• 제목/요약/키워드: nanocomposite membrane

검색결과 48건 처리시간 0.022초

PVDF/h-BN hybrid membranes and their application in desalination through AGMD

  • Moradi, Rasoul;Shariaty-Niassar, Mojtaba;Pourkhalili, Nazila;Mehrizadeh, Masoud;Niknafs, Hassan
    • Membrane and Water Treatment
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    • 제9권4호
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    • pp.221-231
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    • 2018
  • A new procedure to produce poly(vinylidene fluoride)/boron nitride hybrid membrane is presented for application in membrane distillation (MD) process. The influence of hexagonal boron nitride (h-BN) incorporation on the performance of the polymeric membranes is studied through the present investigation. For this aim, h-BN nanopowders were successfully synthesized using the simple chemical vapor deposition (CVD) route and subsequent solvent treatments. The resulting h-BN nanosheets were blended with poly(vinylidene fluoride) (PVDF) solution. Then, the prepared composite solution was subjected to phase inversion process to obtain PVDF/h-BN hybrid membranes. Various examinations such as scanning electron microscopy (SEM), wettability, permeation flux, mechanical strength and liquid entry pressure (LEP) measurements are performed to evaluate the prepared membrane. Moreover, Air gap membrane distillation (AGMD) experiments were carried out to investigate the salt rejection performance and the durability of membranes. The results show that our hybrid PVDF/h-BN membrane presents higher water permeation flux (${\sim}18kg/m^2h$) compared to pristine PVDF membrane. In addition, the experimental data confirms that the prepared nanocomposite membrane is hydrophobic (water contact angle: ${\sim}103^{\circ}$), has a porous skin layer (>85%), as well competitive fouling resistance and operational durability. Furthermore, the total salt rejection efficiency was obtained for PVDF/h-BN membrane. The results prove that the novel PVDF/h-BN membrane can be easily synthesized and applied in MD process for salt rejection purposes.

압력지연삼투를 위한 최근 분리막 기술에 관한 총설 (Review on the Recent Membrane Technologies for Pressure Retarded Osmosis)

  • 전성수;라즈쿠마 파텔;김종학
    • 멤브레인
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    • 제31권4호
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    • pp.253-261
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    • 2021
  • 물 오염, 지구 온난화, 기후 변화를 해결하기 위한 해결책이 시급한 상황에서, 담수의 수요를 충당하고 친환경 에너지를 생산하기 위한 방법으로 염도차를 이용한 압력지연삼투공정이 제시되고 있다. 압력지연삼투공정에 대한 꾸준한 연구에도 불구하고 최근 기술의 부족과 비싼 멤브레인의 가격 등의 한계로 인해 상용화가 되지 않고 있다. 한편 멤브레인은 압력지연삼투공정과 염도차 발전 기술에 가장 중요한 구성품이다. 염도차 발전 기술에 사용되는 산화그래핀 멤브레인과 나노복합체 멤브레인의 기술 발전 연구가 지속되고 있다. 특히 낮은 온도의 폐기물 온도에서도 높은 에너지 효율 발전이 가능하도록 효율이 높은 멤브레인과 용매 및 용질에 대한 연구가 활발하다. 높은 투과도와 분리도를 가진 멤브레인, 특히 산화그래핀 멤브레인을 사용함으로써 농도 분극을 줄이고 전력 밀도를 높이는 연구들도 진행 중이다. 본 총설에서는 압력지연삼투 멤브레인과 이를 통한 이론적 모델링, 그 외 기술을 통해 공정의 효율을 발전시키는 방법에 대해 논의한다.

Titanium Dioxide Nanoparticles filled Sulfonated Poly(ether ether ketone) Proton Conducting Nanocomposites Membranes for Fuel Cell

  • Kalappa, Prashantha;Hong, Chang-Eui;Kim, Sung-Kwan;Lee, Joong-Hee
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2005년도 추계학술발표대회 논문집
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    • pp.87-90
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    • 2005
  • This paper presents an evaluation of the effect of titanium dioxide nanoparticles in sulfonated poly(ether ether ketone) (SPEEK) with sulfonation degree of 57%. A series of inorganic-organic hybrid membranes were prepared with a systematic variation of titanium dioxide nanoparticles content. Their water uptake, methanol permeability and proton conductivity as a function of temperature were investigated. The results obtained show that the inorganic oxide network decreases the proton conductivity and water swelling. It is also found that increase in inorganic oxide content leads to decrease of methanol permeability. In terms of morphology, membranes are homogeneous and exhibit a good adhesion between inorganic domains and the polymer matrix. The properties of the composite membranes are compared with standard nafion membrane.

