New insights into ball milling effects on MgAl-LDHs exfoliation on biochar support: A case study for cadmium adsorption

吸附 层状双氢氧化物 生物炭 化学工程 球磨机 材料科学 比表面积 复合数 微晶 多孔性 化学 复合材料 冶金 有机化学 催化作用 热解 工程类
作者
Shihao Cui,Ran Zhang,Yutao Peng,Xing Gao,Zhe Li,Beibei Fan,Chung‐Yu Guan,Jingzi Beiyuan,Yaoyu Zhou,Juan Liu,Qing Chen,Jie Sheng,Lili Guo
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:416: 126258-126258 被引量:92
标识
DOI:10.1016/j.jhazmat.2021.126258
摘要

Ball milling (BM) as a solvent-free technology has been widely used to tailor the biochar-based adsorbents with high porosity and well dispersion for enhancing their environmental applications. In this study, the ball-milled layered double hydroxides (LDHs) biochar composite (B-LDHs-BC) was successfully fabricated with BM method for Cd(II) adsorption and the BM effects on the LDHs-BC structure-performance relationships were investigated. The solid-state characterization demonstrated the LDHs were successfully exfoliated by BM on the B-LDHs-BC surface which was identified by the enlarged basal spacing and reduced crystallite size of the LDHs. Although the BET surface area of B-LDHs-BC (226 m2/g) was slightly lower than the ball-milled BC, the B-LDHs-BC had more O-containing functional groups and higher adsorption capacity (119 mg/g). The kinetics experiments indicated that the Cd(II) removal by B-LDHs-BC was through both the physical and chemical adsorption processes, and the liquid membrane diffusion was the rate-controlling step. The positive BM effects mainly induced more abundant acidic functional groups and active adsorption sites, and thus enhanced Cd(II) performance of B-LDHs-BC. This work demonstrated a facile solvent-free method for production of the exfoliated LDHs modified BC composite, and also well illustrated the BM effects which can extend their practical use in environment.
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