Department of Chemical Engineering, China University of Petroleum, Beijing City, China.
Department of Chemical Engineering, Covenant University, Ota, Nigeria.
Int J Phytoremediation. 2022;24(4):394-408. doi: 10.1080/15226514.2021.1950118. Epub 2021 Jul 20.
Adsorption of caffeine from an aqueous solution was carried out using Velvet Tamarind-Pericarp, activated with HPO. The adsorbent was characterized using a scanning-electron microscope and the Brunauer-Emmett-Teller. Parameters such as activating agent concentration (80 wt.% in 100 mL solution), initial caffeine concentration of 5-40 g/L, pH of 0-14, and residence time 0-90 minutes, were investigated. Improved adsorptive capacities were seen at increased acid concentrations, with the highest removal rate obtained at a pH of 6. The highest residence time and adsorbent concentrations were obtained at 40 min and 10 g/L. The surface adsorption of the adsorbent obeyed the Langmuir Isotherm, while the regression coefficients conformed to the pseudo-second-order kinetic model for the remediation of caffeine with DG-AC. The highest amount of caffeine removed per gram DG is 72.60 mg.g. From the thermodynamic study, the caffeine adsorption was feasible, spontaneous, entropy-driven, and endothermic. These data show that the use of DG-AC can be a good alternative to other expensive methods for caffeine remediation. The Pseudo - first/second-order kinetic results gave R values of 0.95 and 0.99, other parameters such as entropy ( and enthalpy () are 0.06 and (19.21)
采用 HPO 对 Velvet Tamarind-Pericarp 进行活化,从水溶液中吸附咖啡因。采用扫描电子显微镜和 Brunauer-Emmett-Teller 对吸附剂进行了表征。考察了活化剂浓度(在 100ml 溶液中为 80wt.%)、初始咖啡因浓度(5-40g/L)、pH 值(0-14)和停留时间(0-90 分钟)等参数。在增加酸浓度时,观察到吸附容量提高,在 pH 值为 6 时,去除率最高。在 40min 和 10g/L 时,获得了最高的停留时间和吸附剂浓度。吸附剂的表面吸附符合 Langmuir 等温线,而回归系数符合用于修复咖啡因的伪二级动力学模型。每克 DG 去除的咖啡因量最高为 72.60mg.g。从热力学研究来看,咖啡因的吸附是可行的、自发的、熵驱动的和吸热的。这些数据表明,使用 DG-AC 可以替代其他昂贵的咖啡因修复方法。准一级/二级动力学结果的 R 值分别为 0.95 和 0.99,其他参数如熵()和焓()分别为 0.06 和(19.21)。