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Ultra-Drawing of Gel Films of Ultra High Molecular Weight Polyethylene/Low Molecular Weight Polymer Blends Containing $BaTiO_3$ Nanoparticles

  • Park Ho-Sik;Lee Jong-Hoon;Seo Soo-Jung;Lee Young-Kwan;Oh Yong-Soo;Jung Hyun-Chul;Nam Jae-Do
    • Macromolecular Research
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    • 제14권4호
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    • pp.430-437
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    • 2006
  • The ultra-drawing process of an ultra high molecular weight polyethylene (UHMWPE) gel film was examined by incorporating linear low-density polyethylene (LLDPE) and $BaTiO_3$ nanoparticles. The effects of LLDPE and the draw ratios on the morphological development and mechanical properties of the nanocomposite membrane systems were investigated. By incorporating $BaTiO_3$ nanoparticles in the UHMWPE/LLDPE blend systems, the ultra-drawing process provided a highly extended, fibril structure of UHMWPE chains to form highly porous, composite membranes with well-dispersed nanoparticles. The ultra-drawing process of UHMWPE/LLDPE dry-gel films desirably dispersed the highly loaded $BaTiO_3$ nanoparticles in the porous membrane, which could be used to form multi-layered structures for electronic applications in various embedded, printed circuit board (PCB) systems.

Preparation and Characterization of Proton Conducting Composite Membranes From P(VDF-CTFE)-g-PSPMA Graft Copolymer and Heteropolyacid

  • Seo, Jin-Ah;Roh, Dong-Kyu;Koh, Jong-Kwan;Kim, Jong-Hak
    • Korean Membrane Journal
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    • 제10권1호
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    • pp.20-25
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    • 2008
  • Proton conducting composite membranes were prepared by solution blending of poly(vinylidene fluoride-co-chlorotrifluoroethylene)-graft-poly(sulfopropyl methacrylate) (P(VDF-CTFE)-g-PSPMA) graft copolymer and heteropolyacid (HPA). The P(VDF-CTFE)-g-PSPMA graft copolymer was synthesized by atom transfer radical polymerization (ATRP) using direct initiation of the secondary chlorines of P(VDF-CTFE). FT-IR spectroscopy revealed that HPA nanoparticles were incorporated into the graft copolymer via hydrogen bonding interactions. The water uptake of membranes continuously decreased with increasing HP A concentration up to 45wt%, after which it slightly increased. It is presumably due to the decrease in number of water absorption sites due to hydrogen bonding interaction between the HP A particles and the polymer matrix. The proton conductivity of membranes increased with increasing HPA concentration up to 45wt%, resulting from both the intrinsic conductivity of HP A particles and the enhanced acidity of the sulfonic acid of the graft copolymer.

Preparation and Characterization of $TiO_2$Filled Sulfonated Poly(ether ether ketone) Nanocomposite Membranes for Direct Methanol Fuel Cells

  • Kim Han-Joo;Kalappa Prashantha;Son Won-Keun;Park Jong-Eun;Oshaka Tetsuya;Kim Hyun-Hoo;Hong Ji-Sook;Park Soo-Gil
    • KIEE International Transactions on Electrophysics and Applications
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    • 제5C권4호
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    • pp.165-170
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    • 2005
  • A series of inorganic-organic hybrid membranes were prepared with a systematic variation of titanium dioxide nanoparticle content. Their water uptake, methanol permeability and proton conductivity as a function of temperature were investigated. The results obtained show that the inorganic oxide network decreases the proton conductivity and water swelling. It is also found that increase in inorganic oxide content leads to decrease of methanol permeability. In terms of the morphology, membranes are homogeneous and exhibit good adhesion between inorganic domains and the polymer matrix. The properties of the composite membranes are compared with the standard nafion membrane.

