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应用硅藻土吸附水溶液中的 Pb、Cu、Cd 和 Zn:动力学、热力学研究及响应面法(RSM)的应用。

Application of diatomite for sorption of Pb, Cu, Cd and Zn from aqueous solutions: kinetic, thermodynamic studies and application of response surface methodology (RSM).

机构信息

Department of Soil Science, Faculty of Agriculture, Urmia University, Urmia, Iran.

Department of Chemistry, Faculty of Science, Urmia University, Urmia, Iran.

出版信息

Water Environ Res. 2021 May;93(5):714-726. doi: 10.1002/wer.1377. Epub 2020 Dec 27.

Abstract

Contamination of water and soil with toxic metals is a serious environmental issue. To study the Pb, Cu, Cd, and Zn sorption behavior by diatomite, batch experiments were carried out with increasing levels of initial concentration (0-200 mg/L) under different contact times (0-360 min) and temperatures (283, 293, 303, and 313 K). The effects of concentration (0-200 mg/L), pH (3-6), and ionic strength (0.01-0.06 mol/L) on the sorption were modeled using response surface methodology (RSM). Results showed that adsorption data were well-fitted by the Langmuir equation. The sorption of metals intensified by increasing initial concentration and pH but ionic strength had inverse effect. High value for R (0.99) and adjusted R (0.99) showed that the removal of ions can be described by response surface method. One-way ANOVA showed (p-value < 0.0001) that quadratic model is the best model for determining the interaction of variables. The values of the sorption energy parameter from Dubinin-Radushkevich model (E < 8 kJ K  mol ) and negative values of ∆G showed that the sorption of the metals was physical and spontaneous. The positive values of enthalpy (ΔH) indicated that the sorption reaction of metals was endothermic at 283-313 K. PRACTITIONER POINTS: Applications of diatomite increased the sorption of Pb, Cd, Zn, and Cu from aqueous solutions. Diatomite, as low-cost adsorbent, had significant potential to sorption of ions. The sorption of heavy metals by adsorbent intensified by increasing initial concentration and pH but ionic strength had inverse effect. High value for R (0.99) and adj-R (0.99) showed that removal of metals can be described by response surface method (RSM) and the initial concentration of metal was the most significant factor.

摘要

水和土壤受到有毒金属污染是一个严重的环境问题。为了研究硅藻土对 Pb、Cu、Cd 和 Zn 的吸附行为,在不同的接触时间(0-360 分钟)和温度(283、293、303 和 313 K)下,进行了批次实验,初始浓度(0-200mg/L)逐渐增加。采用响应面法(RSM)对浓度(0-200mg/L)、pH 值(3-6)和离子强度(0.01-0.06mol/L)对吸附的影响进行了建模。结果表明,吸附数据符合朗缪尔方程。吸附金属的强度随初始浓度和 pH 值的增加而增强,但离子强度则相反。高 R 值(0.99)和调整 R 值(0.99)表明,响应面法可用于描述离子的去除。单因素方差分析表明(p 值<0.0001),二次模型是确定变量相互作用的最佳模型。从杜宾-拉什科夫模型(E<8kJ K mol )得到的吸附能参数值和负的 ∆G 值表明,金属的吸附是物理和自发的。焓(ΔH)的正值表明,金属的吸附反应在 283-313 K 时是吸热的。实践者要点:硅藻土的应用增加了 Pb、Cd、Zn 和 Cu 从水溶液中的吸附。作为一种低成本的吸附剂,硅藻土具有很大的离子吸附潜力。吸附剂对重金属的吸附随着初始浓度和 pH 值的增加而增强,但离子强度则相反。高 R 值(0.99)和调整 R 值(0.99)表明,响应面法(RSM)可以描述金属的去除,初始金属浓度是最重要的因素。

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