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新型 Ca-海藻酸钠-生物炭复合材料对铜和锌的吸附作用,该生物炭由花生壳热解制备而成。

Adsorption of copper, and zinc onto novel Ca-alginate-biochar composite prepared by biochars produced from pyrolysis of groundnut husk.

机构信息

Department of Chemical Engineering, Faculty of Engineering, Ondokuz Mayıs University, Samsun, Turkey.

出版信息

Int J Phytoremediation. 2022;24(13):1350-1363. doi: 10.1080/15226514.2022.2025759. Epub 2022 Mar 2.

Abstract

Alginate-based composites have been studied for adsorption technology as adsorbents due to their biocompatible, non-toxic, and cost-effective properties. In this work, groundnut husk biochar (GHB), calcium alginate (CA), and groundnut husk biochar/calcium alginate novel composites (%10) (CA-GHB1) and (% 20) (CA-GHB2) are synthesized and characterized using BET, SEM, EDX, FTIR, TGA. Adsorption performance is compared among GHB, CA, CA-GHB1, and CA-GHB2 composites to remove Cu(II), Zn (II) from aqueous solutions. Factors affecting adsorption, as well as kinetics, equilibrium, and thermal properties of adsorption, were studied using conventional equations. Adsorption isotherm models were used for two and three-parameter isotherm models to understand the interaction between the adsorbent and the adsorbate. 24.3, 44.6, 45.6, and 40.73 mg g for removal of Cu(II) on GHB, CA, CA-GHB1, and CA-GHB2 and 32.16, 25.07, 36.09, and 40.55 mg g for removal of Zn(II) on GHB, CA, CA-GHB1, and CA-GHB2 found maximum adsorption capacity (Qm) calculated from Langmuir isotherm. According to D-R isotherm data, the adsorption process is classified as physical adsorption. Thermodynamically, the adsorption process is non-spontaneous and endothermic.

摘要

基于海藻酸盐的复合材料因其具有生物相容性、无毒和成本效益高的特点,已被研究用于吸附技术作为吸附剂。在这项工作中,制备了花生壳生物炭(GHB)、海藻酸钠(CA)以及花生壳生物炭/海藻酸钠新型复合材料(10%)(CA-GHB1)和(20%)(CA-GHB2),并通过 BET、SEM、EDX、FTIR、TGA 进行了表征。比较了 GHB、CA、CA-GHB1 和 CA-GHB2 复合材料在从水溶液中去除 Cu(II)、Zn(II)方面的吸附性能。通过常规方程研究了影响吸附的因素以及吸附的动力学、平衡和热特性。使用两种和三种参数的吸附等温线模型来理解吸附剂和吸附质之间的相互作用。对于去除 Cu(II),GHB、CA、CA-GHB1 和 CA-GHB2 的最大吸附容量(Qm)分别为 24.3、44.6、45.6 和 40.73 mg g,对于去除 Zn(II),GHB、CA、CA-GHB1 和 CA-GHB2 的最大吸附容量(Qm)分别为 32.16、25.07、36.09 和 40.55 mg g,这些值是根据 Langmuir 等温线计算得出的。根据 D-R 等温线数据,吸附过程被归类为物理吸附。从热力学角度来看,吸附过程是非自发的和吸热的。

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