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Preparation of Molecular Imprinted Thermosensitive Gel Adsorbents and Adsorption/Desorption Properties of Heavy Metal Ions by Temperature Swing

机译:分子印迹热敏凝胶吸附剂的制备及温度波动对重金属离子的吸附/解吸性能

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References(15) Cited-By(16) A gel adsorbent which adsorbs and/or desorbs specific heavy metal ions selectively by temperature swing was prepared by copolymerizing the chelating monomer, N-(4-vinyl)benzyl ethylenediamine (Vb-EDA) with N-isopropylacrylamide (NIPA) as thermosensitive component by using the molecule imprinting technique. Copper ion, Cu(II) was selected as a target ion in imprinting. The adsorption amount of Cu(II) ions on imprinted gel depended on the temperature, and the maximum amount was obtained at a specific temperature where the size of gel network corresponds to that memorized in the preparation of gel. The adsorption amount depended on the gel composition, namely, the concentrations of NIPA and cross-linker. The adsorption amount increased linearly with the increasing Vb-EDA content in the gel, and the slope was almost 1/2. This implies that one Cu(II) ion coordinates with two molecules of Vb-EDA. The adsorption amount was well described by the Langmuir isotherm formula. The adsorption and desorption could be done repeatedly by temperature swing. Furthermore, the selective adsorption of Cu(II) ions was confirmed by comparing the adsorption amounts of other metal ions, Ni(II), Zn(II) and Mn(II).
机译:参考文献(15)Cited-By(16)通过将螯合单体N-(4-乙烯基)苄基乙二胺(Vb-EDA)与通过使用分子印迹技术,将N-异丙基丙烯酰胺(NIPA)作为热敏组分。选择铜离子Cu(II)作为压印的目标离子。 Cu(II)离子在印迹凝胶上的吸附量取决于温度,并且在特定温度下获得最大吸附量,此时凝胶网络的大小与凝胶制备中所记忆的大小相对应。吸附量取决于凝胶组成,即NIPA和交联剂的浓度。吸附量随凝胶中Vb-EDA含量的增加而线性增加,斜率几乎为1/2。这意味着一个Cu(II)离子与两个Vb-EDA分子配位。吸附量由Langmuir等温线公式很好地描述。吸附和解吸可以通过温度波动反复进行。另外,通过比较其他金属离子Ni(II),Zn(II)和Mn(II)的吸附量来确认Cu(II)离子的选择性吸附。

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