| Literature DB >> 33887624 |
Tingting Yang1, Yingming Xu2, Qingqing Huang1, Yuebing Sun1, Xuefeng Liang1, Lin Wang1, Xu Qin1, Lijie Zhao1.
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 CO32-, Fe-O, Zn-O, and oxygen-containing functional groups on the Fe/Zn-BC surfaces precipitated CdCO3, Cd(OH)2, 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.Entities:
Keywords: Adsorption mechanism; Cadmium removal; Complexation; Precipitation
Year: 2021 PMID: 33887624 DOI: 10.1016/j.biortech.2021.125078
Source DB: PubMed Journal: Bioresour Technol ISSN: 0960-8524 Impact factor: 9.642