Biogeochemistry Group, National Centre of Earth Science Studies, Akkulam, Trivandrum, Kerala 695011, India; Department of Chemistry, St. Gregorios College, Kottarakkara, Kollam, Kerala 691531, India; Research Scholar, University of Kerala, India.
Biogeochemistry Group, National Centre of Earth Science Studies, Akkulam, Trivandrum, Kerala 695011, India; Department of Chemistry, St. Gregorios College, Kottarakkara, Kollam, Kerala 691531, India.
Int J Biol Macromol. 2024 Nov;279(Pt 3):134963. doi: 10.1016/j.ijbiomac.2024.134963. Epub 2024 Aug 30.
Amine functionalized bentonites were used as adsorbents for the bioremoval of Fe(III) ions, which led to the inclusion of functional groups such as -OH, -NH2, -OCH3, etc. FTIR, XRD, SEM, AFM, TG, BET, XRF, and CHNS analyzer were used to analyze the surface and textural characteristics. The influence of adsorption factors, such as pH, contact time, temperature, and initial concentration, have been investigated and tailored in batch adsorption experiments of Fe (III) metal ions. The maximum adsorption efficiency and capacity of modified BNT-APTMS is 100.90 % and 103.91 mg/g respectively. The adsorption process is best fit with Freundlich model (R=0.998) than Langmuir model (R=0.788) and the Temkin model D-R isotherm parameters indicating a physisorption process. A mechanism of spontaneous complexation was accomplished, because of the heterogeneity of the surface, electrostatic forces, pore filling, and π-π stacking. Follows PSO kinetics and favours Freundlich isotherm. The adsorbent substance showed a remarkable capacity for regeneration, assuring the substance's stability and reusability.
胺功能化膨润土被用作去除 Fe(III)离子的吸附剂,这导致了 -OH、-NH2、-OCH3 等官能团的包含。FTIR、XRD、SEM、AFM、TG、BET、XRF 和 CHNS 分析仪用于分析表面和结构特征。在 Fe(III)金属离子的批量吸附实验中,研究并调整了吸附因子(如 pH、接触时间、温度和初始浓度)的影响。改性 BNT-APTMS 的最大吸附效率和容量分别为 100.90%和 103.91mg/g。吸附过程最符合 Freundlich 模型(R=0.998),而不是 Langmuir 模型(R=0.788)和 Temkin 模型 D-R 等温线参数表明这是一个物理吸附过程。由于表面的不均匀性、静电力、孔填充和 π-π 堆积,自发络合完成了一个机制。遵循 PSO 动力学,有利于 Freundlich 等温线。吸附剂物质表现出对再生的显著能力,确保了物质的稳定性和可重复使用性。