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壳聚糖@活性炭复合材料在 EmimAc 中的制备及其对水溶液中 Cd(II)的吸附:实验、优化和 DFT 研究。

Fabrication of chitosan@activated carbon composites in EmimAc for Cd(II) adsorption from aqueous solution: Experimental, optimization and DFT study.

机构信息

Green Analytical Chemistry Laboratory, School of Chemical Sciences, Universiti Sains Malaysia, 11800 Minden, Pulau Pinang, Malaysia; Department of Chemistry and Industrial Chemistry, Kwara State University, Malete, P.M.B 1530 Ilorin, Nigeria.

Chemistry Section, School of Distance Education, Universiti Sains Malaysia, 11800 Minden, Pulau Pinang, Malaysia.

出版信息

Int J Biol Macromol. 2023 Jul 1;242(Pt 2):124798. doi: 10.1016/j.ijbiomac.2023.124798. Epub 2023 May 11.

Abstract

Adsorption efficiency of a duo-material blend featuring the fabrication of modified chitosan adsorbents (powder (C-emimAc), bead (CB-emimAc) and sponge (CS-emimAc)) for the removal of Cd(II) from aqueous solution was investigated. The chitosan@activated carbon (Ch/AC) blend was developed in a green ionic solvent, 1-ethyl-3-methyl imidazolium acetate (EmimAc) and its characteristics was examined using FTIR, SEM, EDX, BET and TGA. The possible mechanism of interaction between the composites and Cd(II) was also predicted using the density functional theory (DFT) analysis. The interactions of various blend forms (C-emimAc, CB-emimAc and CS-emimAc) with Cd(II) gave better adsorption at pH 6. The composites also present excellent chemical stability in both acidic and basic conditions. The monolayer adsorption capacities obtained (under the condition 20 mg/L [Cd], adsorbent dosage 5 mg, contact time 1 h) for the CB-emimAc (84.75 mg/g) > C-emimAc (72.99 mg/g) > CS-emimAc (55.25 mg/g), as this was supported by their order of increasing BET surface area (CB-emimAc (120.1 m/g) > C-emimAc (67.4 m/g) > CS-emimAc (35.3 m/g)). The feasible adsorption interactions between Cd(II) and Ch/AC occurs through the O-H and N-H groups of the composites, as supported by DFT analysis in which an electrostatic interactions was predicted as the dominant force. The interaction energy (-1309.35 eV) calculated via DFT shows that the Ch/AC with amino (-NH) and hydroxyl (-OH) groups are more effective with four significant electrostatic interactions with the Cd(II) ion. The various form of Ch/AC composites developed in EmimAc possess good adsorption capacity and stability for the adsorption Cd(II).

摘要

采用制备改性壳聚糖吸附剂(粉末(C-emimAc)、珠状(CB-emimAc)和海绵状(CS-emimAc))的双组分共混物,研究了从水溶液中去除 Cd(II)的吸附效率。壳聚糖@活性炭(Ch/AC)共混物在绿色离子溶剂 1-乙基-3-甲基咪唑乙酸盐(EmimAc)中制备,并使用 FTIR、SEM、EDX、BET 和 TGA 对其特性进行了检查。还使用密度泛函理论(DFT)分析预测了复合材料与 Cd(II)之间可能的相互作用机制。不同共混形式(C-emimAc、CB-emimAc 和 CS-emimAc)与 Cd(II)的相互作用在 pH 6 时表现出更好的吸附效果。在酸性和碱性条件下,复合材料也表现出优异的化学稳定性。在 20mg/L[Cd](吸附剂用量 5mg,接触时间 1h)条件下,CB-emimAc(84.75mg/g)>C-emimAc(72.99mg/g)>CS-emimAc(55.25mg/g)的单层吸附容量得到了很好的证明,这与它们的 BET 比表面积的增加顺序一致(CB-emimAc(120.1m/g)>C-emimAc(67.4m/g)>CS-emimAc(35.3m/g))。DFT 分析表明,Cd(II)与 Ch/AC 之间可行的吸附相互作用是通过复合材料中的 O-H 和 N-H 基团发生的,这支持了静电相互作用是主要作用力的预测。通过 DFT 计算的相互作用能(-1309.35eV)表明,具有氨基(-NH)和羟基(-OH)基团的 Ch/AC 与 Cd(II)离子具有四个显著的静电相互作用,因此更有效。在 EmimAc 中开发的各种形式的 Ch/AC 复合材料具有良好的吸附容量和稳定性,可用于吸附 Cd(II)。

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