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应用响应面法和人工神经网络制备负载 Fe 的生物炭以增强 Cr(VI)吸附及其物理化学性质和 Cr(VI)吸附特性。

Application of response surface methodology and artificial neural network for the preparation of Fe-loaded biochar for enhanced Cr(VI) adsorption and its physicochemical properties and Cr(VI) adsorption characteristics.

机构信息

Institute for Environment and Energy, Pusan National University, Busan, 46241, Republic of Korea.

Department of Integrated System Engineering, Hankyong National University, Anseong, 17579, Republic of Korea.

出版信息

Environ Sci Pollut Res Int. 2022 Aug;29(40):60852-60866. doi: 10.1007/s11356-022-20009-3. Epub 2022 Apr 18.

DOI:10.1007/s11356-022-20009-3
PMID:35434752
Abstract

In this study, we optimized and explored the effect of the conditions for synthesizing Fe-loaded food waste biochar (Fe@FWB) for Cr(VI) removal using the response surface methodology (RSM) and artificial neural network (ANN). The pyrolysis time, temperature, and Fe concentration were selected as the independent variables, and the Cr(VI) adsorption capacity of Fe@FWB was maximized. RSM analysis showed that the p-values of pyrolysis temperature and Fe concentration were less than 0.05, indicating that those variables were statically significant, while pyrolysis time was less significant due to its high p-value (0.2830). However, the ANN model results showed that the effect of pyrolysis time was more significant on Cr(VI) adsorption capacity than Fe concentration. The optimal conditions, determined by the RSM analysis with a lower sum of squared error than ANN analysis, were used to synthesize the optimized Fe@FWB (Fe@FWB-OPT) for Cr(VI) removal. From the equilibrium model fitting, the Langmuir model showed a better fit than the Freundlich model, while the Redlich-Peterson isotherm model overlapped. The Cr(VI) sorption capacity of Fe@FWB-OPT calculated from the Langmuir model was 377.71 mg/g, high enough to be competitive to other adsorbents. The kinetic Cr(VI) adsorption was well described by the pseudo-second-order and Elovich models. The XPS results showed that Cr adsorbed on the surface of Fe-FWB-OPT was present not only as Cr(VI) but also as Cr(III) by the reduction of Cr(VI). The results of Cr(VI) adsorption by varying the pH indicate that electrostatic attraction is a key adsorption mechanism.

摘要

在这项研究中,我们使用响应面法(RSM)和人工神经网络(ANN)优化并探索了负载铁的食物垃圾生物炭(Fe@FWB)合成条件对 Cr(VI)去除的效果。选择热解时间、温度和 Fe 浓度作为自变量,使 Fe@FWB 的 Cr(VI)吸附容量最大化。RSM 分析表明,热解温度和 Fe 浓度的 p 值均小于 0.05,表明这些变量具有统计学意义,而由于其 p 值(0.2830)较高,热解时间的影响不太显著。然而,ANN 模型结果表明,热解时间对 Cr(VI)吸附容量的影响比 Fe 浓度更为显著。通过 RSM 分析确定的优化条件(其均方误差和小于 ANN 分析)用于合成用于 Cr(VI)去除的优化的 Fe@FWB(Fe@FWB-OPT)。从平衡模型拟合来看,Langmuir 模型比 Freundlich 模型更适合,而 Redlich-Peterson 等距模型则重叠。从 Langmuir 模型计算得出的 Fe@FWB-OPT 的 Cr(VI)吸附容量为 377.71 mg/g,足以与其他吸附剂竞争。准二级和 Elovich 模型很好地描述了 Cr(VI)的动力学吸附。XPS 结果表明,Cr 不仅以 Cr(VI)的形式,而且通过 Cr(VI)的还原以 Cr(III)的形式吸附在 Fe-FWB-OPT 的表面上。通过改变 pH 值进行 Cr(VI)吸附的结果表明,静电吸引是一种关键的吸附机制。

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