School of Earth and Environment, Anhui University of Science and Technology, Huainan, People's Republic of China.
Taizhou Institute of Zhejiang University, Zhejiang University, Taizhou, People's Republic of China.
Environ Technol. 2024 Sep;45(21):4376-4387. doi: 10.1080/09593330.2023.2251655. Epub 2023 Aug 29.
Arsenic (As) pollution in water poses a significant threat to the ecological environment and human health. Meanwhile, the resource utilisation of coal gangue is of utmost importance in ecologically sustainable development. Thus, the FeOOH@coal gangue composite (FeOOH@CG) was synthesised for As(V) adsorption in this study. The results showed that α-FeOOH, β-FeOOH and Schwertmannite loaded on the surface of FeOOH@CG. Moreover, the adsorption behaviour of As(V) by FeOOH@CG was investigated under different reaction conditions, such as pH, contact time, initial concentration and co-existing anions. The optimum adsorption conditions were as follows: initial As(V) concentration of 60 mg/L, pH of 3.0 and adsorption time of 180-240 h. The adsorption capacity of FeOOH@CG for As(V) was pH-dependent and the maximum adsorption capacity was 185.94 mg/g. The presence of anions (, and ) decreased the adsorption efficiency of FeOOH@CG for As(V). The adsorption process of FeOOH@CG for As(V) could be well-described by the pseudo-second-order model and Langmuir model, indicating that the adsorption process mainly depended on chemical adsorption. The thermodynamic analysis suggested that the adsorption was a spontaneous and endothermic process. In addition, according to the analyses of XRD, FTIR and XPS, the dominant mechanisms of As(V) adsorption by FeOOH@CG were electrostatic attraction, complexation and precipitation. In conclusion, FeOOH@CG has great potential as an efficient and environmentally friendly adsorbent for As(V) adsorption from aqueous solution.
砷(As)污染对生态环境和人类健康构成重大威胁。同时,煤矸石的资源利用对生态可持续发展至关重要。因此,本研究合成了 FeOOH@coal gangue 复合材料(FeOOH@CG)用于吸附 As(V)。结果表明,α-FeOOH、β-FeOOH 和 Schwertmannite 负载在 FeOOH@CG 的表面。此外,还研究了在不同反应条件下(如 pH、接触时间、初始浓度和共存阴离子),FeOOH@CG 对 As(V)的吸附行为。最佳吸附条件如下:初始 As(V)浓度 60mg/L、pH 值 3.0、吸附时间 180-240h。FeOOH@CG 对 As(V)的吸附容量随 pH 值的变化而变化,最大吸附容量为 185.94mg/g。阴离子(、和)的存在降低了 FeOOH@CG 对 As(V)的吸附效率。FeOOH@CG 对 As(V)的吸附过程可用准二级动力学模型和 Langmuir 模型很好地描述,表明吸附过程主要依赖于化学吸附。热力学分析表明,吸附是一个自发和吸热的过程。此外,根据 XRD、FTIR 和 XPS 的分析,FeOOH@CG 吸附 As(V)的主要机制是静电吸引、络合和沉淀。综上所述,FeOOH@CG 作为一种从水溶液中高效、环保吸附 As(V)的吸附剂具有很大的潜力。