Magnetized bentonite modified rice straw biochar: Qualitative and quantitative analysis of Cd(II) adsorption mechanism

被引:0
|
作者
Liu S.-Z. [1 ]
Ding W. [1 ]
Zhang H.-W. [1 ]
Li Z.-S. [1 ]
Tian K.-C. [1 ]
Liu C. [1 ]
Geng Z.-C. [1 ,2 ]
Xu C.-Y. [1 ,2 ]
机构
[1] College of Natural Resources and Environment, Northwest A&F University, Yangling
[2] Key Laboratory of Northwest Plant Nutrition and Agro-Environment in Ministry of Agriculture, PR China, Yangling
关键词
Adsorption mechanism; Bentonite; Biochar; Cadmium pollution; Quantitative analysis;
D O I
10.1016/j.chemosphere.2024.142262
中图分类号
学科分类号
摘要
Industrialization has caused a significant global issue with cadmium (Cd) pollution. In this study, Biochar (Bc), generated through initial pyrolysis of rice straw, underwent thorough mixing with magnetized bentonite clay, followed by activation with KOH and subsequent pyrolysis. Consequently, a magnetized bentonite modified rice straw biochar (Fe3O4@B-Bc) was successfully synthesized for effective treatment and remediation of this problem. Fe3O4@B-Bc not only overcomes the challenges associated with the difficult separation of individual bentonite or biochar from water, but also exhibited a maximum adsorption capacity of Cd(II) up to 241.52 mg g−1. The characterization of Fe3O4@B-Bc revealed that its surface was rich in C, O and Fe functional groups, which enable efficient adsorption. The quantitative calculation of the contribution to the adsorption mechanism indicates that cation exchange and physical adsorption accounted for 65.87% of the total adsorption capacity. In conclusion, Fe3O4@B-Bc can be considered a low-cost and recyclable green adsorbent, with broad potential for treating cadmium-polluted water. © 2024 Elsevier Ltd
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