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用于增强从水溶液中吸附硼的功能化生物炭复合材料的研发。

Development of functionalized biochar composites for enhanced boron adsorption from aqueous solutions.

作者信息

Amirshekari Sanaz, Shafiei Saeid, Zahedifar Mahboobeh, Shekofteh Hossein

机构信息

Department of Soil Science, Faculty of Agriculture, University of Jiroft, Jiroft, 7867161167, Iran.

Department of Chemistry, Faculty of Science, University of Jiroft, Jiroft, 7867161167, Iran.

出版信息

Heliyon. 2025 Jan 9;11(2):e41720. doi: 10.1016/j.heliyon.2025.e41720. eCollection 2025 Jan 30.

Abstract

This study focuses on developing biochar-based adsorbents with high adsorption capacity and rapid adsorption rates for removing boron from aqueous solutions. Hydroxy-enriched biochar composites (BC (carboxylated biochar), BC-PDA (polydopamine loaded biochar), MBC-PDA (polydopamine loaded magnetic biochar), BC-AlOOH (AlOOH loaded biochar), and BC-ZnCl (biochar modified by ZnCl)) were synthesized specifically for boron adsorption to utilize the superior adsorption capacity of biochar. All adsorbents were synthesized using straightforward experimental techniques from date palm cellulosic fibers as promising lignocellulose feedstock and subjected to various characterization methods. Boron adsorption kinetics, isotherms, mechanism, and adsorbent recycling were investigated using batch adsorption experiments. The experimental results showed adsorption capacity values of 14, 20.5, 21.5, 43.2, and 44.2 mg/g for BC, BC-PDA, MBC-PDA, BC-AlOOH, and BC-ZnCl composites at 360 min. The prominent adsorption capacity of the synthesized adsorbents was related to the abundant existence of -OH functional groups on the BC adsorbent surface and the abundance of pores widely distributed throughout the surface, facilitating the chemical and physical adsorption of boron. The synthesized adsorbents exhibited a promoted boron adsorption capacity and ease of recovery and reusability.

摘要

本研究致力于开发具有高吸附容量和快速吸附速率的生物炭基吸附剂,用于从水溶液中去除硼。专门合成了富含羟基的生物炭复合材料(BC(羧化生物炭)、BC-PDA(负载聚多巴胺的生物炭)、MBC-PDA(负载聚多巴胺的磁性生物炭)、BC-AlOOH(负载AlOOH的生物炭)和BC-ZnCl(经ZnCl改性的生物炭))以用于硼吸附,以利用生物炭优异的吸附容量。所有吸附剂均采用简单的实验技术,以枣椰树纤维素纤维作为有前景的木质纤维素原料合成,并采用各种表征方法进行表征。通过批量吸附实验研究了硼的吸附动力学、等温线、吸附机理和吸附剂的循环利用。实验结果表明,在360分钟时,BC、BC-PDA、MBC-PDA、BC-AlOOH和BC-ZnCl复合材料的吸附容量分别为14、20.5、21.5、43.2和44.2 mg/g。合成吸附剂突出的吸附容量与BC吸附剂表面大量存在的-OH官能团以及整个表面广泛分布的丰富孔隙有关,这有利于硼的化学和物理吸附。合成的吸附剂表现出提高的硼吸附容量以及易于回收和重复使用的特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a46/11773028/51369cb6adae/ga1.jpg

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