Eltaweil Abdelazeem S, Al Harby Nouf, El Batouti Mervette, Abd El-Monaem Eman M
Department of Engineering, College of Engineering and Technology, University of Technology and Applied Sciences Sultanate of Oman
Department of Chemistry, Faculty of Science, Alexandria University 21934 Alexandria Egypt
RSC Adv. 2024 Jul 15;14(31):22266-22279. doi: 10.1039/d4ra03479a. eCollection 2024 Jul 12.
A novel eco-friendly adsorbent was fabricated by mixing mushroom-derived cadmium sulfide and polyethyleneimine-functionalized biochar that was fabricated from coffee waste with a chitosan biopolymer. The green-synthesized CdS/PEI-BC/CTS composite was analyzed using several characterization methods to identify its morphological, compositional, and structural characteristics. In addition, the adsorption property of the composite was investigated for hexavalent chromium as a model for anionic heavy metals. The best adsorption conditions to efficiently adsorb Cr(vi) onto CdS/PEI-BC/CTS were scrutinized in the batch mode. The experimental results elucidated that the higher adsorption efficacy for Cr(vi) was 97.89% at pH = 3, Cr(vi) concentration = 50 mg L, CdS/PEI-BC/CTS dose = 0.01 g, and temperature = 20 °C. The impact of co-interfering anionic species on Cr(vi) adsorption was identified in simulated wastewater. The recycling property of the CdS/PEI-BC/CTS composite was assessed for ten runs to ensure the applicability of the green composite. The adsorption mechanism and interaction types were proposed on the basis of kinetic and isotherm studies, along with analysis tools. The mechanistic study proposed that the Cr(vi) adsorption onto CdS/PEI-BC/CTS occurred chemical and physical pathways, including protonation, electrostatic interactions, reduction, and coordination bonds.
通过将蘑菇衍生的硫化镉与由咖啡渣制成的聚乙烯亚胺功能化生物炭和壳聚糖生物聚合物混合,制备了一种新型环保吸附剂。使用多种表征方法对绿色合成的CdS/PEI-BC/CTS复合材料进行分析,以确定其形态、组成和结构特征。此外,以六价铬作为阴离子重金属的模型,研究了该复合材料的吸附性能。在分批模式下,仔细研究了将Cr(Ⅵ)有效吸附到CdS/PEI-BC/CTS上的最佳吸附条件。实验结果表明,在pH = 3、Cr(Ⅵ)浓度 = 50 mg/L、CdS/PEI-BC/CTS剂量 = 0.01 g和温度 = 20℃时,对Cr(Ⅵ)的较高吸附效率为97.89%。在模拟废水中确定了共存阴离子物种对Cr(Ⅵ)吸附的影响。对CdS/PEI-BC/CTS复合材料进行了十次循环性能评估,以确保这种绿色复合材料的适用性。基于动力学和等温线研究以及分析工具,提出了吸附机理和相互作用类型。机理研究表明,Cr(Ⅵ)在CdS/PEI-BC/CTS上的吸附通过化学和物理途径发生,包括质子化、静电相互作用、还原和配位键。