Department of Chemistry and Earth Sciences, College of Arts and Sciences, Qatar University, Doha 2713, Qatar.
Molecules. 2021 Oct 11;26(20):6138. doi: 10.3390/molecules26206138.
Adsorptive removal of methylene blue (MB) from contaminated water samples was achieved using green tea waste (GTW). Adsorption of MB onto raw (RGTW) and thermally treated waste (TTGTW250-TTGTW500) was explored. The performance of the tested adsorbents was assessed in terms of percentage removal of MB (%R) and adsorption capacity (, mg/g). A full factorial design (FFD) was employed to optimize the adsorption of MB onto both RGTW and TTGTW500. Four factors were studied: pH, adsorbent dose (AD), dye concentration (DC), and contact time (CT). Value for %R of 96.58% and 98.07% were obtained using RGTW and TTGTW500, respectively. FT-IR and Raman analyses were used to study the surfaces of the prepared adsorbents, and the IR spectrum showed the existence of a variety of functionalities on the surfaces of both the RGTW and thermally treated samples. BET analysis showed the presence of mesopores and macropores in the case of RGTW and micropores in the case of thermally processed adsorbents. Equilibrium studies indicated that the Freundlich isotherm best described the adsorption of MB onto both adsorbents. The maximum adsorption capacity () was found to be 68.28 and 69.01 mg/g for RGTW and TTGTW500, respectively, implying the superior capacity of TTGTW500 in removing MB. Adsorption of MB was found to proceed via chemisorption (RGTW) and physisorption (TTGTW500), as indicated by the Dubinin-Radushkevich (D-R) isotherm. A pseudo-second order (PSO) model best demonstrated the kinetics of the MB adsorption onto both adsorbents.
采用绿茶废料(GTW)实现了对受污染水样中亚甲基蓝(MB)的吸附去除。研究了原始(RGTW)和热处理废物(TTGTW250-TTGTW500)对 MB 的吸附作用。根据 MB 的去除百分比(%R)和吸附容量(,mg/g)评估了所测试吸附剂的性能。采用全因子设计(FFD)优化了 RGTW 和 TTGTW500 对 MB 的吸附作用。研究了四个因素:pH 值、吸附剂剂量(AD)、染料浓度(DC)和接触时间(CT)。使用 RGTW 和 TTGTW500 分别获得了 96.58%和 98.07%的%R 值。使用 FT-IR 和拉曼分析研究了制备的吸附剂的表面,IR 光谱表明 RGTW 和热处理样品表面存在多种官能团。BET 分析表明,在 RGTW 的情况下存在中孔和大孔,而在热处理吸附剂的情况下存在微孔。平衡研究表明,Freundlich 等温线最能描述 MB 对两种吸附剂的吸附作用。发现 RGTW 和 TTGTW500 的最大吸附容量()分别为 68.28 和 69.01 mg/g,这表明 TTGTW500 具有更强的去除 MB 的能力。根据 Dubinin-Radushkevich(D-R)等温线,MB 的吸附是通过化学吸附(RGTW)和物理吸附(TTGTW500)进行的。准二级(PSO)模型最能说明 MB 吸附到两种吸附剂上的动力学。