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      KCI등재 SCOPUS

      CO2/N2 분리를 위한 Pebax 혼합막에서 Zeolitic Imidazolate Framework-7의 영향 = Effect of Zeolitic Imidazolate Framework-7 in Pebax Mixed Matrix Membrane for CO2/N2 Separation

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      https://www.riss.kr/link?id=A108130776

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      국문 초록 (Abstract)

      본 연구는 대표적 poly(ether-b-amide)인 Pebax-1657과 Pebax-2533에 합성된 zeolitic imidazolate framework-7 (ZIF-7)을 넣어 혼합막을 제조하고, 단일기체 N2, CO2에 대한 투과 성질을 조사하였다. 기체투과 결과에...

      본 연구는 대표적 poly(ether-b-amide)인 Pebax-1657과 Pebax-2533에 합성된 zeolitic imidazolate framework-7 (ZIF-7)을 넣어 혼합막을 제조하고, 단일기체 N2, CO2에 대한 투과 성질을 조사하였다. 기체투과 결과에서, N2의 경우 Pebax-1657/ZIF-7혼합막과 Pebax-2533/ZIF-7 혼합막 모두 ZIF-7 혼입에 따라 투과도가 감소하는 비슷한 현상을 보였지만, CO2 투과도의경우는 고분자에 종류에 따라 조금 다른 경향을 보였다. Pebax-1657/ZIF-7 혼합막의 경우는 ZIF-7의 0~3 wt% 함량 범위에서 CO2 투과도가 감소하다가 그 이후 함량에서 투과도가 증가하였고, Pebax-2533/ZIF-7 혼합막의 경우는 ZIF-7의0~5 wt% 함량 범위에서 CO2 투과도 증가 없이 감소하였다. CO2/N2 선택도의 경우 두 혼합막 모두 ZIF-7의 함량이많아짐에 따라 증가하는 경향을 보였으며, 특히 Pebax-2533/ZIF-7 5 wt%은 다른 혼합막들에 비해 가장 좋은 투과 성능을 보였다. 이는 ZIF-7이 Pebax-1657보다 Pebax-2533에 더 좋은 호환성을 보이며 CO2에 대한 선택적인 특성이 잘 나타났기 때문으로 생각된다.

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      참고문헌 (Reference)

      1 황선웅, "제올라이트 입자를 첨가한 폴리에틸렌 필름의 기 체 투과성" 한국고분자학회 28 (28): 374-381, 2004

      2 A. Ebrahimi, "Zeolitic imidazolate framework-7:Novel ammonia atmosphere-assisted synthesis, thermal and chemical durability, phase reversibility and potential as highly efficient nanophotocatalyst" 511 : 33-45, 2018

      3 N. Azizi, "Using Pebax-1074/ZIF-7 mixed matrix membranes for separation of CO2 from CH4" 36 : 993-1000, 2018

      4 B. A. Al-Maythalony, "Tuning the interplay between selectivity and permeability of ZIF-7 mixed matrix membranes" 9 : 33401-33407, 2017

      5 R. Selyanchyn, "Thickness effect on CO2/N2 separation in double layer Pebax-1657®/PDMS membranes" 8 : 121-, 2018

      6 W. Cai, "Thermal structural transitions and carbon dioxide adsorption properties of zeolitic imidazolate framework-7 (ZIF-7)" 136 : 7961-7971, 2014

      7 L. M. Robeson, "The upper bound revisited" 320 : 390-400, 2008

      8 J. E. Shin, "The state of the art of membrane technologies for carbon dioxide separation" 21 : 2-16, 2018

      9 C. Kang, "Synthesis of ZIF-7/chitosan mixed-matrix membranes with improved separation performance of water/ethanol mixtures" 438 : 105-111, 2013

      10 X. Wu, "Synthesis and characterization of zeolitic imidazolate framework ZIF-7 for CO2 and CH4 separation" 190 : 189-196, 2014

      1 황선웅, "제올라이트 입자를 첨가한 폴리에틸렌 필름의 기 체 투과성" 한국고분자학회 28 (28): 374-381, 2004

      2 A. Ebrahimi, "Zeolitic imidazolate framework-7:Novel ammonia atmosphere-assisted synthesis, thermal and chemical durability, phase reversibility and potential as highly efficient nanophotocatalyst" 511 : 33-45, 2018

