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碳化过程中氮气流对丝胶蛋白衍生碳吸附恩诺沙星、亚甲蓝和磷脂的影响。

The Effects of Nitrogen Flow during Carbonization on Enrofloxacin, Methylene Blue, and Phospholipids Adsorption by Silk Sericin-Derived Carbon.

作者信息

Zhang Xiaoning, Hu Hongmei, Huang Can, Yang Haoping, Chen Kewei, Wu Jialong, Huang Qiyang, Ju Fucheng

机构信息

State Key Laboratory of Resource Insects, College of Sericulture, Textile and Biomass Sciences, Southwest University, Chongqing 400715, China.

Key Laboratory of Sustainable Utilization of Technology Research for Fisheries Resources of Zhejiang Province, Zhejiang Marine Fisheries Research Institute, Zhoushan 316021, China.

出版信息

Langmuir. 2025 Jul 1;41(25):16490-16499. doi: 10.1021/acs.langmuir.5c01868. Epub 2025 Jun 18.

Abstract

The effect of nitrogen flow during carbonization on bioderived carbon's adsorption performance has not been thoroughly investigated. To fill the gap, the adsorption behavior of silk sericin-based carbon prepared under three different nitrogen flow conditions: (i) without nitrogen flow, (ii) with continuous nitrogen flow, and (iii) with nitrogen flow ceased after heating to 150 °C, were evaluated. In aqueous environments, the CS prepared without nitrogen flow during carbonization exhibited the largest specific surface area and the highest adsorption capacities for methylene blue and enrofloxacin. In contrast, in oil-phase environments, the CS-N─prepared by ceasing nitrogen flow after heating to 150 °C during carbonization and containing abundant C═C functional groups─demonstrated superior adsorption performance for phospholipids and polyphenols in idesia polycarpa oil. These findings confirm that the secondary interactions between volatile byproducts and the carbon framework during carbonization play a crucial role in regulating pore development and surface chemistry of silk sericin-based carbon. Besides, the results reveal that the tailored design of silk sericin-based carbon for specific adsorbates is possible by controlling the nitrogen flow during carbonization. This work not only offers new insights into the efficient utilization of waste silk resources but also provides a theoretical foundation for the controlled synthesis of bioderived carbon. Our work represents the first systematic study of how nitrogen flow impacts the adsorption performance of silk sericin-derived carbon.

摘要

碳化过程中氮气流对生物源碳吸附性能的影响尚未得到充分研究。为填补这一空白,我们评估了在三种不同氮气流条件下制备的丝胶蛋白基碳的吸附行为:(i)无氮气流,(ii)连续氮气流,以及(iii)加热至150 °C后停止氮气流。在水环境中,碳化过程中无氮气流制备的CS表现出最大的比表面积以及对亚甲基蓝和恩诺沙星最高的吸附容量。相比之下,在油相环境中,碳化过程中加热至150 °C后停止氮气流制备的且含有丰富C═C官能团的CS-N,对山桐子油中的磷脂和多酚表现出优异的吸附性能。这些发现证实,碳化过程中挥发性副产物与碳骨架之间的二次相互作用在调节丝胶蛋白基碳的孔隙发展和表面化学性质方面起着关键作用。此外,结果表明,通过控制碳化过程中的氮气流,可以针对特定吸附质对丝胶蛋白基碳进行定制设计。这项工作不仅为废丝资源的高效利用提供了新的见解,也为生物源碳的可控合成提供了理论基础。我们的工作是关于氮气流如何影响丝胶蛋白衍生碳吸附性能的首次系统研究。

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