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基于纳米结构硅的光学酒精计测定红葡萄酒中的乙醇含量

Determination of ethyl alcohol content in red wines with an optical alcohol meter based on nanostructured silicon.

作者信息

Rocchia M, Ellena M, Zeppa G

机构信息

Istituto Nazionale di Ricerca Metrologica (INRIM), Strada delle Cacce 91, Turin, Italy.

出版信息

J Agric Food Chem. 2007 Jul 25;55(15):5984-9. doi: 10.1021/jf070809w. Epub 2007 Jul 4.

Abstract

A rapid analytical method for selectively monitoring ethyl alcohol in red wines without sample pretreatment, based on the use of an optical sensor, has been developed exploiting a porous silicon microcavity. The optical structure, realized by alternating layers of different porosities, was stabilized by thermal oxidation, and the resonant peak shift of the microcavity (projected at 600 nm) was monitored in the presence of more than 20 red wines. The resonant peak shows an increasing red shift depending on the wine alcoholic strength, which is ascribable to a change of refractive index due to physisorption/condensation of ethanol vapors inside the pores' structure. The linear response of the PS oxidized microcavity to the wine alcoholic strength insures the determination of the ethanol amount with a high accuracy and reliability. The calculated values differ by less than 0.5% to those obtained with the official method in accordance with the limits imposed by European laws. Moreover, a user-friendly interface, allowing the sensor to be used by unskilled persons, and portable packaging, able to ensure in situ measurements, have been developed.

摘要

基于多孔硅微腔开发了一种无需样品预处理即可选择性监测红酒中乙醇的快速分析方法。该光学结构由不同孔隙率的交替层实现,通过热氧化使其稳定,并在20多种红酒存在的情况下监测微腔(投射波长为600 nm)的共振峰位移。共振峰显示出随着葡萄酒酒精强度增加而产生的红移增加,这归因于孔结构内乙醇蒸汽的物理吸附/冷凝导致的折射率变化。经氧化的多孔硅微腔对葡萄酒酒精强度的线性响应确保了乙醇含量测定的高精度和可靠性。根据欧洲法律规定的限值,计算值与官方方法获得的值相差不到0.5%。此外,还开发了一个用户友好的界面,使非专业人员也能使用该传感器,以及便于现场测量的便携式包装。

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