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利用万寿菊超临界萃取残渣制备的活性炭去除水溶液中的有机染料

Removal of Organic Dyes from Aqueous Solutions by Activated Carbons Prepared from Residue of Supercritical Extraction of Marigold.

作者信息

Bazan-Wozniak Aleksandra, Wolski Robert, Paluch Dorota, Nowicki Piotr, Pietrzak Robert

机构信息

Faculty of Chemistry, Adam Mickiewicz University in Poznań, Uniwersytetu Poznańskiego 8, 61-614 Poznań, Poland.

出版信息

Materials (Basel). 2022 May 20;15(10):3655. doi: 10.3390/ma15103655.

Abstract

In the present work, we reported on the efficiency of the removal of organic dyes by adsorption on activated carbons prepared from the residue of supercritical extraction of marigold. The performance of adsorbents prepared was tested towards methyl red, methylene blue, malachite green, and crystal violet at room temperature. The effects of carbonization (500 and 700 °C) and activation (700 and 800 °C) temperatures, textural parameters, and acid-base character of the adsorbent surface on the sorption properties of the activated carbons were established. Activated carbons are characterized by low developed specific surface area, from 2 to 206 m/g, and have a basic character of the surface (pH of carbons water extracts ranging from 10.4 to 11.2). Equilibrium adsorption isotherms were investigated. The equilibrium data were analyzed in the Langmuir, Freundlich, and Temkin models. The adsorption capacities of activated carbons studied varied from 47.62 to 102.43 mg/g towards methyl red, 53.14 to 139.72 mg/g towards methyl red, 425.46 to 622.80 towards malachite green and 155.91 to 293.75 mg/g towards crystal violet, from their water solutions. Kinetics of the adsorption of the organic dyes studied were found to be described by the pseudo-second-order model. It was proven that through the physical activation of the residue of supercritical extraction of marigold, it is possible to obtain carbonaceous materials of very high adsorption capacity towards organic pollutants.

摘要

在本研究中,我们报道了用从万寿菊超临界萃取残渣制备的活性炭吸附去除有机染料的效率。在室温下测试了所制备吸附剂对甲基红、亚甲基蓝、孔雀石绿和结晶紫的性能。确定了碳化温度(500和700℃)和活化温度(700和800℃)、结构参数以及吸附剂表面酸碱性质对活性炭吸附性能的影响。活性炭的特点是比表面积低,为2至206 m²/g,且表面具有碱性(碳的水提取物pH值在10.4至11.2之间)。研究了平衡吸附等温线。在朗缪尔、弗伦德利希和坦金模型中分析了平衡数据。所研究的活性炭对甲基红的吸附容量在47.62至102.43 mg/g之间,对亚甲基蓝的吸附容量在53.14至139.72 mg/g之间,对孔雀石绿的吸附容量在425.46至622.80 mg/g之间,对结晶紫的吸附容量在155.91至293.75 mg/g之间,均来自其水溶液。研究发现,所研究的有机染料的吸附动力学可用伪二级模型描述。事实证明,通过对万寿菊超临界萃取残渣进行物理活化,可以获得对有机污染物具有非常高吸附容量的碳质材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d529/9143942/b86bfe63cdbb/materials-15-03655-g001.jpg

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