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微/纳米 MIL-88A(Fe、Al、Fe-Al)/壳聚糖复合海绵高效吸附刚果红:制备、表征及吸附机理。

Efficient adsorption of Congo red by micro/nano MIL-88A (Fe, Al, Fe-Al)/chitosan composite sponge: Preparation, characterization, and adsorption mechanism.

机构信息

College of Mechanical and Electrical Engineering, Qingdao University, 308 Ningxia Road, Qingdao 266071, China.

College of Mechanical and Electrical Engineering, Qingdao University, 308 Ningxia Road, Qingdao 266071, China; State Key Laboratory of Bio-polysaccharide Fiber Forming and Eco-Textile, Qingdao University, 308 Ningxia Road, Qingdao 266071, China.

出版信息

Int J Biol Macromol. 2023 Jun 1;239:124157. doi: 10.1016/j.ijbiomac.2023.124157. Epub 2023 Mar 24.

DOI:10.1016/j.ijbiomac.2023.124157
PMID:36965569
Abstract

MIL-88A crystals with three different metal ligands (Fe, Al, FeAl) were prepared by hydrothermal method for the first time. The three materials' crystal structure and surface morphology are different, leading to different adsorption properties of Congo red (CR). The maximum adsorption capacities of MIL-88A (Fe), MIL-88A (FeAl), and MIL-88A (Al) are 607.7 mg · g, 536.4 mg · g, and 512.1 mg · g respectively. In addition, MIL-88A was combined with chitosan (CS) respectively, and MIL-88A/CS composite sponge was prepared by the freeze-drying method, which not only solved the defect that MIL-88A powder was difficult to recover but also further improved the removal ability of CR by the adsorbent. The maximum adsorption capacities of MIL-88A (FeAl)/CS, MIL-88A (Fe)/CS, MIL-88A (Al)/CS, and CS are 1312 mg · g, 1056 mg · g, 996.7 mg · g, and 769.6 mg · g, respectively. The structure and physicochemical properties of the materials were analyzed by SEM, FTIR, XRD, TGA, BET, and Zeta. The adsorption process of CR follows pseudo-second-order kinetics and Langmuir, Sips isotherm model. Combined with thermodynamic parameters, the adsorption behavior was described as endothermic monomolecular chemical adsorption. The removal of CR is attributed to electrostatic interactions, hydrogen bonding, metal coordination effects, and size-matching effects.

摘要

MIL-88A 晶体分别与三种不同的金属配体(Fe、Al、FeAl)通过水热法首次制备。三种材料的晶体结构和表面形态不同,导致刚果红(CR)的吸附性能不同。MIL-88A(Fe)、MIL-88A(FeAl)和 MIL-88A(Al)的最大吸附容量分别为 607.7、536.4 和 512.1 mg·g-1。此外,MIL-88A 分别与壳聚糖(CS)结合,通过冷冻干燥法制备 MIL-88A/CS 复合海绵,不仅解决了 MIL-88A 粉末难以回收的缺陷,而且进一步提高了吸附剂对 CR 的去除能力。MIL-88A(FeAl)/CS、MIL-88A(Fe)/CS、MIL-88A(Al)/CS 和 CS 的最大吸附容量分别为 1312、1056、996.7 和 769.6 mg·g-1。通过 SEM、FTIR、XRD、TGA、BET 和 Zeta 对材料的结构和理化性质进行了分析。CR 的吸附过程遵循准二级动力学和 Langmuir、Sips 等温模型。结合热力学参数,描述了吸附行为为吸热单分子化学吸附。CR 的去除归因于静电相互作用、氢键、金属配位作用和尺寸匹配作用。

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