Department of Integrated System Engineering, Hankyong National University, Anseong, 17579, Republic of Korea.
Department of Chemical Engineering, Hankyong National University, Anseong, 17579, Republic of Korea.
Chemosphere. 2020 Aug;252:126475. doi: 10.1016/j.chemosphere.2020.126475. Epub 2020 Mar 14.
Iron-impregnated food waste biochar (Fe-FWB) was synthesized for Se(Ⅵ) removal from aqueous solution. The effect and interactive effects of different parameters including pyrolysis time, temperature, and Fe concentration were explored using response surface methodology (RSM) to enhance conditions to achieve the highest Se(Ⅵ) removal using Fe-FWB. Pyrolysis time was not significant for Se(Ⅵ) adsorption capacity of Fe-FWB, but temperature and Fe concentration were found to be significant. The highest adsorption was achieved at 3.47 h and 495.0 °C with an Fe concentration of 0.44 M. Fe-FWB synthesized under optimum conditions were used to investigate the kinetic, equilibrium, and thermodynamic adsorption of Se(Ⅵ). Se(Ⅵ) adsorption reached equilibrium within 6 h, and both pseudo-second order and pseudo-first order models were suitable for describing kinetic Se(Ⅵ) adsorption. The Freundlich model was found to suitably fit the equilibrium adsorption data than the Langmuir model. The highest adsorption capacity of Fe-FWB for Se(Ⅵ) was 11.7 mg g. Se(Ⅵ) adsorption on Fe-FWB was endothermic and spontaneous. The enthalpy change for Se(Ⅵ) adsorption was 54.4 kJ mol, and the entropy change was negative at 15-35 °C. The increment of solution pH from 3 to 11 decreased the Se(Ⅵ) adsorption from 19.2 to 7.4 mg g. The impact of interfering anions on Se(Ⅵ) adsorption followed the lineup: HCO > HPO > SO > NO. When compared to some adsorbents, the adsorption capacity of Se(Ⅵ) onto Fe-FWB was comparable even at neutral pH and the Fe-FWB was granular. These results indicate that Fe-FWB has prospective application in the removal of Se(Ⅵ) from aqueous solutions.
铁浸渍食物垃圾生物炭(Fe-FWB)被合成用于从水溶液中去除硒(Ⅵ)。使用响应面法(RSM)探讨了不同参数(包括热解时间、温度和 Fe 浓度)的影响和相互作用,以增强条件,使用 Fe-FWB 实现最高的 Se(Ⅵ)去除率。热解时间对 Fe-FWB 的 Se(Ⅵ)吸附容量没有显著影响,但温度和 Fe 浓度则是显著的。在 3.47 h 和 495.0°C 时,Fe 浓度为 0.44 M 时,吸附效果最好。在最佳条件下合成的 Fe-FWB 用于研究 Se(Ⅵ)的动力学、平衡和热力学吸附。Se(Ⅵ)吸附在 6 h 内达到平衡,准二级和准一级动力学模型均适合描述 Se(Ⅵ)的动力学吸附。Freundlich 模型比 Langmuir 模型更适合拟合平衡吸附数据。Fe-FWB 对 Se(Ⅵ)的最大吸附容量为 11.7 mg g。Se(Ⅵ)在 Fe-FWB 上的吸附是吸热和自发的。Se(Ⅵ)吸附的焓变值为 54.4 kJ mol,熵变在 15-35°C 时为负值。溶液 pH 值从 3 增加到 11 时,Se(Ⅵ)的吸附量从 19.2 降至 7.4 mg g。干扰阴离子对 Se(Ⅵ)吸附的影响顺序为:HCO > HPO > SO > NO。与一些吸附剂相比,即使在中性 pH 值下,Fe-FWB 对 Se(Ⅵ)的吸附容量也相当,且 Fe-FWB 呈颗粒状。这些结果表明,Fe-FWB 在从水溶液中去除 Se(Ⅵ)方面具有广阔的应用前景。