S

A. Mohamed, D. Chenaf, S. El-Shahed
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Abstract

Novel Uracil-modified chitosan (UCs) adsorbent has successfully been synthesized through a four-step method during which the amino groups of chitosan have been protected, then epoxy nuclei have been incorporated, afterwards the latter have been opened using 6-amino-1,3dimethyl uracil, and finally the amino groups have been regained via removing the protection. Its structure was checked using FTIR, XRD and SEM techniques. The adsorption capacity of UCs for anionic Congo Red (CR) dye was studied under various conditions. It decreased significantly with increasing the solution pH value and dye concentration, while increased with increasing temperature. The adsorption of UCs for CR dye at different temperatures, solution pH and dye concentrations fitted to the kinetic model of pseudo-second order and Elovich model. The intraparticle diffusion model showed that the adsorption process involves multi-step process. The isotherm of CR dye adsorption by UCs conforms to the Langmuir isotherm model indicating the monolayer nature of adsorption. The maximum monolayer coverage capacity, qmax, was 434.78 mg g−1. Studying the thermodynamic showed that the adsorption of CR dye onto UCs was endothermic as illustrated from the positive value of enthalpy (21.37 kJ mol−1). According to the values of ΔG°, the adsorption process was spontaneous at all selected temperatures. The value of ΔS° showed an increase in randomness for the adsorption of CR dye by UCs. The value of activation energy was 18.40 kJ mol−1.
年代
采用四步法,先保护壳聚糖的氨基,然后加入环氧核,再用6-氨基-1,3二甲基尿嘧啶打开环氧核,最后去除保护,成功合成了新型尿嘧啶修饰壳聚糖(UCs)吸附剂。采用FTIR、XRD、SEM等技术对其结构进行了表征。研究了不同条件下UCs对阴离子刚果红(CR)染料的吸附能力。随着溶液pH值和染料浓度的增加,它显著降低,而随着温度的升高而升高。不同温度、溶液pH和染料浓度下UCs对CR染料的吸附符合拟二级动力学模型和Elovich模型。颗粒内扩散模型表明,吸附过程是一个多步骤过程。UCs吸附CR染料的等温线符合Langmuir等温线模型,表明吸附的单层性质。最大单层覆盖容量qmax为434.78 mg g−1。热力学研究表明,CR染料在UCs上的吸附为吸热吸附,其焓值为正值(21.37 kJ mol−1)。根据ΔG°的值,在所有选择的温度下,吸附过程都是自发的。ΔS°值表明UCs吸附CR染料的随机性增加。活化能为18.40 kJ mol−1。
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