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探索金属与从sp. CE4释放的多糖的相互作用:生物吸附机制的化学和光谱研究

Exploring Metal Interactions with Released Polysaccharides from sp. CE4: A Chemical and Spectroscopic Study on Biosorption Mechanism.

作者信息

Ciani Matilde, Lepore Giovanni Orazio, Puri Alessandro, Facchetti Giorgio, Adessi Alessandra

机构信息

Department of Agriculture, Food, Environment and Forestry (DAGRI), University of Florence, 50144 Florence, Italy.

Department of Earth Science, University of Florence, 50121 Florence, Italy.

出版信息

Polymers (Basel). 2025 Jan 29;17(3):371. doi: 10.3390/polym17030371.

Abstract

This study investigates the potential of released polysaccharides (RPS) from the halophilic cyanobacterium sp. CE4 as biosorbents for heavy metals, specifically copper (Cu), nickel (Ni), and zinc (Zn). By combining ICP-OES, SEM-EDX, FT-IR spectroscopy, and XAS techniques, this work provides a comprehensive chemical and spectroscopic analysis of the biosorption mechanisms driving metal removal. The results revealed a strong binding affinity for Cu, followed by Ni and Zn, with RPS functional groups playing a key role in metal coordination. The RPS efficiently removed metals from both monometallic and multimetallic solutions, emphasizing their adaptability in competitive environments. XAS analysis highlighted unique metal-specific coordination patterns. Ni preferentially binds to oxygen donors and Zn to chlorine, and Cu exhibits non-selective binding. Remarkably, the extracted RPS achieved a maximum Cu removal capacity of 67 mg per gram of RPS dry weight, surpassing previously reported biosorption capacities. This study not only advances the understanding of biosorption mechanisms by cyanobacterial RPS but also emphasizes their dual role in environmental remediation and circular resource management. The insights provided here establish a foundation for the development of sustainable, cyanobacteria-based solutions for heavy-metal recovery and environmental sustainability.

摘要

本研究调查了嗜盐蓝藻菌株CE4释放的多糖(RPS)作为重金属(特别是铜(Cu)、镍(Ni)和锌(Zn))生物吸附剂的潜力。通过结合电感耦合等离子体发射光谱法(ICP-OES)、扫描电子显微镜-能谱仪(SEM-EDX)、傅里叶变换红外光谱(FT-IR)和X射线吸收光谱(XAS)技术,这项工作对驱动金属去除的生物吸附机制进行了全面的化学和光谱分析。结果显示对Cu有很强的结合亲和力,其次是Ni和Zn,RPS官能团在金属配位中起关键作用。RPS能有效地从单金属和多金属溶液中去除金属,强调了它们在竞争环境中的适应性。XAS分析突出了独特的金属特异性配位模式。Ni优先与氧供体结合,Zn与氯结合,而Cu表现出非选择性结合。值得注意的是,提取的RPS实现了每克RPS干重67毫克的最大Cu去除量,超过了先前报道的生物吸附容量。本研究不仅推进了对蓝藻RPS生物吸附机制的理解,还强调了它们在环境修复和循环资源管理中的双重作用。这里提供的见解为开发基于蓝藻的可持续重金属回收和环境可持续性解决方案奠定了基础。

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