用表面增强拉曼光谱和紫外吸收光谱快速检测聚丙烯离心管中浸出的污染物

Zhida Xu, Logan Liu
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引用次数: 3

摘要

在聚丙烯离心管(PP管)中存放数月的液体样品中发现了异常表面增强拉曼散射(SERS)峰。我们在PP管中保存了两个月的盐酸硫胺素水溶液,在实验中发现了意想不到的拉曼峰。为了确定污染物,我们对聚丙烯离心管中储存了两个月的去离子水(DI water)进行了SERS实验,并与新鲜的去离子水样品进行了比较。我们还对淡水和污染水进行了紫外吸收光谱分析。我们认为水是被污染的,因为化学物质从PP管中浸出。通过气相色谱-质谱分析,发现主要污染物为邻苯二甲酸及其衍生物。进一步对邻苯二甲酸进行了SERS和UV吸收实验,与先前发现的异常峰相吻合。利用SERS和UV吸收光谱对可疑污染物的浓度进行了定性确认,并定量估计可疑污染物的浓度在1uM ~ 10uM之间。通过紫外吸收光谱,我们精确地估计其浓度为2.1uM。我们已经证明,PP管中的样品在长期储存时可能因浸出化学物质而受到污染,并建议使用SERS和uv吸收光谱作为两种快速简便的检测污染的技术
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quick Detection of Contaminants Leaching from Polypropylene Centrifuge Tube with Surface Enhanced Raman Spectroscopy and Ultra Violet Absorption Spectroscopy
Anomalous surface enhanced Raman scattering (SERS) peaks are identified for liquid sample stored in polypropylene centrifuge tubes (PP tube) for months. We observed the unexpected Raman peaks during experiments for Thiamine Hydrochloride aqueous solution stored in PP tube for two months. In order to identify the contaminants we have performed SERS experiments for de-ionized water (DI water) stored in polypropylene centrifuge tube for two months and compared them with fresh DI water sample. We have also carried out Ultra Violet (UV) absorption spectra for both fresh and contaminated water. We believe that the water is contaminated because of chemicals leaching from the PP tube. From the GC-MS data the main contaminant was found to be Phthalic acid and its derivatives. Further SERS and UV absorption experiment for Phthalic acid correlates well with the anomalous peaks identified earlier. We qualitatively confirmed the identification and quantitatively estimated the concentration of suspect contaminants as between 1uM and 10uM with both SERS and UV absorption spectroscopy. With UV absorption spectroscopy, we precisely estimate the concentration as 2.1uM. We have shown that sample in PP tube can be contaminated due to leaching chemicals upon long term storage and suggested SERS and UV-absorption spectroscopy as two quick and simple techniques to detect the contamination
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