Ahmed Ashour M, Saad Islam, Rafea M Abdel, Abukhadra Mostafa R
Physics Department, College of Science, Imam Mohammad Ibn Saud Islamic University (IMSIU) Riyadh 11623 Kingdom of Saudi Arabia.
Physics Department, Faculty of Science, Beni-Suef University Beni-Suef 65211 Egypt.
RSC Adv. 2024 Mar 14;14(13):8752-8768. doi: 10.1039/d3ra08709c.
In synergetic investigations, the adsorption effectiveness of diatomite-based zeolitic structure (ZD) as well as its β-cyclodextrin (CD) hybrids (CD/ZD) towards uranium ions (U(vi)) was evaluated to examine the influence of the transformation procedures. The retention behaviors and mechanistic processes have been demonstrated through analyzing the steric and energetic factors employing the modern equilibrium approach (a monolayer model with a single energy level). After the saturation phase, the uptake characteristics of U(vi) were dramatically improved to 297.5 mg g after the CD blending procedure ZD (262.3 mg g) or 127.8 mg g. The steric analysis indicated a notable increase in binding site levels after the zeolitization steps ( = 85.7 mg g) as well as CD implementation ( = 91.2 mg g). This finding clarifies the reported improvement in the ability of CD/ZD to effectively retain the U(vi) ions. Furthermore, every single active site of the CD/ZD material has the capacity to adsorb around four ions, which are aligned according to a vertical pattern. The energetic aspects, specifically Gaussian energy (<8 kJ mol) along with retention energy (<40 kJ mol), validate the regulated influences of the physical mechanistic processes. The physical adsorption of U(vi) seems to depend on various intermolecular forces, such as van der Waals forces, in conjunction with zeolitic ion exchanging pathways (0.6-25 kJ mol). The thermodynamic assets have been evaluated to confirm the exothermic together with spontaneous adsorption U(vi) by ZD and its blend with CD (CD/ZD).
在协同研究中,评估了基于硅藻土的沸石结构(ZD)及其β-环糊精(CD)杂化物(CD/ZD)对铀离子(U(vi))的吸附效果,以研究转化过程的影响。通过采用现代平衡方法(具有单一能级的单层模型)分析空间和能量因素,证明了保留行为和机理过程。在饱和阶段之后,CD混合程序后U(vi)的摄取特性显著提高到297.5 mg/g,而ZD为(262.3 mg/g)或127.8 mg/g。空间分析表明,在沸石化步骤( = 85.7 mg/g)以及CD实施( = 91.2 mg/g)之后,结合位点水平显著增加。这一发现阐明了所报道的CD/ZD有效保留U(vi)离子能力的提高。此外,CD/ZD材料的每个活性位点都有能力吸附大约四个离子,这些离子以垂直模式排列。能量方面,特别是高斯能量(<8 kJ/mol)以及保留能量(<40 kJ/mol),验证了物理机理过程的调控影响。U(vi)的物理吸附似乎取决于各种分子间力,如范德华力,以及沸石离子交换途径(0.6 - 25 kJ/mol)。已经评估了热力学性质,以确认ZD及其与CD的混合物(CD/ZD)对U(vi)的放热和自发吸附。