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利用响应面法优化糠醛渣制备活性炭及其对双酚 S 的吸附应用。

Optimized preparation of activated carbon from furfural residue using response surface methodology and its application for bisphenol S adsorption.

机构信息

School of Chemical Engineering, Zhengzhou University, Zhengzhou 450001, China E-mail:

Henan Key Laboratory of Green Manufacturing of Biobased Chemicals, Puyang 457000, China.

出版信息

Water Sci Technol. 2022 Feb;85(3):811-826. doi: 10.2166/wst.2021.634.

Abstract

Furfural residue (FR), a solid waste, was applied as the precursor to prepare activated carbon by steam activation. The Box-Behnken design (BBD) approach-based response surface methodology (RSM) was utilized to optimize the preparation conditions to evaluate their effects on the performance of activated carbon from furfural residue (FRAC). The optimum preparation conditions of FRAC were found as follows: activation temperature of 922 °C, activation time of 62 min, and the mass ratio of char to HO of 1:4.5, resulting in 1,501.84 mg/g of iodine adsorption capacity and 1,662.41 m/g of specific surface area. The FRAC was characterized and then the adsorption performance of bisphenol S (BPS) on FRAC was investigated. Langmuir and Koble-Corrigan isotherm models were well fitted to the experimental data, and the adsorption kinetics process was perfectly described by the pseudo-second-order model. Thermodynamic parameters showed that the adsorption of BPS was a spontaneous exothermic process. Besides, the regeneration efficiency of FRAC was over 97% after five consecutive cycles. The maximum monolayer adsorption capacity of FRAC for BPS was 3.2848 mmol/g at 298 K, indicating that the FRAC was an excellent adsorbent for the removal of BPS from aqueous solutions.

摘要

糠醛渣(FR)是一种固体废弃物,被用作蒸汽活化制备活性炭的前驱体。利用基于 Box-Behnken 设计(BBD)的响应面法(RSM)来优化制备条件,以评估其对糠醛渣制备的活性炭(FRAC)性能的影响。发现 FRAC 的最佳制备条件为:活化温度 922°C,活化时间 62min,炭与 HO 的质量比 1:4.5,碘吸附容量为 1,501.84mg/g,比表面积为 1,662.41m/g。对 FRAC 进行了表征,并研究了 FRAC 对双酚 S(BPS)的吸附性能。Langmuir 和 Koble-Corrigan 等温模型很好地拟合了实验数据,准二级动力学模型很好地描述了吸附动力学过程。热力学参数表明,BPS 的吸附是一个自发的放热过程。此外,FRAC 在连续五次循环后再生效率超过 97%。在 298K 时,FRAC 对 BPS 的最大单层吸附容量为 3.2848mmol/g,表明 FRAC 是一种从水溶液中去除 BPS 的优良吸附剂。

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