Daria Śmigiel-Kamińska, J. Wąs-Gubała, J. Kumirska
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引用次数: 0
Abstract
The purpose of this study was to detect changes in the structure and chemical composition of undyed and dyed cotton fabrics under the influence of six popular agents for disinfection, sterilization, and DNA degradation with different chemical compositions. The original and exposed fabrics and their constituent fibers were subjected to comparative analysis using various optical microscopy methods, infrared spectroscopy, and UV–Vis microspectrophotometry in order to differentiate the exanimated material due to the agents applied. Differences in color, from a slight change to complete discoloration, and in the structure of the tested fabrics, which became more rigid, brittle, or, for example, compact, were noticed. With the use of ATR FTIR, it was possible to identify the presence in the exposed fabrics of residues of these agents that contained quaternary ammonium salts. Bright-field microscopy made it possible to show, above all, changes or lack thereof in the fluorescence properties of single exposed fibers in relation to control ones. With the use of UV–Vis microspectrophotometry, changes in colored fibers following the action of a specific agent on the examined fabrics were monitored. A case study was presented as an application aspect of the research, in which the use of concrete disinfectants was recognized based on changes observed in cotton clothing.
本研究的目的是检测未染色和染色棉织物在六种不同化学成分的常用消毒、杀菌和 DNA 降解剂影响下的结构和化学成分变化。使用各种光学显微镜方法、红外光谱法和紫外可见显微分光光度法对原始织物和染色织物及其组成纤维进行了比较分析,以区分因所使用的药剂而发生变化的材料。我们注意到,被测织物的颜色(从轻微变化到完全褪色)和结构(变得更硬、更脆或更紧密)都有所不同。利用 ATR 傅立叶变换红外技术,可以确定在暴露的织物中存在这些含有季铵盐的药剂残留物。通过明视显微镜,首先可以看到单根暴露纤维的荧光特性与对照纤维相比有无变化。利用紫外可见显微分光光度法,可以监测特定药剂作用于受检织物后有色纤维的变化。作为研究的应用方面,介绍了一个案例研究,其中根据在棉质衣物上观察到的变化,确认了混凝土消毒剂的使用。
FibersEngineering-Civil and Structural Engineering
CiteScore
7.00
自引率
7.70%
发文量
92
审稿时长
11 weeks
期刊介绍:
Fibers (ISSN 2079-6439) is a peer-reviewed scientific journal that publishes original articles, critical reviews, research notes and short communications on the materials science and all other empirical and theoretical studies of fibers, providing a forum for integrating fiber research across many disciplines. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files or software regarding the full details of the calculation and experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material. The following topics are relevant and within the scope of this journal: -textile fibers -natural fibers and biological microfibrils -metallic fibers -optic fibers -carbon fibers -silicon carbide fibers -fiberglass -mineral fibers -cellulose fibers -polymer fibers -microfibers, nanofibers and nanotubes -new processing methods for fibers -chemistry of fiber materials -physical properties of fibers -exposure to and toxicology of fibers -biokinetics of fibers -the diversity of fiber origins