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首页> 外文期刊>Journal of Applied Polymer Science >Chemical modification of controlled-pore silica with N-propylsalicylaldimine
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Chemical modification of controlled-pore silica with N-propylsalicylaldimine

机译:N-丙基水杨醛亚胺对可控孔二氧化硅的化学改性

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Two controlled-pore silica phases were prepared with a sol-gel precursor from a sodium silicate solution. N-Propylsalicylaldimine was immobilized on these silica species to be used as chelating ion exchangers (IE11 and IE2). The monomer phase was also prepared for comparison. The N-propylsalicylaldimine moiety was detected by Fourier transform infrared and ultraviolet in both the ion exchangers and the monomer phases. 1H-NMR and mass spectrometry of the monomer also confirmed the structure. The capacity (C) of the ion exchangers was dependent on the porosity of the ion exchanger (C-1E11 = 0.36 mmol of Cu/g and C-IE2 = 0.026 mmol of Cu/g). The uptake behavior of IE11 toward some metal ions was studied, and log distribution coefficient (k(d)) was within the range of 2.19-5.16. Also, thermogravimetric and differential thermogravimetric analysis data were used to study the kinetics of the thermal decomposition process of IE11. Some thermodynamic parameters for the ion exchanger were calculated by the application of the rate theory of the first-order reaction. (C) 2003 Wiley Periodicals, Inc. [References: 34]
机译:用溶胶-凝胶前体从硅酸钠溶液中制备了两个受控孔的二氧化硅相。 N-脯氨酰水杨醛亚胺固定在这些二氧化硅上,用作螯合离子交换剂(IE11和IE2)。还准备了单体相用于比较。通过离子交换剂和单体相的傅立叶变换红外和紫外检测N-丙基水杨基亚胺部分。单体的1 H-NMR和质谱也证实了结构。离子交换剂的容量(C)取决于离子交换剂的孔隙率(C-1E11 = 0.36 mmol Cu / g,C-IE2 = 0.026 mmol Cu / g)。研究了IE11对某些金属离子的吸收行为,对数分布系数(k(d))在2.19-5.16的范围内。此外,使用热重分析和差示热重分析数据来研究IE11热分解过程的动力学。应用一级反应速率理论计算了离子交换剂的一些热力学参数。 (C)2003 Wiley Periodicals,Inc. [参考:34]

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