Razieh Shekari Moghadam, Babak Samiey, Jiang Ning Wu
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引用次数: 0
摘要
本研究使用 GO/PAMAM4 作为生物相容性纳米复合吸附剂来吸附重铬酸盐(DC)离子。在碱性溶液中,DC 离子会转变为铬酸根离子,而铬酸根离子不会被吸附在吸附剂表面。因此,实验在酸性和中性水溶液中进行。在这些条件下,吸附剂的吸附位点是吸附剂中质子化的伯胺基团和三元胺基团,分别显示为 -NH3+ 和 -NHR2+,它们通过静电作用吸附直流电离子。在不同的离子强度、pH 值和温度条件下,得到了 DC 在 GO/PAMAM4 上的吸附等温线。等温线由 ARIAN 模型进行分析。在 pH=0 和 318 K 时,观察到的最高吸附容量为 246.7 mg g-1。在不同的初始直流电浓度、pH 值、温度、振荡速率和离子强度下进行了吸附动力学实验,并通过 KASRA 模型和粒子内扩散、ISO 和 NIPPON 方程进行了分析。GO/PAMAM4从DC离子中分离出了Pb2+、Cd2+、Cr3+和单宁酸(TA),并利用碱性溶液对GO/PAMAM4进行了回收。
Graphene Oxide/Polyamidoamine G4 as a High Efficient and Eco-Friendly Adsorbent for Dichromate Ions.
In this study, GO/PAMAM4 was used as a biocompatible nanocomposite adsorbent to adsorb dichromate (DC) ions. In alkaline solutions, DC ions changed to chromate ions which were not adsorbed on the surface of adsorbent. Thus, experiments were carried out in acidic and neutral water solution. Under these conditions, adsorption sites of adsorbent were protonated primary and ternary amine groups of adsorbent shown as -NH3+ and -NHR2+, respectively, that adsorbed DC ions through electrostatic interaction. Adsorption isotherms of DC on GO/PAMAM4 were obtained under various ionic strengths, pHs and temperatures. Isotherms were analyzed by the ARIAN model. The highest observed adsorption capacity of this process was 246.7 mg g-1 at pH=0 and 318 K. Tests at pH=2 showed that this process was endothermic. Adsorption kinetic experiments were carried out under various initial DC concentrations, pHs, temperatures, shaking rates and ionic strengths and were analyzed by the KASRA model and intraparticle diffusion, ISO and NIPPON equations. Pb2+, Cd2+, Cr3+ and tannic acid (TA) were separated by GO/PAMAM4 from DC ions and the GO/PAMAM4 was recycled by using an alkaline solution.
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