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1S1对银(I)的生物吸附及银/氯化银纳米颗粒的绿色合成

Ag(I) Biosorption and Green Synthesis of Silver/Silver Chloride Nanoparticles by 1S1.

作者信息

Muñoz Antonio J, Espínola Francisco, Ruiz Encarnación, Moya Manuel, Castro Eulogio

机构信息

Department of Chemical, Environmental and Materials Engineering, Universidad de Jaén, Campus Las Lagunillas, 23071 Jaén, Spain.

Centre for Advanced Studies in Earth Sciences, Energy and Environment (CEACTEMA), Universidad de Jaén, Campus Las Lagunillas, 23071 Jaén, Spain.

出版信息

Nanomaterials (Basel). 2023 Jan 11;13(2):295. doi: 10.3390/nano13020295.

Abstract

The efficiency of 1S1 as an Ag(I) biosorbent and at the same time its ability to biosynthesize recoverable silver nanoparticles is evaluated. Kinetic, equilibrium and thermodynamic tests are carried out for 19 °C, 27 °C and 37 °C, from which the process is adjusted to a pseudo second-order kinetics and to the Freundlich model, while optimal operational conditions are determined at 27 °C. The thermodynamic study shows positive values for enthalpy (ΔH: 133.23 kJ/mol) and entropy (ΔS: 0.4976 kJ/(mol K)), while the Gibbs free energy (ΔG) value is 12.136 kJ/mol. For a metal concentration of 459 mg/L, a maximum biosorption capacity (q) of 137.2 mg/g at 19 °C is obtained, while for 100 mg/L concentration a q value of 60.44 mg/g is obtained at the same temperature. The mechanisms involved in the biosorption process are studied by infrared spectroscopy, X-ray diffraction and scanning and transmission electron microscopy, while the nanoparticle synthesis is evaluated by ultraviolet-visible spectrophotometry (UV-vis) and transmission electron microscopy. The results indicate that the biomass is a good biosorbent and also has the ability to synthesize silver nanoparticles (Ag/AgCl) with sizes between 12 nm and 20 nm.

摘要

评估了1S1作为Ag(I)生物吸附剂的效率及其生物合成可回收银纳米颗粒的能力。在19°C、27°C和37°C下进行了动力学、平衡和热力学测试,据此将该过程调整为伪二级动力学和Freundlich模型,同时确定了27°C下的最佳操作条件。热力学研究表明,焓(ΔH:133.23 kJ/mol)和熵(ΔS:0.4976 kJ/(mol·K))为正值,而吉布斯自由能(ΔG)值为12.136 kJ/mol。对于459 mg/L的金属浓度,在19°C下获得的最大生物吸附容量(q)为137.2 mg/g,而对于100 mg/L的浓度,在相同温度下获得的q值为60.44 mg/g。通过红外光谱、X射线衍射以及扫描和透射电子显微镜研究了生物吸附过程中涉及的机制,同时通过紫外可见分光光度法(UV-vis)和透射电子显微镜评估了纳米颗粒的合成。结果表明,该生物质是一种良好的生物吸附剂,并且还具有合成尺寸在12 nm至20 nm之间的银纳米颗粒(Ag/AgCl)的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef8a/9865701/7e3cc885edca/nanomaterials-13-00295-g001.jpg

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