College of Chemistry and Chemical Engineering, Chongqing University of Science and Technology, Chongqing, 401331, People's Republic of China.
Environ Sci Pollut Res Int. 2024 Jan;31(3):3800-3814. doi: 10.1007/s11356-023-31341-7. Epub 2023 Dec 14.
Due to the threat to food supply and human health posed by cadmium-contaminated wastewater, a highly effective adsorbent is under necessary development to remove cadmium from wastewater. In this study, four new types of modified biochars with different modifier concentrations were prepared from chicken manure using KFeO as a modifier, and the modified biochar KFBC with the best adsorption effect was obtained through optimal experiments. Various characterization analyses have shown that KFBC has a rough surface structure, abundant pore structure, and a large number of functional groups. Additionally, iron oxides are introduced on the surface of the biochar, which provided a favorable condition for the adsorption of Cd(II) in wastewater. The adsorption performance of Cd(II) on the biochar before and after modification was investigated through batch adsorption experiments. The adsorption kinetic model of KFBC to Cd(II) in solution was in accordance with the quasi-secondary kinetic model, and the adsorption isothermal model was in accordance with the Langmuir model, with a maximum adsorption capacity of 330.06 mg/g, which was 5.15 fold of pristine BC. Meanwhile, the adsorption rate of Cd(II) by KFBC was positively correlated with dosage and pH. Pore adsorption, ion exchange, surface precipitation, interaction with -π electrons, and complexation of oxygen-containing functional groups on the surface were considered as important mechanisms for the removal of Cd(II) by KFBC. According to the results, KFBC is a novel and efficient adsorbent that can be used as a treatment agent for cadmium-contaminated wastewater.
由于含镉废水对食物供应和人类健康造成的威胁,急需开发一种高效的吸附剂来去除废水中的镉。本研究以鸡粪为原料,采用 KFeO 作为改性剂,制备了 4 种不同改性剂浓度的新型改性生物炭,通过优化实验得到了吸附效果最好的改性生物炭 KFBC。各种表征分析表明,KFBC 具有粗糙的表面结构、丰富的孔结构和大量的功能基团。此外,氧化铁被引入生物炭表面,为废水Cd(II)的吸附提供了有利条件。通过批量吸附实验研究了改性前后生物炭对 Cd(II)的吸附性能。KFBC 对溶液中 Cd(II)的吸附动力学模型符合拟二级动力学模型,吸附等温线模型符合朗缪尔模型,最大吸附容量为 330.06 mg/g,是原始 BC 的 5.15 倍。同时,KFBC 对 Cd(II)的吸附速率与剂量和 pH 值呈正相关。认为孔吸附、离子交换、表面沉淀、表面含氧官能团与 -π 电子的相互作用以及络合作用是 KFBC 去除 Cd(II)的重要机制。结果表明,KFBC 是一种新型高效的吸附剂,可作为处理含镉废水的处理剂。