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原始磁化橙皮生物炭用于吸附去除柔红霉素的性能:生态结构、动力学及平衡研究

Performance of Pristine Magnetized Orange Peels Biochar Adapted to Adsorptive Removal of Daunorubicin: Eco-Structuring, Kinetics and Equilibrium Studies.

作者信息

El-Shafie Ahmed S, Barah Farahnaz G, Abouseada Maha, El-Azazy Marwa

机构信息

Department of Chemistry and Earth Sciences, College of Arts and Sciences, Qatar University, Doha 2713, Qatar.

出版信息

Nanomaterials (Basel). 2023 Apr 23;13(9):1444. doi: 10.3390/nano13091444.

Abstract

Drugs and pharmaceuticals are an emergent class of aquatic contaminants. The existence of these pollutants in aquatic bodies is currently raising escalating concerns because of their negative impact on the ecosystem. This study investigated the efficacy of two sorbents derived from orange peels (OP) biochar (OPBC) for the removal of the antineoplastic drug daunorubicin (DNB) from pharmaceutical wastewater. The adsorbents included pristine (OPBC) and magnetite (FeO)-impregnated (MAG-OPBC) biochars. Waste-derived materials offer a sustainable and cost-effective solution to wastewater bioremediation. The results showed that impregnation with FeO altered the crystallization degree and increased the surface area from 6.99 m/g in OPBC to 60.76 m/g in the case of MAG-OPBC. Placket-Burman Design (PBD) was employed to conduct batch adsorption experiments. The removal efficiency of MAG-OPBC (98.51%) was higher compared to OPBC (86.46%). DNB adsorption onto OPBC followed the D-R isotherm, compared to the Langmuir isotherm in the case of MAG-OPBC. The maximum adsorption capacity () was 172.43 mg/g for MAG-OPBC and 83.75 mg/g for OPBC. The adsorption kinetics for both sorbents fitted well with the pseudo-second-order (PSO) model. The results indicate that MAG-OPBC is a promising adsorbent for treating pharmaceutical wastewater.

摘要

药物和药品是一类新出现的水体污染物。由于这些污染物对生态系统有负面影响,其在水体中的存在目前正引发越来越多的关注。本研究调查了两种由橙皮衍生的吸附剂——橙皮生物炭(OPBC)对制药废水中抗肿瘤药物柔红霉素(DNB)的去除效果。吸附剂包括原始(OPBC)和负载磁铁矿(FeO)的(MAG - OPBC)生物炭。源自废弃物的材料为废水生物修复提供了一种可持续且具有成本效益的解决方案。结果表明,负载FeO改变了结晶度,并使比表面积从OPBC的6.99 m²/g增加到MAG - OPBC的60.76 m²/g。采用Placket - Burman设计(PBD)进行批量吸附实验。MAG - OPBC的去除效率(98.51%)高于OPBC(86.46%)。DNB在OPBC上的吸附遵循D - R等温线,而在MAG - OPBC的情况下遵循Langmuir等温线。MAG - OPBC的最大吸附容量( )为172.43 mg/g,OPBC为83.75 mg/g。两种吸附剂的吸附动力学都很好地符合准二级(PSO)模型。结果表明,MAG - OPBC是一种有前景的用于处理制药废水的吸附剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db2c/10179814/af4db479daf6/nanomaterials-13-01444-sch001.jpg

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