• 제목/요약/키워드: ion-excahnge

검색결과 2건 처리시간 0.016초

Surface Modification of Polypropylene Membrane by ${\gamma}$ Irradiation Methods and their Solutes Permeation Behaviors

  • Shim, J. K.;Lee, S. H.;Kwon, O. H.;Lee, Y. M.;Nho, Y. C.
    • 한국막학회:학술대회논문집
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    • 한국막학회 1998년도 춘계 총회 및 학술발표회
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    • pp.99-101
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    • 1998
  • 1. Introduction : The conventional grafting polymerization technique requires chemically reactive groups on the surface as well as on the polymer chains. For this reason, a series of prefunctionalization steps are necessary for covalent grafting. The surface prefunctionalizational technique for grafting can be used to ionization radiation, UV, plasma, ion beam or chemical initiators. Of these techniques, radiation method is one of the useful methods because of uniform and rapid creation of active radical sites without catalytic contamination in grafted samples. If the diffusion of monomer into polymer is large enough to come to the inside of polymer substrate, a homogeneous and uniform grafting reaction can be carried out throughout the whole polymer substrate. Radiation-induced grafting method may attach specific functional moieties to a polymeric substrate, such as preirradiation and simultaneous irradiation. The former is irradiated at backbone polymer in vacuum or nitrogen gas and air, and then subsequent monomer grafting by trapped or peroxy radicals, while the latter is irradiated at backbone polymer in the presence of the monomer. Therefore, radiation-induced polymerization can be used to modification of the chemical and physical properties of the polymeric materials and has attracted considerable interest because it imparts desirable properties such as blood compatibility. membrane quality, ion excahnge, dyeability, protein adsorption, and immobilization of bioactive materials. Synthesizing biocompatible materials by radiation method such as preirradiation or simultaneous irradiation has often used $\gamma$-rays to graft hydrophilic monomers onto hydrophobic polymer substrates. In this work, in attempt to produce surfaces that show low levels of anti-fouling of bovine serum albumin(BSA) solutions, hydroxyethyl methacrylate(HEMA) was grafted polypropylene membrane surfaces by preirradiation technique. The anti-fouling effect of the polypropylene membrane after grafting was examined by permeation BSA solution.

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양이온 교환능을 갖는 K-Birnessite 콜로이드에 의한 수용성 우라늄(VI) 이온의 흡착 연구 (Sorption of aqueous uranium(VI) ion onto a cation-exchangeable K-birnessite colloid)

  • 강광철;김승수;백민훈;권수한;이석우
    • 분석과학
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    • 제23권6호
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    • pp.566-571
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    • 2010
  • 양이온 교환능력을 갖는 합성 K-birnessite를 이용하여 수용성 우라늄 이온($UO_2^{2+}$)에 대한 흡착 거동을 조사하였다. K-birnessite는 KMnO4 수용액과 염산을 반응시켜 합성하였으며, 합성된 K-birnessite의 구조, 비표면적 및 표면전하 등 물리화학적 특성을 규명하였다. $K^+$ 이온은 층상구조를 갖는 $MnO_2$ 층간에 존재하였으며, BET 비표면적은 $38.30\;m^2/g$이었다. 우라늄 흡착실험 조건인 pH 5.00, 이온세기 0.010M $NaClO_4$에서 측정된 K-birnessite의 표면전하는 $-1.65\;C/m^2$이었다. 우라늄 이온은 K-birnessite 층간의 $K^+$와 이온교환 반응을 통하여 흡착하였으며, 분배계수는 일반적인 이온교환물질과 유사하였다. 본 연구결과는 고준위 방사성 폐기물 지하처분장으로부터 유출될 수 있는 방사성물질의 이동을 저지하는 방법으로 활용될 수 있을 것이다.