Yongxiang HuangChongmin LiuLi‐Tang QinMingqi XieZejing XuYoukuan Yu
A novel pomelo peel biochar/MgFe-layered double hydroxide composite (PPBC/MgFe-LDH) was synthesised using a facile coprecipitation approach and applied to remove cadmium ions (Cd (II)). The adsorption isotherm demonstrated that the Cd (II) adsorption by the PPBC/MgFe-LDH composite fit the Langmuir model well, and the adsorption behaviour was a monolayer chemisorption. The maximum adsorption capacity of Cd (II) was determined to be 448.961 (±12.3) mg·g−1 from the Langmuir model, which was close to the actual experimental adsorption capacity 448.302 (±1.41) mg·g−1. The results also demonstrated that the chemical adsorption controlled the rate of reaction in the Cd (II) adsorption process of PPBC/MgFe-LDH. Piecewise fitting of the intra-particle diffusion model revealed multi-linearity during the adsorption process. Through associative characterization analysis, the adsorption mechanism of Cd (II) of PPBC/MgFe-LDH involved (i) hydroxide formation or carbonate precipitation; (ii) an isomorphic substitution of Fe (III) by Cd (II); (iii) surface complexation of Cd (II) by functional groups (-OH); and (iv) electrostatic attraction. The PPBC/MgFe-LDH composite demonstrated great potential for removing Cd (II) from wastewater, with the advantages of facile synthesis and excellent adsorption capacity.
Van‐Phuc DinhDuy‐Khoi NguyenThi‐Thuy LuuNguyễn Quang HưngLuu Anh TuyenDiep Dinh PhongHoang Anh Tuan KietHoang Anh Tuan KietTu Thi Phuong NguyenTran Dong XuanPhạm Thị HuếNguyen Thi Ngoc Hue
Muhammad Tahir AminA. A. AlazbaMuhammad Shafiq
Aldes LesbaniRisfidian MohadiAmri AmriRezonsi RezonsiNur AhmadAlfan WijayaNeza Rahayu PalapaErni Salasia FitriTarmizi Taher
Baoyuan HuangPanfeng TuJunjie LiangXiaoqing ZhuLansheng DengZhenxing HuLifang Deng
Amri AmriRezonsi RezonsiNur AhmadTarmizi TaherNeza Rahayu PalapaRisfidian MohadiAldes Lesbani