      3 N. Azizi, "Using Pebax-1074/ZIF-7 mixed matrix membranes for separation of CO2 from CH4" 36 : 993-1000, 2018

      4 B. A. Al-Maythalony, "Tuning the interplay between selectivity and permeability of ZIF-7 mixed matrix membranes" 9 : 33401-33407, 2017

      5 R. Selyanchyn, "Thickness effect on CO2/N2 separation in double layer Pebax-1657®/PDMS membranes" 8 : 121-, 2018

      6 W. Cai, "Thermal structural transitions and carbon dioxide adsorption properties of zeolitic imidazolate framework-7 (ZIF-7)" 136 : 7961-7971, 2014

      7 L. M. Robeson, "The upper bound revisited" 320 : 390-400, 2008

      8 J. E. Shin, "The state of the art of membrane technologies for carbon dioxide separation" 21 : 2-16, 2018

      9 C. Kang, "Synthesis of ZIF-7/chitosan mixed-matrix membranes with improved separation performance of water/ethanol mixtures" 438 : 105-111, 2013

      10 X. Wu, "Synthesis and characterization of zeolitic imidazolate framework ZIF-7 for CO2 and CH4 separation" 190 : 189-196, 2014

      11 G. M. Shi, "Sorption, swelling, and free volume of polybenzimidazole (PBI) and PBI/zeolitic imidazolate framework (ZIF-8) nano-composite membranes for pervaporation" 54 : 774-783, 2013

      12 A. Khoshkharam, "Separation of CO2 from CH4 using a synthesized Pebax-1657/ZIF-7mixed matrix membrane" 35 : 667-673, 2017

      13 K. Xie, "Recent progress on fabrication methods of polymeric thin film gas separation membranes for CO2 capture" 572 : 38-60, 2019

      14 M. Vinoba, "Recent progress of fillers in mixed matrix membranes for CO2 separation: A review" 188 : 431-450, 2017

      15 M. Ebrahimi, "Rapid room temperature synthesis of zeolitic imidazolate framework-7 (ZIF-7) microcrystals" 189 : 243-247, 2017

      16 M. Ahmadi, "Performance of mixed matrix membranes containing porous two-dimensional (2D) and three-dimensional (3D) fillers for CO2 separation: A review" 8 : 50-, 2018

      17 Z. Dai, "Pebax®/TSIL blend thin film composite membranes for CO2 separation" 59 : 538-546, 2016

      18 R. Casadei, "Pebax® 2533/graphene oxide nanocomposite membranes for carbon capture" 10 : 188-, 2020

      19 F. H. Akhtar, "Pebax® 1657/Graphene oxide composite membranes for improved water vapor separation" 525 : 187-194, 2017

      20 김현준, "PEBAX^(TM)/TEOS 하이브리드 분리막을 통한 이산화탄소와 메탄의 기체투과특성" 한국화학공학회 49 (49): 460-464, 2011

      21 K. Knozowska, "Novel heterogeneous membranes for enhanced separation in organic-organic pervaporation" 599 : 117814-, 2020

      22 M. Pazirofteh, "Molecular dynamics simulation and Monte Carlo study of transport and structural properties of PEBA 1657 and 2533 membranes modified by functionalized POSS-PEG material" 241 : 646-653, 2017

      23 R. S. Murali, "Mixed matrix membranes of Pebax-1657 loaded with 4A zeolite for gaseous separations" 129 : 1-8, 2014

      24 L. Zhang, "Metal-organic framework/polymer mixed-matrix membranes for H2/CO2 separation: A fully atomistic simulation study" 116 : 19268-19277, 2012

      25 H. B. Park, "Maximizing the right stuff: The trade-off between mem-brane permeability and selectivity" 356 : eaab0530-, 2017

      26 L. Xiang, "Locking of phase transition in MOF ZIF-7: Improved selectivity in mixed-matrix membranes for O2/N2 separation" 7 : 223-228, 2020

      27 W. Fam, "Improving CO2 separation performance of thin film composite hollow fiber with Pebax®1657/ionic liquid gel membranes" 537 : 54-68, 2017

