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◆ International journal of biological macromolecules2026-08-24

Bio-derived cellulose adsorbent from licorice residues for high-efficiency and recyclable removal of phenothiazines.

Jiao Long, Yan Gao, Kangjia Sheng, Junjie Yao, Qingyao Yu, Zhenzhen Deng, Xueping Zhang, Xinglong Zheng, Tao Bao, Sicen Wang

原始摘要(英文原文)· Original abstract
The value enhancement of herbal residue is a sustainable strategy for resource recovery in Chinese medicine industry. In this study, licorice residues (LR) are valorized into microcrystalline cellulose (LRMCC) through a sequential alkali-acid process. The preparation route was optimized, and the obtained material was systematically characterized. The carboxylation in the preparation process introduced a high density of carboxyl groups, enabling the biosorbent to adsorb phenothiazine pollutants in water environment. The adsorption process conforms to the Freundlich isotherm and pseudo-second-order kinetic model according to linear fitting. Removal kinetics reached equilibrium after 20 min and the adsorption capacities for chlorpromazine and perphenazine were 9.17 and 26.87 mg/g, respectively. The adsorbent still exhibits favorable adsorption performance under flow conditions. Furthermore, the adsorbent can still achieve phenothiazines removal rates of over 91.73% even after ten cycles of reuse. X-ray photoelectron spectroscopy and density function theory calculation revealed that the satisfactory adsorption mainly attributed to the electrostatic interactions and hydrogen bonding interactions. As such, the plant-derived adsorbent eliminates the risk of causing secondary environmental pollution. This study established a practical and sustainable strategy to the issues of high-value utilization of herbal residues and remediation of pharmaceutical pollutants.
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Bio-derived cellulose adsorbent from licorice residues for high-efficiency and recyclable removal of phenothiazines. — 科研速览 Science Skim