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纳米结构丝光沸石作为金属离子吸附剂:动力学、平衡吸附和金属回收研究。

Nanostructured faujasite zeolite as metal ion adsorbent: kinetics, equilibrium adsorption and metal recovery studies.

机构信息

Department of Chemistry -ICEx, Fluminense Federal University, Rua Desembargador Ellis Hermydio Figueira, 783, 27213-145 Volta Redonda, RJ, Brazil E-mail:

Department of Agribusiness Engineering, Fluminense Federal University, Avenida dos Trabalhadores, 420 Volta Redonda, RJ, Brazil.

出版信息

Water Sci Technol. 2021 Jan;83(2):358-371. doi: 10.2166/wst.2020.580.

Abstract

The hydrothermal synthesis of nano-faujasite has been successfully performed and the effects of some crystallization parameters were investigated, along with the use of this material as a heavy-metal ion adsorbent. X-ray diffraction patterns have shown that the structure of the nano-faujasite is strongly dependent on both the crystallization time and the alkalinity of the synthesis medium. According to N physisorption, X-ray fluorescence, SEM/EDS, and solid state Si and Al NMR data, the produced nano-faujasite consists of a solid with low molar Si/Al ratio (1.7), with high availability of ion exchange sites and high surface area/small particle size, allowing easy diffusion of metal ions to adsorbent active sites. As a consequence, an excellent performance on removal of Cd, Zn and Cu ions was found for this solid. The adsorption capacity followed the order Cd (133 mg·g) > Zn (115 mg·g) > Cu (99 mg·g), which agrees with the order of increasing absolute values of the hydration energy of the metal ions. Kinetic studies and adsorption isotherms showed that the metal ion removal takes place by ion exchange on the monolayer surface of the nano-faujasite. The electrochemical recovery of copper in metallic form exhibited an efficiency of 80.2% after 120 min, which suggests that this process can be adequately implemented for full-scale metal removal.

摘要

纳米丝光沸石的水热合成已经成功进行,并研究了一些结晶参数的影响,同时还将该材料用作重金属离子吸附剂。X 射线衍射图谱表明,纳米丝光沸石的结构强烈依赖于结晶时间和合成介质的碱度。根据 N 物理吸附、X 射线荧光、SEM/EDS 和固态 Si 和 Al NMR 数据,所制备的纳米丝光沸石由具有低摩尔 Si/Al 比(1.7)的固体组成,具有高可用性的离子交换位和高表面积/小颗粒尺寸,允许金属离子容易扩散到吸附剂的活性位。因此,该固体对 Cd、Zn 和 Cu 离子的去除表现出优异的性能。吸附容量的顺序为 Cd(133 mg·g)> Zn(115 mg·g)> Cu(99 mg·g),这与金属离子水合能绝对值增加的顺序一致。动力学研究和吸附等温线表明,金属离子的去除是通过纳米丝光沸石单层表面上的离子交换进行的。电化学回收铜的金属形式的效率为 80.2%,经过 120 分钟,这表明该过程可以充分实施用于大规模的金属去除。

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