Sustainable Adsorbent: Activated Carbon From Waste Styrofoam for Efficient Aluminum Removal.

IF 2 3区 工程技术 Q2 ANATOMY & MORPHOLOGY Microscopy Research and Technique Pub Date : 2024-12-11 DOI:10.1002/jemt.24770
Yu Shuang Ren, Qi He, Wanying Liao, Yuxuan Liao, Zhenchuan Zhan, Jiajun Xu, Thiago Machado da Silva Acioly, Diego Carvalho Viana, Muhammad Ilyas
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Abstract

This paper reports on batch investigations utilizing activated carbon (AC) made from waste Styrofoam to adsorb aluminum (Al3+) from aqueous solutions. The AC morphology and structure were examined using Fourier-transform infrared spectroscopy, scanning electron microscopy, and surface area analysis. The factors affecting the performance of adsorption were thoroughly examined. Al3+ removal was found to be maximal, that is, 98.65% using 0.2 g of AC at 90 min in a solution of pH 5 maintained at 60°C. Using a flame-mode atomic absorption spectrophotometer (AAnalyst 700, PerkinElmer, USA), the quantity of Al3+ in the adsorption solution was measured. For the purpose of studying adsorption, the pseudo-first-order, pseudo-second-order, Langmuir, Freundlich, Temkin, Jovanovich, and Harkins-Jura isotherms were analyzed. The kinetic study shows that the adsorption of Al3+ onto Al3+ is controlled by pseudo-second-order kinetics. It was observed that among these models, the Langmuir model showed the most favorable fit for the equilibrium data on the removal of Al3+ onto AC, with a strong fit (R2 = 0.995). The values of thermodynamic parameters such as entropy (ΔS°), Gibbs free energy (ΔG°), and enthalpy (ΔH°) show that the adsorption process is spontaneous and exothermic in nature. In Al3+ solutions with low concentrations, the AC exhibited a high adsorption rate. In addition, a check of the error function was performed. To find out if the AC could be utilized again after the adsorption procedure, desorption investigations were carried out. Due to its high adsorption capacity (> 98%) and porous structure, the prepared AC shows significant promise as an alternative adsorbent for Al3+. These findings demonstrate that the AC is both effective and efficient in removing Al3+ from wastewater.

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可持续吸附剂:活性炭从废聚苯乙烯泡沫塑料高效铝去除。
本文报道了利用废泡沫聚苯乙烯制备的活性炭(AC)吸附水溶液中的铝(Al3+)的批量研究。采用傅里叶变换红外光谱、扫描电镜和表面积分析等方法对活性炭的形貌和结构进行了表征。研究了影响吸附性能的因素。Al3+去除率最高,在pH为5的60℃溶液中,0.2 g AC在90 min下去除率达到98.65%。采用火焰模式原子吸收分光光度计(AAnalyst 700, PerkinElmer, USA),测定吸附溶液中Al3+的含量。为了研究吸附,分析了拟一阶、拟二阶、Langmuir、Freundlich、Temkin、Jovanovich和Harkins-Jura等温线。动力学研究表明,Al3+在Al3+上的吸附受准二级动力学控制。结果表明,Langmuir模型对AC上Al3+去除的平衡数据拟合效果最好,拟合程度较好(R2 = 0.995)。热力学参数如熵(ΔS°)、吉布斯自由能(ΔG°)和焓(ΔH°)的值表明吸附过程是自发的、放热的。在低浓度Al3+溶液中,AC表现出较高的吸附速率。此外,还对误差函数进行了检查。为了确定活性炭在吸附后是否可以再次利用,进行了解吸实验。由于其高吸附容量(bbb98 %)和多孔结构,所制备的AC作为Al3+的替代吸附剂具有重要的前景。实验结果表明,活性炭对废水中Al3+的去除效果良好。
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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来源期刊
Microscopy Research and Technique
Microscopy Research and Technique 医学-解剖学与形态学
CiteScore
5.30
自引率
20.00%
发文量
233
审稿时长
4.7 months
期刊介绍: Microscopy Research and Technique (MRT) publishes articles on all aspects of advanced microscopy original architecture and methodologies with applications in the biological, clinical, chemical, and materials sciences. Original basic and applied research as well as technical papers dealing with the various subsets of microscopy are encouraged. MRT is the right form for those developing new microscopy methods or using the microscope to answer key questions in basic and applied research.
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