首页> 外文期刊>International Biodeterioration & Biodegradation >Taguchi L16 orthogonal array optimization for Cd (II) removal using Carpinus betulus tree leaves: adsorption characterization.
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Taguchi L16 orthogonal array optimization for Cd (II) removal using Carpinus betulus tree leaves: adsorption characterization.

机译:Taguchi L 16 正交阵列优化对Car(Carpinus betulus)叶片中镉(II)的去除:吸附特性。

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Taguchi orthogonal design was used for multivariate optimization of Cd(II) removal by Carpinus betulus tree leaves from an aqueous solution in a batch system. Effective factors on adsorption process, such as temperature, amount of sorbent, initial concentration of Cd(II), pH value, and particle size were considered using an L16 orthogonal array design. Taguchi analysis is based on choosing the best run by analyzing signal-to-noise ratio (S/N), whose form depends on the experiment objective. Thus, the removal percentage (R%) and capacity uptake (q) of Cd(II) were transformed into an accurate S/N ratio for a "high is better" response. The best conditions for biosorption of Cd(II) were determined by the Taguchi method and desirability approach as pH=4.8, sorbent dose of 2 g l-1, initial Cd(II) concentration of 140 mg l-1, temperature 25 degrees C, and sorbent size of 0.12-0.17 mm. In addition, metal interactions with sorbent were analysed by FT-IR spectroscopy, SEM, and XRD methods. Potentiometric titration modeling also denotes that the C. betulus tree leaves may be characterized by two kinds of active sites (carboxylic and hydroxyl). A nonlinear regression was applied to fit the experimental data with Langmuir, Freundlich, Dubinin-Radushkevich, and Sips isotherms. As a result, the Sips isotherm showed the best concordance as an equilibrium model. The biosorption process was kinetically fast and followed by a pseudo-second order kinetic model. Thermodynamic investigations showed that the biosorption process was spontaneous and exothermic.
机译:Taguchi正交设计用于从批处理系统中从鹅掌tree树叶中去除镉(II)的多变量优化。使用L 16 正交阵列设计,考虑了影响吸附过程的因素,如温度,吸附剂的量,Cd(II)的初始浓度,pH值和粒径。田口分析的基础是通过分析信噪比(S / N)来选择最佳运行方式,信噪比的形式取决于实验目标。因此,Cd(II)的去除百分率(R%)和容量吸收率(q)转化为准确的S / N比,从而获得了“高为佳”的响应。 Taguchi方法和理想方法确定了Cd(II)的最佳生物吸附条件为pH = 4.8,吸附剂剂量为2 gl -1 ,初始Cd(II)浓度为140 mg l < sup> -1 ,温度25摄氏度,吸附剂尺寸为0.12-0.17毫米。另外,通过FT-IR光谱,SEM和XRD方法分析了金属与吸附剂的相互作用。电位滴定模型还表明,B。betulus树叶可能具有两种活性部位(羧基和羟基)。应用非线性回归以拟合Langmuir,Freundlich,Dubinin-Radushkevich和Sips等温线的实验数据。结果,Sips等温线显示出最佳的一致性作为平衡模型。生物吸附过程在动力学上是快速的,随后是伪二​​级动力学模型。热力学研究表明生物吸附过程是自发的且放热的。

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