수처리용 나노복합막: 방오의 관점에서 (Nanocomposite Water Treatment Membranes: Antifouling Prospective)

  • 김수민;라즈쿠마 파텔
    • 멤브레인
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    • 제30권3호
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    • pp.158-172
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    • 2020
  • 수처리용 멤브레인의 기능 개선은 물과 에너지 자원 부족의 문제를 해결할 대표적인 과제로 떠오르고 있다. 나노 멤브레인을 활용한 정수 과정이 실용 가능할 수준에 도달하려면, 여과막의 표면에 박테리아나 미생물이 축적되는 생물 오손(biofouling)을 해소하는 전략이 필수적으로 고안되어야 한다. 더 높은 내구성을 가지면서도 기본적인 목적인 여과에 대한 성능 저하 없이 작동하는 수처리용 멤브레인을 합성하기 위해 현재 수많은 연구가 진행되고 있으며, 이러한 연구들에서 다루어지는 전략들은 크게 두 가지 종류로 분류될 수 있다. 이 중 일반적으로 제시되는 유형은 멤브레인의 표면에 은 나노 입자를 고정하는 방식이다. 은 나노 입자를 활용하는 방법에도, 은 나노 입자가 오염 방지의 역할을 효과적으로 수행하는 데 필요한 표면과의 유의미한 결합을 실현하기 위해 여러 가지 세부 전략들이 제안되어진다. 은 나노 입자를 사용하는 방식에서 단점이나 독성 유발 가능성 등의 위험성이 제기되면서, 은 외에도 구리, 그래핀 또는 아연 산화물, 아민 부분과 같은 물질의 입자들을 적용하여 멤브레인을 알맞게 기능화 하는 유형의 연구들 또한 진행되었다. 위 두 가지 유형의 전략들을 주제로 한 연구들은 여러 번의 시도와 실험을 거쳐 합성된 멤브레인의 표면에서 박테리아의 박멸이나 그의 번식을 예방하는 등의 몇 가지 주목할 만한 성과를 낳았으며, 향후 추가적인 연구가 필요한 점들을 제시하였다. 본 리뷰논문은 금속 나노 입자 및 기타 물질들이 수처리용 멤브레인의 표면과 결합하여 그의 방오화 특성에 기인하는 영향을 조사한 연구들에 대하여 다루고 있다.

Platinum nanocomposites and its applications: A review

  • Sharon, Madhuri;Nandgavkar, Isaac;Sharon, Maheshwar
    • Advances in materials Research
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    • 제6권2호
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    • pp.129-153
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    • 2017
  • Platinum is a transition metal that is very resistant to corrosion. It is used as catalyst for converting methyl alcohol to formaldehyde, as catalytic converter in cars, for hydrocracking of heavy oils, in Fuel Cell devices etc. Moreover, Platinum compounds are important ingredient for cancer chemotherapy drugs. The nano forms of Platinum due to its unique physico-chemical properties that are not found in its bulk counterpart, has been found to be of great importance in electronics, optoelectronics, enzyme immobilization etc. The stability of Platinum nanoparticles has supported its use for the development of efficient and durable proton exchange membrane Fuel Cells. The present review concentrates on the use of Platinum conjugated with various metal or compounds, to fabricate nanocomposites, to enhance the efficiency of Platinum nanoparticles. The recent advances in the synthesis methods of different Platinum-based nanocomposites and their applications in Fuel Cell, sensors, bioimaging, light emitting diode, dye sensitized solar cell, hydrogen generation and in biosystems has also been discussed.

Electrospun Nanofibrous Polyacrylonitrile(PAN)/ Fe2O3 Membrane as Co2Gas Sensor

  • Kim, Ye-Na;Park, Eun-Young;Lee, Deuk-Yong;Lee, Myung-Hyun;Lee, Se-Jong;Kim, Bae-Yeon;Cho, Nam-Ihn
    • 한국세라믹학회지
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    • 제44권4호
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    • pp.194-197
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    • 2007
  • Polyacrylonitrile (PAN)/$Fe_2O_3$ nanocomposite membranes with a thickness of 0.02 mm were electrospun by adding 0 to 5 wt% of $Fe_2O_3$ into PAN. The surface tension, density, kinematic viscosity and dynamic viscosity of the PAN solution were determined to be $33.8{\pm}1mN/m$, 0.9794 g/ml, $1548.6mm^2/sec$ and 1516.7 cP, respectively. The average diameters of PAN fibers containing 0, 1 2, 3, and 4 wt% $Fe_2O_3$ particles were 300, 260, 210, 130, and 90 nm, respectively. Fourier-transform infrared spectroscopy results showed that the addition of $Fe_2O_3$ nanoparticles to the PAN mat reduced the absorption peak intensity at $2242cm^{-1}$ ($C{\equiv}N$ bond) while it caused a sharp increase in the peak intensity at $2356cm^{-1}$(C=O bond). Thus, it appears that an appropriate amount of $Fe_2O_3$ nanoparticles in the PAN backbone leads to an improvement of the performance of the $CO_2$ gas sensor, most likely due to the change of functional groups in the membrane.