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用于罗丹明B吸附的椰壳炭制备及机理研究

Coconut Shell Carbon Preparation for Rhodamine B Adsorption and Mechanism Study.

作者信息

Yu Jinrui, Bian Yifan, Wang Rongfeng, Zhou Shiping, Wang Zhongying, Wang Dawei, Li Huijuan

机构信息

Key Laboratory of Efficient Utilization of Forest Biomass Resources in Southwest China, National Forestry and Grassland Administration, Southwest Forestry University, Kunming 650224, China.

出版信息

Molecules. 2024 Sep 9;29(17):4262. doi: 10.3390/molecules29174262.

Abstract

Phosphoric acid is used as a chemical activator to prepare coconut shell carbon (PCSC), and for investigating rhodamine B (RhB) adsorption performance. The optimal conditions for the preparation of PCSC (calcined temperature, phosphoric acid concentration), and the influence of adsorption conditions (concentration, pH, etc.) on RhB and the recovery performance of optimal carbon are investigated. Experimental results show that when the amount of PCSC (600 °C, 2 h) is 0.2 g, the initial RhB concentration is 10 mg/L, pH = 6, and the adsorption time is 30 min, it can have 95.84% RhB adsorption efficiency. Liquid ultraviolet spectroscopy also supports this adsorption performance. Characterization data showed that hydroxyl and ester groups, aromatic structures, and PO existed on the surface of PCSC, and the amount decreased with increasing calcined temperature. PCSC has a BET (N) surface area of 408.59 m/g and has a micropore distribution, EDS-detected P content is 3.91%. SEM showed that the PCSC formed micropores which could better adsorb RhB. The kinetic and thermodynamic analysis of the adsorption of RhB by PCSC showed that the adsorption process was in accord with quasi-secondary kinetic equations and ΔG was between -1.65 and -18.75 kJ/mol. The adsorption was a physical adsorption and a spontaneous endothermic reaction, and the obtained PCSC sorption isotherms were classified as Langmuir-type. The RhB adsorption mechanism on PCSC includes pore diffusion, hydrogen bonding, and π-π conjugation. The PCSC prepared by HPO modification has superior adsorption and recycling performance for RhB, providing a reference for the preparation of other biomass carbon materials for the treatment of dye wastewater.

摘要

磷酸被用作化学活化剂来制备椰壳炭(PCSC),并用于研究罗丹明B(RhB)的吸附性能。研究了制备PCSC的最佳条件(煅烧温度、磷酸浓度),以及吸附条件(浓度、pH等)对RhB的影响和最佳炭的回收性能。实验结果表明,当PCSC(600℃,2h)用量为0.2g,初始RhB浓度为10mg/L,pH = 6,吸附时间为30min时,RhB的吸附效率可达95.84%。液体紫外光谱也支持这种吸附性能。表征数据表明,PCSC表面存在羟基和酯基、芳香结构以及PO,其含量随煅烧温度的升高而降低。PCSC的BET(N)表面积为408.59m²/g,具有微孔分布,EDS检测到的P含量为3.91%。扫描电子显微镜显示PCSC形成了微孔,能够更好地吸附RhB。对PCSC吸附RhB的动力学和热力学分析表明,吸附过程符合准二级动力学方程,ΔG在-1.65至-18.75kJ/mol之间。吸附为物理吸附和自发吸热反应,所得PCSC吸附等温线属于朗缪尔型。PCSC对RhB的吸附机制包括孔扩散、氢键和π-π共轭。通过HPO改性制备的PCSC对RhB具有优异的吸附和循环性能,为制备其他用于处理染料废水的生物质炭材料提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e15/11396976/3c0c17ed83c4/molecules-29-04262-g001.jpg

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