      28 S. Jeong, "Highly permeable PEBAX1657 membranes to have long-term stability for facilitated olefin transport" 333 : 276-279, 2018

      29 D. Zhao, "High CO2 separation performance of Pebax®/CNTs/GTA mixed matrix membranes" 521 : 104-113, 2017

      30 A. Arami-Niya, "Gate opening effect of zeolitic imidazolate framework ZIF-7 for adsorption of CH4 and CO2 from N2" 5 : 21389-21399, 2017

      31 V. Bondar, "Gas transport properties of poly(ether-b-amide) segmented block copolymers" 38 : 2051-2062, 2000

      32 P. Bernardo, "Gas transport properties of Pebax®/room temperature ionic liquid gel membranes" 97 : 73-82, 2012

      33 R. S. Murali, "Gas permeation behavior of Pebax-1657 nanocomposite membrane incorporated with multiwalled carbon nanotubes" 49 : 6530-6538, 2010

      34 J. Gao, "Functionalized ZIF-7/Pebax® 2533 mixed matrix membranes for CO2/N2separation" 297 : 110030-, 2020

      35 A. Noguera-Díaz, "Flexible ZIFs: Probing guest-induced flexibility with CO2, N2 and Ar adsorption" 94 : 3787-3792, 2019

      36 K. S. Park, "Exceptional chemical and thermal stability of zeolitic imidazolate frameworks" 103 : 10186-10191, 2006

      37 C. K. Yeom, "Evaluation of gas transport parameters through dense polymeric membranes by continuous-flow technique" 9 : 141-150, 1999

      38 P. Bernardo, "Enhancing gas permeation properties of Pebax® 1657 membranes via polysorbate nonionic surfactants doping" 12 : 253-, 2020

      39 F. Pazani, "Enhanced CO2-selective behavior of Pebax-1657: A comparative study between the influence of graphene-based fillers" 81 : 106264-, 2020

      40 J. Deng, "Effects of the morphology of the ZIF on the CO2 separation performance of MMMs" 59 : 14458-14466, 2020

      41 S. Wang, "Effects of different porous fillers on interfacial properties of poly(vinyl alcohol) hybrid films" 138 (138): 50641-, 2021

      42 J. E. Shin, "Effect of PEGMEA and graphene oxide additives on the performance of Pebax®1657 mixed matrix membranes for CO2 separation" 572 : 300-308, 2019

      43 J. Kim, "Effect of 2-MeIM/Zn molar ratio on CO2 permeability of Pebax/ZIF-8 mixed matrix membranes" 7 : 74-84, 2021

      44 P. Zhao, "Direct visualisation of carbon dioxide adsorption in gate-opening zeolitic imidazolate framework ZIF-7" 2 : 620-623, 2014

      45 V. Nafisi, "Development of dual layer of ZIF-8/PEBAX-2533 mixed matrix membrane for CO2 capture" 459 : 244-255, 2014

      46 S. Meshkat, "Comparison between ZIF-67 and ZIF-8 in Pebax® MH-1657 mixed matrix membranes for CO2 separation" 235 : 116150-, 2020

      47 T. Li, "Carbon dioxide selective mixed matrix composite membrane containing ZIF-7 nano-fillers" 425 : 235-242, 2013

      48 H. Li, "Can flexible framework fillers keep breathing in mixed matrix membranes to enhance separation performance?" 614 : 118426-, 2020

      49 T. Chakrabarty, "CO2 selective, zeolitic imidazolate framework-7 based polymer composite mixed-matrix membranes" 7 : 1-11, 2018

      50 S. Mosleh, "Application of poly(amide-b-ethylene oxide)/zeolitic imidazolate framework nanocomposite membrane in gas separation" 25 : 977-990, 2016

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      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2013-12-01 평가 SCOPUS 등재 (등재유지) KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2010-02-19 학술지명변경 외국어명 : Journal of the Korean Industrial and Engineering Chemistry -> Applied Chemistry for Engineering KCI등재
      2009-04-28 학술지명변경 외국어명 : Jpurnal of the Korean Industrial and Engineering Chemistry -> Journal of the Korean Industrial and Engineering Chemistry KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2002-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      1999-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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