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Synthesis And Characterization Of A New Material Based On Porous Silica—chemically Immobilized C,n-pyridylpyrazole For Heavy Metals Adsorption

机译:基于多孔二氧化硅的化学固定化C,n-吡啶基吡唑重金属吸附新材料的合成与表征

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The immobilization of C,N-pyridylpyrazole on the surface of epoxy group containing silica gel phase for the formation of a newly synthesized material based on porous silica-bound C,N-pyridylpyrazole (SGPP) is described. The surface modification was characterized by ~(13)C NMR of solid sample, elemental analysis and infrared spectra and was studied and evaluated by determination of the surface area using the BET equation, the adsorption and desorption capability using the isotherm of nitrogen and BJH pore sizes, respectively. The new material exhibits good thermal stability determined by thermogravimetry curves. The synthesized material was utilised in column and batch methods for separation and trace extraction of (Hg~(2+), Cd~(2+), Pb~(2+), Cu~(2+), Zn~(2+), K~+, Na~+ and Li~+) and compared to results of classical liquid-liquid extraction with the unbound C,N-pyridylpyrazole compound. The grafting at the surface of silica does not affect complexing properties of the ligand and the material exhibits a high selectivity toward Hg(II).
机译:描述了将C,N-吡啶基吡唑固定在含环氧基的硅胶相上,以形成基于多孔二氧化硅结合的C,N-吡啶基吡唑(SGPP)的新合成材料。通过固体样品的〜(13)C NMR,元素分析和红外光谱对表面改性进行表征,并通过使用BET方程确定表面积,使用氮和BJH孔的等温线确定吸附和解吸能力来进行研究和评估。大小。通过热重曲线确定的新材料具有良好的热稳定性。所合成的材料用于柱和分批方法中,以分离和痕量萃取(Hg〜(2 +),Cd〜(2 +),Pb〜(2 +),Cu〜(2 +),Zn〜(2+ ),K〜+,Na〜+和Li〜+),并与未结合的C,N-吡啶基吡唑化合物进行经典液-液萃取的结果进行了比较。二氧化硅表面的接枝不会影响配体的络合性能,该材料对Hg(II)的选择性高。

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