rotaxane/Nafion 전해질막)

  • Cho Hyun Dong;Won Jongok;Kang Yong Soo;Ha Heung Yong
    • Proceedings of the Membrane Society of Korea Conference
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    • 2004.11a
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    • pp.146-148
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    • 2004
  • Rotaxane/Nafion composite membranes were prepared and characterized. Proton conductivity was .01 S/cm and the methanol ($10\;wt\%$) premeability was $7.88{\times}10^{-7}\;cm^2/sec$ at 5 $wt\%$ of rotaxane/Nafion composite membranes. The characterization of the status of retaxane inside of Nafion membranes is under study.

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