Bentonite and Magnetite Filler-Modified Polyurethane Foam in Fixed Bed Column for the Adsorption of Mercury(II) Ions from Aqueous Solution

S. Sarah, A. Adisalamun, D. Darmadi, Suraiya Kamaruzzaman, A. Muslim, S. Saiful
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引用次数: 2

Abstract

This paper proposed adsorbent development by synthesizing polyurethane foam (PUF) using a simple method, mixing polyol with isocyanate and adding fillers of bentonite and magnetite to the PUF matrix. The study's main objective was to produce a PUF-based adsorbent with high reactivity to remove Hg 2+ in wastewater. This bentonite and magnetite filler-modified polyurethane foam (BMPUF) adsorbent was fixed in a bed column for the adsorption of mercury (II) ions from an aqueous solution. The effect of initial Hg 2+ concentration on the removal rate and the effect of contact time on adsorption efficiency was investigated. Langmuir, Freundlich, and BET non-linear models were taken into account to determine the best adsorption isotherm fitting and obtain adsorption capacity, intensity, and pore volume. As a result, it followed the non-linear Freundlich model, and the average adsorption capacity and intensity were 0.466 mg/g and 0.923, respectively. The average BET-based pore volume obtained was 0.782 L/mg. The kinetics study showed that the non-linear pseudo-first-order kinetics model was more suitable for describing the Hg2+ adsorption kinetics. The maximum equilibrium adsorption capacity was 1.770 mg/g with the adsorption rate of 0.0013 min -1 based on the non-linear model. The effect of varying bentonite and magnetite ratio on adsorption isotherm and kinetics was also investigated. Overall, the potential application of BMPUF adsorbent in the adsorption of mercury (II) ions was demonstrated in the current study.
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膨润土和磁铁矿填料改性聚氨酯泡沫固定床柱吸附水溶液中汞离子的研究
本文提出用一种简单的方法合成聚氨酯泡沫(PUF),将多元醇与异氰酸酯混合,在PUF基体中加入膨润土和磁铁矿填料。该研究的主要目的是生产一种具有高反应性的puf基吸附剂,以去除废水中的Hg 2+。将膨润土和磁铁矿填料改性聚氨酯泡沫(BMPUF)吸附剂固定在床柱上,用于吸附水溶液中的汞离子。考察了初始浓度对Hg +去除率的影响以及接触时间对吸附效率的影响。采用Langmuir、Freundlich和BET非线性模型确定最佳吸附等温线拟合,获得吸附容量、强度和孔隙体积。结果表明,吸附量为0.466 mg/g,吸附强度为0.923 mg/g,符合非线性Freundlich模型。得到的平均孔隙体积为0.782 L/mg。动力学研究表明,非线性拟一级动力学模型更适合描述Hg2+吸附动力学。基于非线性模型的最大平衡吸附量为1.770 mg/g,吸附速率为0.0013 min -1。研究了膨润土和磁铁矿配比对吸附等温线和吸附动力学的影响。综上所述,本研究证明了BMPUF吸附剂在吸附汞(II)离子方面的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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审稿时长
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