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Preparation of quaternary ammonium-Chlorella vulgaris and its adsorption of Ag(CN)(2)(-)

机译:季铵盐-小球藻的制备及其对Ag(CN)(2)(-)的吸附

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A novel anion exchange resin, quaternary ammonium-Chlorella vulgaris (QACV), was prepared by introducing quaternary ammonium groups onto dried Chlorella vulgaris as base material. Degrees of epoxy, amine and quaternary ammonium groups of QACV were measured. Water retention, optical microscopy, and Fourier transform infrared spectrometry were used to characterize QAVC. The adsorption behavior of QACV towards Ag(CN)(2)(-) in different conditions was studied carefully. The results showed that QAVC was efficient to adsorb Ag(CN)(2)(-) at pH 9-11, and adsorption equilibrium was almost reached in 30 min. Both kinetics and isotherm parameters in the adsorption process were obtained. The data indicated that the pseudo-second-order model provided a good correlation for adsorption of Ag(CN)(2)(-) on QACV and the calculated rate constant of the adsorption was 3.51 g/(mmol min). The equilibrium data fitted well in the Langmuir isotherm and the estimated maximum adsorption capacity q(m) was 1.96 mmol/g. The dimensionless separation factor R-L was between 0 and 1, suggesting that the adsorption process of Ag(CN)(2)(-) using QACV was favorable. The QACV could be used successively three times without significantly affecting its adsorption efficiency. Chlorella vulgaris was a potential base material to be modified with quaternary ammonium groups to prepare an adsorbent for adsorption of Ag(CN)(2)(-).
机译:通过将季铵基团引入干燥的小球藻(Chlorella vulgaris)作为基础材料,制备了一种新型的阴离子交换树脂,季铵-小球藻(QACV)。测量了QACV的环氧基,胺基和季铵基的程度。保水,光学显微镜和傅立叶变换红外光谱法用于表征QAVC。仔细研究了QACV在不同条件下对Ag(CN)(2)(-)的吸附行为。结果表明,QAVC能够在pH 9-11下有效吸附Ag(CN)(2)(-),并且在30分钟内几乎达到吸附平衡。获得了吸附过程中的动力学参数和等温线参数。数据表明,拟二级模型为Ag(CN)(2)(-)在QACV上的吸附提供了良好的相关性,计算的吸附速率常数为3.51 g /(mmol min)。平衡数据很好地拟合了Langmuir等温线,估计的最大吸附容量q(m)为1.96 mmol / g。无因次分离系数R-L在0和1之间,表明使用QACV吸附Ag(CN)(2)(-)的过程是有利的。 QACV可以连续使用三次,而不会显着影响其吸附效率。小球藻是一种潜在的基础材料,可通过季铵基团进行改性,从而制备用于吸附Ag(CN)(2)(-)的吸附剂。

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