Chitosan‐Modified Magnetic Biochar from Apricot Kernel Cake for Efficient Removal of Pb (II) and Cd (II) from Wastewater

生物炭 吸附 化学 物理吸附 水溶液中的金属离子 水溶液 废水 金属 核化学 饱和(图论) 磁选 朗缪尔吸附模型 分析化学(期刊) 朗缪尔 无机化学 工业废水处理 化学工程 顺磁性 离子 单层 磁性纳米粒子 活性炭 电化学 棕榈仁 污水处理 木炭 磁化
作者
Rzgar Kareem,Abbas Afkhami,Kosar Hikmat Hama Aziz
出处
期刊:ChemistrySelect [Wiley]
卷期号:10 (38) 被引量:10
标识
DOI:10.1002/slct.202503708
摘要

Abstract This study explored the potential of utilizing chitosan‐enhanced magnetic biochar produced from apricot kernel cake (CMBA) to remove heavy metals from water‐based solutions. The synthesized CMBA's characteristics as an effective adsorbent for Pb 2 ⁺ and Cd 2 ⁺ were evaluated based on data analysis. The study evaluated various physicochemical modifications, such as surface morphology, porosity, specific surface area, chemical composition, valence states, and magnetic properties, to assess the composite's effectiveness for removing heavy metals from wastewater. The adsorption performance of the magnetic biochar (MBA) was significantly enhanced by chitosan doping. The saturation magnetization of CMBA was 20.94 emu/g, indicating paramagnetic properties. Furthermore, the facile magnetic recovery of CMBA from the aqueous solution after adsorption was confirmed using an external magnetic field. The kinetic characteristics of heavy metal ions on CMBA were determined to be a monolayer physisorption process, as confirmed by Langmuir analysis. The determined maximum adsorption capacities for Pb 2+ and Cd 2+ were 150.9 and 149.3 mg/g, respectively. The electrochemical method was employed to quantify residual metal ions after adsorption, with calibration curves established individually and simultaneously for accuracy. The CMBA biochar with partial chitosan channels shows strong potential for wastewater treatment and broader separation applications.
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