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橄榄叶提取物优化及银纳米颗粒生物合成指南:作为中试工厂设计的初始步骤

Guide for Optimization of Olive Leaf Extraction and Silver Nanoparticles Biosynthesis as an Initial Step for Pilot Plant Design.

作者信息

Wirwis Anna, Sadowski Zygmunt

机构信息

Department of Process Engineering and Technology of Polymer and Carbon Materials, Wroclaw University of Science and Technology, Wybrzeze Wyspianskiego 27, 50-370 Wrocław, Poland.

出版信息

ACS Omega. 2024 Jun 17;9(26):29053-29068. doi: 10.1021/acsomega.4c04483. eCollection 2024 Jul 2.

Abstract

This account presents the results of two successful optimization processes. First, a polyphenol-rich aqueous olive extract was obtained and then silver nanoparticles (AgNPs) synthesized with high efficiency. Selected parameters for both processes were optimized based on the procedure of the Box-Behnken multifactorial design. The independent variables in the extraction process were the biomass/water ratio, temperature, and time. For AgNPs synthesis, the independent variables were the volume of olive extract, temperature, and process duration. The relationship between the process parameters was visualized graphically by using the response surface methodology. A high fit of the experimental data with the predicted models was shown. The regression coefficients were high, 0.9936 for extraction and 0.9757 for AgNPs biosynthesis. The extraction efficiency under its optimal conditions was as follows: biomass/solvent ratio 0.016, temperature 80 °C for 80 min, and yield 160.67 [μg GAE (gallic acid equivalent)/mL]. The highest yield of AgNPs synthesis, equal to 1.955, was obtained when it was carried out for 50 min at 75 °C with the application of 11 mL of extract. Studies on the AgNPs suspension's stability depending on the extract amount were demonstrated. A physicochemical analysis using dynamic light scattering, transmission electron microscopy images, and Fourier transform infrared spectroscopy for AgNPs obtained under optimal conditions was shown. Finally, a pilot-scale biosynthesis of AgNPs was designed.

摘要

本报告展示了两个成功的优化过程的结果。首先,获得了富含多酚的水性橄榄提取物,然后高效合成了银纳米颗粒(AgNPs)。基于Box-Behnken多因素设计程序,对这两个过程的选定参数进行了优化。提取过程中的自变量为生物质/水比、温度和时间。对于AgNPs的合成,自变量为橄榄提取物的体积、温度和过程持续时间。通过响应面法以图形方式直观呈现了过程参数之间的关系。实验数据与预测模型高度拟合。回归系数很高,提取过程的回归系数为0.9936,AgNPs生物合成的回归系数为0.9757。其最佳条件下的提取效率如下:生物质/溶剂比0.016、温度80℃、时间80分钟,产率为160.67[μg GAE(没食子酸当量)/mL]。当在75℃下使用11 mL提取物进行50分钟合成时,AgNPs的合成产率最高,为1.955。展示了关于AgNPs悬浮液稳定性随提取物用量变化的研究。还展示了对在最佳条件下获得的AgNPs使用动态光散射、透射电子显微镜图像和傅里叶变换红外光谱进行的物理化学分析。最后,设计了中试规模的AgNPs生物合成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4892/11223521/e14d266c9849/ao4c04483_0001.jpg

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