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两种新型 Fe-Zn 复合改性生物炭对水中 Cd(II)的吸附特性及去除机制。

Adsorption characteristics and the removal mechanism of two novel Fe-Zn composite modified biochar for Cd(II) in water.

机构信息

Innovation Team of Remediation for Heavy Metal Contaminated Farmlands, Agro-Environmental Protection Institute, Ministry of Agriculture, Tianjin 300191, People's Republic of China; Key Laboratory of Original Environmental Pollution Control, Ministry of Agriculture, Agro-Environmental Protection Institute, Ministry of Agriculture, Tianjin 300191, People's Republic of China.

Innovation Team of Remediation for Heavy Metal Contaminated Farmlands, Agro-Environmental Protection Institute, Ministry of Agriculture, Tianjin 300191, People's Republic of China; Key Laboratory of Original Environmental Pollution Control, Ministry of Agriculture, Agro-Environmental Protection Institute, Ministry of Agriculture, Tianjin 300191, People's Republic of China.

出版信息

Bioresour Technol. 2021 Aug;333:125078. doi: 10.1016/j.biortech.2021.125078. Epub 2021 Mar 31.

Abstract

In this study, adsorbents (Fe/Zn-RBC and Fe/Zn-DBC) for the removal of Cd(II) in water were successfully prepared by iron/zinc composite modified biochar derived from the branches of Robinia pseudoacacia biochar (RBC) and durian shells biochar (DBC). The results revealed that the iron and zinc ions were successfully loaded onto the biochar. The adsorption data of Cd(II) on Fe/Zn-BC conformed to the models of pseudo-second-order kinetic, Langmuir isothermal, and Redlich-Paterson. According to the results of batch experiments, the maximum sorption capacities of Fe/Zn-RBC and Fe/Zn-DBC for Cd(II) were approximately five times and three times higher than RBC and DBC, respectively. As the most dominant adsorption mechanisms, Cd(II) and CO, Fe-O, Zn-O, and oxygen-containing functional groups on the Fe/Zn-BC surfaces precipitated CdCO, Cd(OH), and CdO. Therefore, Fe/Zn-BC is an excellent adsorbent that removes Cd(II) from aqueous solutions, and also can be used in waste resource utilization, which has potential applications prospects.

摘要

在这项研究中,通过铁/锌复合改性生物炭(由刺槐生物炭(RBC)和榴莲壳生物炭(DBC)的树枝衍生而来)成功制备了用于去除水中 Cd(II) 的吸附剂(Fe/Zn-RBC 和 Fe/Zn-DBC)。结果表明,铁和锌离子成功地负载在生物炭上。Cd(II)在 Fe/Zn-BC 上的吸附数据符合准二级动力学、Langmuir 等温线和 Redlich-Paterson 模型。根据批量实验的结果,Fe/Zn-RBC 和 Fe/Zn-DBC 对 Cd(II) 的最大吸附容量分别约为 RBC 和 DBC 的五倍和三倍。作为最主要的吸附机制,Cd(II)与 CO、Fe-O、Zn-O 和 Fe/Zn-BC 表面的含氧官能团共同沉淀出 CdCO、Cd(OH) 和 CdO。因此,Fe/Zn-BC 是一种从水溶液中去除 Cd(II) 的优良吸附剂,也可用于废物资源利用,具有潜在的应用前景。

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