School of Resources and Environmental Engineering, Hefei University of Technology, 230009 Hefei, PR China.
School of Resources and Environmental Engineering, Hefei University of Technology, 230009 Hefei, PR China.
Sci Total Environ. 2020 Jun 20;722:137822. doi: 10.1016/j.scitotenv.2020.137822. Epub 2020 Mar 9.
Novel amino-modified rice bran biochar/MgFeAlO (RB@MgFeAlO-NH) magnetic composites were synthesized via a simple one-step solvothermal approach and applied for removing toxic Ni(II) from wastewater. The elimination process and sorption performance of Ni(II) on RB@MgFeAlO-NH were analyzed by combining batch experiments and spectral techniques. The sorption isotherms and kinetic data indicated that Ni(II) sorption on RB@MgFeAlO-NH was monolayer and rapid. The experimental results confirmed that the obtained RB@MgFeAlO-NH magnetic composite had high sorption capacity for Ni(II). The maximum sorption capacity of Ni(II) on RB@MgFeAlO-NH was 201.62 mg g. The researches based on the sorption mechanism showed that the ion exchange mechanism accounted for 76.51% of Ni(II) sorption. In addition, the amino, carboxyl and hydroxyl functional groups were also involved in the complexation with Ni(II). In view of its multiple advantages of environmental friendliness, low cost, easy magnetic separation and high sorption capacity, RB@MgFeAlO-NH will be an excellent adsorbent for low-cost and efficient elimination of Ni(II) from aqueous solutions.
通过简单的一步溶剂热法合成了新型氨基改性米糠生物炭/MgFeAlO(RB@MgFeAlO-NH)磁性复合材料,并将其用于去除废水中的有毒 Ni(II)。通过结合批量实验和光谱技术分析了 RB@MgFeAlO-NH 上 Ni(II)的去除过程和吸附性能。吸附等温线和动力学数据表明,Ni(II)在 RB@MgFeAlO-NH 上的吸附是单层且快速的。实验结果证实,所得到的 RB@MgFeAlO-NH 磁性复合材料对 Ni(II)具有高的吸附容量。RB@MgFeAlO-NH 对 Ni(II)的最大吸附容量为 201.62 mg g。基于吸附机制的研究表明,离子交换机制占 Ni(II)吸附的 76.51%。此外,氨基、羧基和羟基官能团也参与了与 Ni(II)的络合。鉴于其环境友好、成本低、易于磁分离和高吸附容量等多种优点,RB@MgFeAlO-NH 将成为一种从水溶液中高效去除 Ni(II)的理想吸附剂。